Skip to main content

Impact of the COVID-19 pandemic on HPV vaccine uptake in a predominantly Hispanic Border Community: A retrospective cross-sectional analysis of the "Tiempo de Vacunarte Program"

Abstract

Background

Human Papillomavirus (HPV) is implicated in the pathogenesis of cancer in the cervix, vagina, throat and anogenital region. Although HPV vaccination rates in the Hispanic community have increased owing to public health efforts, the COVID-19 pandemic has brought unique public health challenges and contributed to health inequity in this population.

Methods

To evaluate the impact of the COVID-19 pandemic on HPV vaccine uptake in a program designed to improve HPV vaccination rate in a predominantly Hispanic community in the border region of Texas (Tiempo de Vacunarte [time to get vaccinated]), we performed a retrospective cross-sectional analysis to evaluate the uptake of the first dose of HPV vaccine series among eligible adolescents and adults before (2016–2019), during (2020–2021), and after the COVID-19 pandemic (2022–2023).

Results

We observed a decrease in HPV vaccine uptake during the pandemic (69.59% vs. 89.92%) and post-pandemic (76% vs. 89.92%) compared to the pre-pandemic period. After adjusting for confounding factors, the reduction in the odds ratio was more pronounced in the pandemic (OR = 0.091, p < 0.001) and post-pandemic (OR = 0.109, p < 0.001) periods.

Conclusion

Our findings suggest that the COVID-19 pandemic significantly impacted the uptake of the HPV vaccine in a comprehensive intervention program to increase HPV vaccination in a border community.

Peer Review reports

Text box 1. Contributions to the literature

• By quantifying the decline in HPV vaccine uptake in an evidence-based, culturally tailored, multi-component program during and after the COVID-19 pandemic, the study provides concrete evidence of the pandemic's negative impact on public health initiatives.

• The study highlights the need for resilient public health strategies that can withstand such disruptions.

• Policy Implications: The findings suggest that additional support and targeted efforts may be needed to restore and improve vaccination rates post-pandemic.

Introduction

Human papillomavirus (HPV) is the most common sexually transmitted virus in the United States [42] and is classified into low-risk and high-risk types. Low-risk types can cause benign conditions, while high-risk types are implicated in the causal pathways of cancers of the vulva, vagina, cervix, penis, throat, and anogenital regions [17]. Despite a decline in cervical cancer rates in the United States, health disparities persist and disproportionately affect the Hispanic population, especially among Hispanic communities in South Texas [27]. Morales-Campos and colleagues reported higher rates of cervical cancer incidence (11 vs. 9 per 100,000) and mortality (3 vs. 2 per 100,000) among individuals of Hispanic origin from South Texas compared to other parts of the country [29]. A similar trend was observed for penile cancer, where males of Hispanic origin had higher rates (1.3 vs. 0.8 per 100,000) than males of non-Hispanic origin [13]. These statistics underscore the urgency of addressing health disparities, especially given the lower HPV vaccine completion rate among people of Hispanic origin in Texas compared to the national average (45% vs. 54.5%) [29]

HPV vaccines are highly effective in the prevention of cervical cancer. Between 2008 and 2014, the percentage of cervical precancers caused by HPV strains 16 and 18 decreased from 55.2% to 33.3% in vaccinated women [25]. In another study from 2006 to 2017 that examined HPV vaccine efficacy among nearly 1.7 million women in Sweden, there was close to a 90% reduction in the incidence rate of cervical cancer among women who were vaccinated compared with those who had not been vaccinated [21]. A recent randomized clinical trial, the KEN SHE study, strengthened evidence that a single-dose HPV vaccine is equally effective as a multi-dose HPV vaccine in reducing the incidence of oncogenic HPV infection in women over an 18-month study time frame between December 2018 and June 2021 [4]. HPV vaccine has also been shown to be effective in males; McClung and colleagues reported a 65% reduction in external genital lesions in males who received the HPV vaccine [25]. Despite the widely documented evidence for the efficacy and safety of the HPV vaccine, there remains a disparity in the uptake and completion of the HPV vaccine series among adolescents compared to other vaccines recommended for the same age [18].

A systematic review by Rambout and colleagues identified cost as the most common self-reported barrier to HPV vaccine access [37]. Other studies have identified systemic and practical barriers to HPV vaccine access, including lack of knowledge, inadequate healthcare provider recommendations, lack of insurance, difficulty obtaining transportation, problems with booking appointments, and the need for additional office visits [37, 39]. Several barriers have been noted as specific among Hispanics, including fear of potentially promoting early sexual activity, fear of adverse reactions, and health misinformation [15, 20]. De and Budhwani reported the persistence of health disparities among African Americans and other minority groups, excluding Asian Americans and foreign-born individuals residing in the United States [10]. In addition, there are self-reported factors that contribute to the reluctance to obtain the HPV vaccine, including concerns about vaccine safety and side effects, perceived low susceptibility to HPV infection, perceived low access to the vaccine, societal norms, religious background, perception that the vaccine is unnecessary, and fear of needles [37].

Compounding these existing barriers, the COVID-19 pandemic has posed new challenges to vaccine uptake. A study estimated that 7.9% of children/adolescents had a COVID-related missed visit, with a higher percentage of these children/adolescents being from racial and ethnic minority groups, living below the poverty level, having a mother without a college degree, and living in the western United States [3]. Similarly, Moya and colleagues found that 43.5% of participants in El Paso reported that the pandemic impacted their access to health and human services; the HPV vaccine was considered unnecessary since COVID-19 had brought more pressing concerns [31]. There is also evidence that increasing vaccine hesitancy around the pandemic has played a role in the decrease in HPV vaccine uptake. One study showed that 11% of pediatricians reported increased HPV vaccine hesitancy since the beginning of the COVID-19 pandemic [41].

Our study aimed to evaluate the effects of the pandemic on the uptake of one dose of the HPV vaccine in a comprehensive multi-component HPV vaccine intervention program called Tiempo de Vacunarte, which was designed to improve the HPV vaccination rate in El Paso, a predominantly Hispanic community in the border region of Texas. The program consisted of multiple interventions, including education, navigation to resources, and provision of no-cost vaccines to the public and El Paso community members who met the eligibility criteria. The program had previously been found to improve immunization rates, HPV knowledge, HPV awareness, and the intention to vaccinate in the border population [28]. However, the COVID-19 pandemic has brought unique challenges to the program. Thus, we sought to quantify the impact of the pandemic on HPV vaccine uptake in this program.

Methods

Study design

We conducted a retrospective cross-sectional analysis, assessing HPV vaccine uptake before (2016–2019), during (2020–2021), and after (2022–2023) the COVID-19 pandemic, utilizing two cohorts: Tiempo 1 (2016–2019) and Tiempo 2 (2020–2022).

Study setting and recruitment

El Paso is a predominantly Hispanic county on the United States-Mexico border region in Texas, with a population of 867,947 [33]. This county contends higher poverty rates and poorer health coverage than the national average [36]. Tiempo de Vacunarte is a grant-funded program established in El Paso County in 2016. It is an evidence-based, culturally tailored, multi-component program to reduce the burden of HPV-associated cancers by improving HPV vaccine knowledge and increasing vaccine uptake. The program provides no-cost vaccines for community members who are uninsured or underinsured. In contrast, for those with insurance coverage, the program provides health education and navigation to their primary care provider. Participants in the program were primarily community-based and recruited from multiple community sites with the aid of community health workers. Sites included, but were not limited to, community centers, health fairs, community colleges, trade schools, school districts, churches, and food banks.

Eligibility

The eligibility criteria for the program were age, insurance status, and possession of a Texas address per the requirement of the grant-funding agency. For Tiempo 1, the age requirements were adults aged 18–26 or parents/guardians of children aged 9–17; for Tiempo 2, the adult age requirement was expanded to include shared decision-making for individuals aged 27–45 who had not completed the vaccine schedule, were uninsured/underinsured, and had Texas residences. The age criteria were determined using the Advisory Committee of Immunization Practices recommendations for HPV vaccination [24].

Intervention

The program sought individuals with access to care barriers. The intervention consisted of outreach, education, navigation, and providing no-cost vaccines to eligible individuals. The development of the educational material for the program was guided by the Health Belief Model (HBM) and informed by the findings of focus groups previously conducted in the community [34]. The focus groups identified cultural concerns, barriers, and knowledge gaps specific to this community, and this informed our adaptation of the available material on the Centers for Disease Control and Prevention's website [32]. The educational materials were culturally tailored to the community and were available in Spanish and English. The sessions were delivered by bilingual community health workers, also known as promotoras, to further address cultural and language barriers. The navigation component was delivered by program navigators, who helped participants with community resources, scheduling, and transportation assistance. Access to the vaccine was provided after eligibility criteria were met and education was delivered. For those eligible for the no-cost vaccine, a certified medical assistant provided immunization at the recruitment site or scheduled a vaccine administration appointment at either the participant's home or a collaborating community site. Those who were insured were referred to their providers for vaccination. If a participant reported receiving an HPV vaccine outside the program during the follow-up period, this information was verified using the state immunization registry. Details on the development and implementation of Tiempo have been previously published [28].

During the height of the pandemic, specific adaptations were made, which included outreach and education via telephone and other audiovisual methods such as Zoom and Webex, as well as providing vouchers for participants to receive their vaccines at their local Walgreens or Immunize El Paso office. As the community returned to in-person activities, we transitioned to in-person outreach and education. However, we maintained the option for individuals to receive a voucher for vaccination if they prefer not to be vaccinated onsite or return to our office for follow-up vaccination.

Outcome

The primary outcome measure was HPV vaccine uptake. Individuals were contacted in person or virtually and received information about the program(vaccine encounters). They were recruited if they met the criteria and agreed to receive services through our program. We maintained records of recruited participants on a HIPAA-compliant program database. We documented whether they went on to receive at least one vaccine dose, which we defined as vaccine uptake/initiation.

Covariates

We obtained demographic information such as age, sex, level of education, race, ethnicity, country of birth, household income, and length of residence in the United States. Previous work identified these covariates as impacting HPV vaccine completion in our community [28]. Our statistical analysis did not include the country of birth and length of residence in the United States due to a lot of missing data in this variable.

Statistical analysis

Categorical variables were presented as numbers and percentages, whereas quantitative variables were presented as means, standard deviations, medians, and interquartile ranges. We used the chi-square or Fisher's exact test to explore the association between categorical variables. Similarly, we used a t-test or Wilcoxon rank-sum test to compare the quantitative variables between the two groups. When there were more than two groups, we performed a one-way analysis of variance or Kruskal–Wallis one-way analysis of variance. Finally, we performed unadjusted and adjusted logistic regression analysis to determine the association between HPV vaccination uptake/initiation with the periods before (2016–2019), during (2021–2021), and after the COVID-19 pandemic (2022–2023). In our statistical analysis, we combined the data for vaccine uptake across the years. The results were presented using odds ratio (OR) and corresponding 95% confidence intervals (95% CI), with statistical significance set at p < 0.05. All analyses were performed using STATA statistical software (version 17).

Results

This study examined HPV vaccine initiation rates among program participants during three distinct periods: pre-pandemic (before 2020), during the pandemic (2020 to 2021), and post-pandemic (2022 to 2023).

Demographic characteristics

A majority of our participants (96.86%) were of Hispanic origin. The mean age in years of participants was significantly higher during the pandemic (30.4 vs. 18, p < 0.001) and post-pandemic (33.5 vs. 18, p < 0.001) periods when compared to the pre-pandemic (Table 1). In addition, the proportion of household income with less than $20,000 per year was higher during the pandemic (65.59% vs. 38.97%, p < 0.001) and post-pandemic (62.91% vs. 38.97%, p < 0.001) compared to pre-pandemic (Table 1). On the other hand, the proportion of females was higher than that of males in the pre-pandemic (63.72% vs. 36.28%), and this gap widened in the pandemic (82.74% vs. 17.26%) and post-pandemic (84.86% vs. 15.14%) (Table 1).

Table 1 Distribution of HPV uptake and demographic characteristics in the pre-pandemic (2016–2019), during the pandemic (2020–2021), and post-pandemic (2022–2023) periods in El Paso, Texas

The COVID-19 pandemic affected HPV vaccine uptake

The total number of encounters with the HPV vaccine for the three periods was 3709. Among these encounters, the number of individuals who obtained at least one dose of the vaccine was 3031, or 81.72% of the total number of encounters. We observed a decrease in the total number of encounters for HPV vaccine during the pandemic (N = 592) and post-pandemic (N = 1321) periods compared to the pre-pandemic period (N = 1796). Similarly, there was a decrease in vaccine initiation rates during the pandemic (69.59%), which improved slightly in the post-pandemic period (76%), though they did not return to pre-pandemic levels (89.92%). These statistics are provided in Table 1.

Among encounters for the HPV vaccine among children, a significant reduction was observed in the uptake of the HPV vaccine during the pandemic (32.63% vs. 86.73%) and post-pandemic years (49.33% vs. 86.73%) compared to pre-pandemic. A similar pattern was also observed for adults in which those who received at least one dose of the HPV vaccine was 92.85% during pre-pandemic and reduced significantly to 76.66% and 77.61% during the pandemic and post-pandemic periods, respectively (Fig. 1).

Fig. 1
figure 1

HPV initiation rate among encounters for the HPV vaccination for children and adults in the pre-pandemic (2016–2019), during the pandemic (2020–2021), and post-pandemic (2022–2023) periods in El Paso, Texas

Covariates of HPV vaccine uptake

Unadjusted analysis indicated that the likelihood of obtaining the vaccine decreased significantly during the pandemic (OR: 0.257, 95% CI:[0.203, 0.324], p < 0.001) and post-pandemic (OR: 0.355, 95% CI:[0.291, 0.433], p < 0.001) as compared to pre-pandemic (Table 2). After adjusting for age, parent's level of education, household income, and gender, the odds of initiating the HPV vaccine series were even lower during the pandemic (OR: 0.091, 95% CI: [0.065, 0.129], p < 0.001) and post-pandemic (OR: 0.109, 95% CI:[0.078, 0.153), p < 0.001) compared to pre-pandemic period. We did not observe any association between participants' level of education (for children, parental level of education was collected), household income, and gender with the odds of initiating the vaccine, except for age (OR = 1.035, 95% CI: [1.023, 1.046], p < 0.001). These findings are presented in Table 2.

Table 2 Unadjusted and adjusted association of HPV initiation rate in the pre-pandemic (2016–2019), during the pandemic (2020–2021), and post-pandemic (2022–2023) periods in El Paso, Texas

Discussion

Our findings reveal a substantial decrease in HPV vaccine uptake during the COVID-19 pandemic, with a persistent pattern observed post-pandemic. Similarly, there was a significant decline in the number of encounters with HPV vaccine outreach during the pandemic. There is concern about the substantially reduced proportion of those initiating HPV vaccinations per encounter, especially with the change in the age recommendations for HPV vaccination in 2019 to include adults aged 27 to 45 [26]. While we acknowledge that adults aged 27 to 45 were not eligible for the HPV vaccine in the pre-pandemic period due to the release of updated screening guidelines in 2019, our primary focus in this study was to analyze the overall HPV vaccination initiation rates during the pandemic period (2020–2021) and the post-pandemic period (2022–2023). Our data revealed a similar decline pattern separately for children and adults, prompting us to aggregate them. Recognizing that other variables such as age, education, gender, and income may influence the effect of HPV vaccination across the periods, we performed an adjusted analysis and presented the results in Table 2. These results demonstrated that even after accounting for age, education, income, and gender, HPV vaccination rates continued to decline during the pandemic and post-pandemic periods compared to the pre-pandemic period.

The COVID pandemic impacted routine care and, by extension, vaccine uptake. The World Health Organization (WHO) reported a 70% reduction in childhood vaccination rates at the beginning of the pandemic, with some countries reporting a 90% reduction rate [2]. A study conducted at the Children's Hospital of Los Angeles reported that Hispanic and African American groups had increased hesitancy towards childhood vaccinations due to the pandemic [16]. A systematic review of vaccine coverage across the globe showed that overall childhood vaccination rates decreased throughout 2020, resulting in a fourfold increase in polio outbreaks in polio-endemic countries [19]. The number of flu vaccines administered from January 2020 to August 2021 decreased, and researchers discovered that fear of exposure to COVID-19 was a leading factor [9]. A survey conducted by the CDC during the pandemic showed that half of the women surveyed had not received their Tdap or influenza vaccine during pregnancy due to increased vaccination hesitancy, and rates were even lower among Hispanic and Latino women compared to White women [38].

Similarly, multiple studies confirmed a decline in the HPV vaccination rate during the COVID-19 pandemic [43,44,45]. Alarmingly, there appear to be persistent low HPV vaccination rates among uninsured participants [35, 44]. These studies supported our findings that the COVID-19 pandemic impacted vaccine uptake rates, significantly affecting uninsured individuals.

Our study showed lower rates of HPV vaccine uptake in the pandemic and post-pandemic periods compared to the pre-pandemic period. There has been long-standing evidence of gender discrepancy in the uptake of the HPV vaccine, with HPV vaccination rates (1.1%-31.7%) in males being very low compared to females (2.4%-94.4%) [23]. While this phenomenon is complex and likely not attributed to a single causation, Daley and colleagues postulated a theory that "HPV and its associated interventions become feminized" to explain how the history of development and approval of the HPV vaccine was initially shaped by a sole emphasis on women's health [7]. Several studies estimate that HPV incidence and prevalence in men are similar to those of women, although substantial variability may exist by location and population [11]. HPV-related cases of oropharyngeal cancers in otherwise healthy men were predicted to surpass the number of cervical cancer cases in the United States by the year 2020 if HPV vaccination rates were not improved [5]. This happened sooner than expected, with new cervical cancer cases dropping each year as oropharyngeal cancers rose, 82% of the latter occurring in men [46]. As the burden of oropharyngeal cancer (OPC) is projected to grow among males [8], coupled with the rapid decline in HPV vaccine encounters and uptake due to the pandemic, it is crucial to explore strategies to reverse this harmful trend and prevent future excess OPC burden. One of the strategies being considered is a gender-neutral HPV vaccination program [6, 12], though more studies are needed to validate the adoption of this approach.

Several possibilities may explain why HPV vaccine uptake in this evidence-based, culturally tailored, multi-component program has yet to return to baseline despite the continued replication of program components, including outreach education and provision of no-cost vaccines. These possibilities include increased vaccine hesitancy( noted nationally) and changes in healthcare priorities, with acute care ( delayed during the pandemic) prioritized over preventive care like vaccines. However, it is essential to keep a pulse on changes in vaccine hesitancy in the general population, which tends to be more robust against perceived newer vaccines. The WHO listed vaccine hesitancy among the top 10 threats to world health [30]. Historically, democracies have been associated with improved health outcomes due to higher wealth levels, increased public health outreach, and public institution accountability [14].

Research studies have shown that using social media as a source of vaccine information without any other trusted source was associated with vaccine hesitancy [1, 40, 47]. A meta-analysis conducted on vaccine hesitancy showed that there had been a distinct rise in the phenomenon since COVID-19, with a 293% increase in articles published concerning vaccine hesitancy from the pre-COVID to post-COVID period, emphasizing the gravity of this issue and the necessity for public health measures to combat this phenomenon [22]. Therefore, more studies are needed to explore the impact of social media misinformation on disrupting public health efforts to promote vaccine coverage in underserved Hispanic communities.

One of the limitations of this study is that we utilized a cross-sectional study design with its inherent limitations in establishing cause-and-effect relationships. The results of this study may not be generalizable to other ethnic groups as this study was conducted in a community on the US-Mexico border, and findings may differ in non-border-dwelling Hispanic communities. In addition, most of our study participants self-identified as individuals of Hispanic origin, much higher than many studies reporting effects on Hispanic populations. However, although this limits generalizability, it is also a strength as it provides much-needed information about health promotion interventions in this underrepresented group. Despite these limitations, our study has some unique strengths. Ours is the first community-based study to assess the impact of the COVID-19 pandemic on a multifaceted intervention on both HPV vaccine-eligible adults and children in a predominantly underserved Hispanic population on the US-Mexico border. Despite vaccination disruption caused by the pandemic, we were able to adapt program delivery protocols to incorporate telephone and virtual platforms such as Zoom and Webex to provide health education as well as vaccine vouchers for participants to receive their vaccines at their local Walgreens or Immunize El Paso office. The program also ran a social media campaign that posted culturally tailored messaging and short health education videos targeted to parents of children/adolescents and young adults.

Conclusion

Our findings suggest that the COVID-19 pandemic significantly impacted HPV vaccine uptake in an underserved Hispanic community. As we move forward, public health officials must explore strategies to address vaccine hesitancy, adapt interventions to the community's evolving needs, and mitigate the impact of future outbreaks on routine preventive care and efforts to reduce health disparities in underserved communities.

Availability of data and materials

No datasets were generated or analysed during the current study.

References

  1. Al-Uqdah L, Franklin FA, Chiu CC, Boyd BN. Associations between social media engagement and vaccine hesitancy. J Community Health. 2022;47(4):577–87. https://doi.org/10.1007/s10900-022-01081-9.

    Article  PubMed  PubMed Central  Google Scholar 

  2. Altman JD, Miner DS, Lee AA, Asay AE, Nielson BU, Rose AM, Hinton K, Poole BD. Factors affecting vaccine attitudes influenced by the COVID-19 pandemic. Vaccines. 2023;11(3):516. https://doi.org/10.3390/vaccines11030516

    Article  PubMed  PubMed Central  Google Scholar 

  3. Badeh SM, Elam-Evans LD, Hill HA, Fredua B. Disrupted routine medical visits in children and adolescents during the COVID-19 pandemic, January-June 2021. AJPM Focus. 2023;2:100119. https://doi.org/10.1016/j.focus.2023.100119.

    Article  PubMed  PubMed Central  Google Scholar 

  4. Barnabas RV, Brown ER, Onono MA, Bukusi EA, Njoroge B, Winer RL, Galloway DA, Pinder LF, Donnell D, Wakhungu I, Congo O, Biwott C, Kimanthi S, Oluoch L, Heller KB, Leingang H, Morrison S, Rechkina E, Cherne S, Mugo N. Efficacy of single-dose HPV vaccination among young African women. NEJM Evid. 2022;1(5):EVIDoa2100056. https://doi.org/10.1056/EVIDoa2100056.

    Article  PubMed  PubMed Central  Google Scholar 

  5. Chaturvedi AK, Engels EA, Pfeiffer RM, Hernandez BY, Xiao W, Kim E, Jiang B, Goodman MT, Sibug-Saber M, Cozen W, Liu L, Lynch CF, Wentzensen N, Jordan RC, Altekruse S, Anderson WF, Rosenberg PS, Gillison ML. Human papillomavirus and rising oropharyngeal cancer incidence in the United States. J Clin Oncol. 2011;29(32):4294–301. https://doi.org/10.1200/JCO.2011.36.4596.

    Article  PubMed  PubMed Central  Google Scholar 

  6. Chido-Amajuoyi OG, Fokom Domgue J, Obi-Jeff C, Schmeler K, Shete S. A call for the introduction of gender-neutral HPV vaccination to national immunisation programmes in Africa. Lancet Glob Health. 2019;7(1):e20–1. https://doi.org/10.1016/S2214-109X(18)30405-4.

    Article  PubMed  Google Scholar 

  7. Daley EM, Vamos CA, Thompson EL, Zimet GD, Rosberger Z, Merrell L, Kline NS. The feminization of HPV: How science, politics, economics and gender norms shaped U.S. HPV vaccine implementation Papillomavirus Res. 2017;3:142–8. https://doi.org/10.1016/j.pvr.2017.04.004.

    Article  PubMed  PubMed Central  Google Scholar 

  8. Damgacioglu H, Sonawane K, Chhatwal J, Lairson DR, Clifford GM, Giuliano AR, Deshmukh AA. Long-term impact of HPV vaccination and COVID-19 pandemic on oropharyngeal cancer incidence and burden among men in the USA: a modeling study. Lancet Reg Health Am. 2022;8:100143. https://doi.org/10.1016/j.lana.2021.100143.

    Article  PubMed  Google Scholar 

  9. de Albuquerque Veloso Machado M, Roberts B, Wong BLH, van Kessel R, Mossialos E. The relationship between the COVID-19 pandemic and vaccine hesitancy: a scoping review of literature until August 2021. Front Public Health. 2021;9:747787. https://doi.org/10.3389/fpubh.2021.747787.

    Article  PubMed  PubMed Central  Google Scholar 

  10. De P, Budhwani H. Human papillomavirus (HPV) vaccine initiation in minority Americans. Public Health. 2017;144:86–91. https://doi.org/10.1016/j.puhe.2016.11.005.

    Article  CAS  PubMed  Google Scholar 

  11. Dunne EF, Nielson CM, Stone KM, Markowitz LE, Giuliano AR. Prevalence of HPV infection among men: a systematic review of the literature. J Infect Dis. 2006;194(8):1044–57. https://doi.org/10.1086/507432.

    Article  PubMed  Google Scholar 

  12. Dykens JA, Peterson CE, Holt HK, Harper DM. Gender neutral HPV vaccination programs: reconsidering policies to expand cancer prevention globally. Front Public Health. 2023;11:1067299.  https://doi.org/10.3389/fpubh.2023.106729.

    Article  PubMed  PubMed Central  Google Scholar 

  13. Escobar B, Amboree TL, Sonawane K, Deshmukh AA, McGee LU, Rodriguez AM, Jibaja-Weiss ML, Montealegre JR. Human papillomavirus awareness among foreign- and US-born Hispanics, United States, 2017–2018. Prev Med Rep. 2021;22:101379. https://doi.org/10.1016/j.pmedr.2021.101379.

    Article  PubMed  PubMed Central  Google Scholar 

  14. Franco A, Alvarez-Dardet C, Ruiz MT. Effect of democracy on health: ecological study. BMJ. 2004;329(7480):1421–3. https://doi.org/10.1136/bmj.329.7480.1421.

    Article  PubMed  PubMed Central  Google Scholar 

  15. Garcia S, Hopfer S, Amaro H, Tanjasiri S. HPV vaccine delay and refusal among unvaccinated Mexican American young adult women: a qualitative investigation of Mexican-born and US-born HPV vaccine decision narratives. J Behav Med. 2023;46(1–2):88–99. https://doi.org/10.1007/s10865-022-00326-1.

    Article  PubMed  Google Scholar 

  16. He K, Mack WJ, Neely M, Lewis L, Anand V. Parental Perspectives on Immunizations: Impact of the COVID-19 Pandemic on Childhood Vaccine Hesitancy. J Community Health. 2022;47(1):39–52. https://doi.org/10.1007/s10900-021-01017-9.

    Article  PubMed  Google Scholar 

  17. Hirth J. Disparities in HPV vaccination rates and HPV prevalence in the United States: a review of the literature. Hum Vaccin Immunother. 2019;15(1):146–55. https://doi.org/10.1080/21645515.2018.1512453.

    Article  PubMed  Google Scholar 

  18. Hung M-C, Williams WW, Lu P-J, Kim DK, Grohskopf LA, Pilishvili T, Skoff TH, Nelson NP, Harpaz R, Markowitz LE, Rodriguez-Lainz A, Fiebelkorn AP. Vaccination Coverage Among Adults in the United States, National Health Interview Survey, 2016. Centers for Disease Control and Prevention. 2018. Retrieved 17 Oct 2023 from https://www.cdc.gov/vaccines/imz-managers/coverage/adultvaxview/pubs-resources/NHIS-2016.html

  19. Lassi ZS, Naseem R, Salam RA, Siddiqui F, Das JK. The impact of the COVID-19 pandemic on immunization campaigns and programs: a systematic review. Int J Environ Res Public Health. 2021;18(3):988. https://doi.org/10.3390/ijerph18030988

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  20. Lechuga J, Vera-Cala L, Martinez-Donate A. HPV Vaccine Awareness, Barriers, Intentions, and Uptake in Latina Women. J Immigr Minor Health. 2016;18(1):173–8. https://doi.org/10.1007/s10903-014-0139-z.

    Article  PubMed  PubMed Central  Google Scholar 

  21. Lei J, Ploner A, Elfstrom KM, Wang J, Roth A, Fang F, Sundstrom K, Dillner J, Sparen P. HPV Vaccination and the Risk of Invasive Cervical Cancer. N Engl J Med. 2020;383(14):1340–8. https://doi.org/10.1056/NEJMoa1917338.

    Article  CAS  PubMed  Google Scholar 

  22. Leonardelli M, Mele F, Marrone M, Germinario CA, Tafuri S, Moscara L, Bianchi FP, Stefanizzi P. The effects of the COVID-19 pandemic on vaccination hesitancy: a viewpoint. Vaccines. 2023;11(7):1191. https://doi.org/10.3390/vaccines11071191

    Article  PubMed  PubMed Central  Google Scholar 

  23. Loke AY, Kwan ML, Wong YT, Wong AKY. The Uptake of Human Papillomavirus Vaccination and Its Associated Factors Among Adolescents: A Systematic Review. J Prim Care Community Health. 2017;8(4):349–62. https://doi.org/10.1177/2150131917742299.

    Article  PubMed  PubMed Central  Google Scholar 

  24. Markowitz LE, Dunne EF, Saraiya M, Chesson HW, Curtis CR, Gee J, Bocchini JA Jr, Unger ER, Centers for Disease, C., & Prevention. Human papillomavirus vaccination: recommendations of the Advisory Committee on Immunization Practices (ACIP). MMWR Recomm Rep. 2014;63(RR-05):1–30 https://www.ncbi.nlm.nih.gov/pubmed/25167164.

    PubMed  Google Scholar 

  25. McClung NM, Gargano JW, Bennett NM, Niccolai LM, Abdullah N, Griffin MR, Park IU, Cleveland AA, Querec TD, Unger ER, Markowitz LE, Group, H.-I. W. Trends in human papillomavirus vaccine types 16 and 18 in cervical precancers, 2008–2014. Cancer Epidemiol Biomarkers Prev. 2019;28(3):602–9. https://doi.org/10.1158/1055-9965.EPI-18-0885.

    Article  Google Scholar 

  26. Meites E, Szilagyi PG, Chesson HW, Unger ER, Romero JR, Markowitz LE. Human papillomavirus vaccination for adults: updated recommendations of the advisory committee on immunization practices. MMWR Morb Mortal Wkly Rep. 2019;68(32):698–702. https://doi.org/10.15585/mmwr.mm6832a3.

    Article  PubMed  PubMed Central  Google Scholar 

  27. Mix JM, Van Dyne EA, Saraiya M, Hallowell BD, Thomas CC. Assessing impact of HPV vaccination on cervical cancer incidence among women aged 15–29 years in the United States, 1999–2017: an ecologic study. Cancer Epidemiol Biomarkers Prev. 2021;30(1):30–7. https://doi.org/10.1158/1055-9965.EPI-20-0846.

    Article  PubMed  Google Scholar 

  28. Molokwu J, Dwivedi A, Mallawaarachchi I, Hernandez A, Shokar N. Tiempo de Vacunarte (time to get vaccinated): outcomes of an intervention to improve HPV vaccination rates in a predominantly Hispanic community. Prev Med. 2019;121:115–20. https://doi.org/10.1016/j.ypmed.2019.02.004.

    Article  CAS  PubMed  Google Scholar 

  29. Morales-Campos DY, Flores BE, Donovan E, Burdick S, Parra-Medina D, Kahn JA. A qualitative descriptive study of providers’ perspectives on human papillomavirus vaccine administration among Latino/a adolescents in South Texas clinics: barriers and facilitators. BMC Public Health. 2022;22(1):443. https://doi.org/10.1186/s12889-022-12837-2.

    Article  PubMed  PubMed Central  Google Scholar 

  30. Morgans HA, Schuster JE, Warady BA. Pediatric vaccine hesitancy and COVID-19. Am J Kidney Dis. 2023;81(1):13–4. https://doi.org/10.1053/j.ajkd.2022.07.003.

    Article  PubMed  Google Scholar 

  31. Moya EM, Zamore C, Perez LM, Tellez K, Avila A, Aragones A. COVID-19 imperils access to health and human services in El Paso, Texas and New York City: perspectives from hispanic parents. J Racial Ethn Health Disparities. 2022;9(3):1024–9. https://doi.org/10.1007/s40615-021-01041-4.

    Article  PubMed  Google Scholar 

  32. National Center for HIV STD and TB Prevention (U.S.). Division of STD Prevention., & Centers for Disease Control and Prevention (U.S.). HPV and HPV vaccine : information for healthcare providers. Centers for Disease Control and Prevention. Dept. of Health and Human Services. 2006. http://purl.access.gpo.gov/GPO/LPS73748

  33. Paso COE. Population demographics. City of El Paso; 2023. Retrieved 18 October 2023 from https://www.elpasotexas.gov/economic-development/economic-snapshot/population-demographics/.

  34. Penaranda E, Molokwu J, Hernandez I, Salaiz R, Nguyen N, Byrd T, Shokar N. Attitudes toward self-sampling for cervical cancer screening among primary care attendees living on the US-Mexico border. South Med J. 2014;107(7):426–32. https://doi.org/10.14423/SMJ.0000000000000132.

    Article  PubMed  Google Scholar 

  35. Pingali C, Yankey D, Elam-Evans LD, Markowitz LE, Valier MR, Fredua B, Crowe SJ, DeSisto CL, Stokley S, Singleton JA. Vaccination coverage among adolescents aged 13-17 years - national immunization survey-teen, United States, 2022. MMWR Morb Mortal Wkly Rep. 2023;72(34):912–9. https://doi.org/10.15585/mmwr.mm7234a3.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  36. Quick Facts: El Paso County, Texas. United States Census Bureau. 2022. Retrieved 18 Oct 2023 from https://www.census.gov/quickfacts/fact/table/elpasocountytexas/PST045222

  37. Rambout L, Tashkandi M, Hopkins L, Tricco AC. Self-reported barriers and facilitators to preventive human papillomavirus vaccination among adolescent girls and young women: a systematic review. Prev Med. 2014;58:22–32. https://doi.org/10.1016/j.ypmed.2013.10.009.

    Article  PubMed  Google Scholar 

  38. Razzaghi H, Kahn KE, Calhoun K, Garacci E, Skoff TH, Ellington SR, Jatlaoui TC, Black CL. Influenza, Tdap, and COVID-19 Vaccination Coverage and Hesitancy Among Pregnant Women - United States, April 2023. MMWR Morb Mortal Wkly Rep. 2023;72(39):1065–71. https://doi.org/10.15585/mmwr.mm7239a4.

    Article  PubMed  PubMed Central  Google Scholar 

  39. Reiter PL, Pennell ML, Martinez GA, Katz ML. Provider recommendation for HPV vaccination across Hispanic/Latinx subgroups in the United States. Hum Vaccin Immunother. 2021;17(4):1083–8. https://doi.org/10.1080/21645515.2020.1846399.

    Article  PubMed  Google Scholar 

  40. Rodrigues F, Ziade N, Jatuworapruk K, Caballero-Uribe CV, Khursheed T, Gupta L. The impact of social media on vaccination: a narrative review. J Korean Med Sci. 2023;38(40):e326. https://doi.org/10.3346/jkms.2023.38.e326.

    Article  PubMed  PubMed Central  Google Scholar 

  41. Ryan GW, Miotto MB, McReynolds C, Lemon SC, Pbert L, Trivedi M. Pediatricians’ perspectives on COVID-19 and HPV vaccine hesitancy. Hum Vaccin Immunother. 2023;19(2):2225388. https://doi.org/10.1080/21645515.2023.2225388.

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  42. Satterwhite CL, Torrone E, Meites E, Dunne EF, Mahajan R, Ocfemia MC, Su J, Xu F, Weinstock H. Sexually transmitted infections among US women and men: prevalence and incidence estimates, 2008. Sex Transm Dis. 2013;40(3):187–93. https://doi.org/10.1097/OLQ.0b013e318286bb53.

    Article  PubMed  Google Scholar 

  43. Schelbar N, Ward CN, Phillips E, Herr MJ, Acevedo S, Conner H, Greiner A, Corriveau E. Impact of COVID-19 pandemic and vaccine perceptions on HPV vaccine hesitancy. Am J Otolaryngol. 2024;45(2):104172. https://doi.org/10.1016/j.amjoto.2023.104172

    Article  PubMed  Google Scholar 

  44. Sonawane K, Garg A, Meissner EG, Damgacioglu H, Hill E, Nyitray AG, Deshmukh AA. Human papillomavirus vaccination among young adults before and during the COVID-19 pandemic. JAMA Netw Open. 2024;7(2):e2356875. https://doi.org/10.1001/jamanetworkopen.2023.56875

    Article  PubMed  PubMed Central  Google Scholar 

  45. Turner K, Brownstein NC, Whiting J, Arevalo M, Vadaparampil S, Giuliano AR, Islam JY, Meade CD, Gwede CK, Kasting ML, Head KJ, Christy SM. Impact of the COVID-19 pandemic on human papillomavirus (HPV) vaccination among a national sample of United States adults ages 18–45: a cross-sectional study. Prev Med Rep. 2023;31:102067. https://doi.org/10.1016/j.pmedr.2022.102067

    Article  PubMed  Google Scholar 

  46. Van Dyne EA, Henley SJ, Saraiya M, Thomas CC, Markowitz LE, Benard VB. Trends in Human Papillomavirus-Associated Cancers - United States, 1999-2015. MMWR Morb Mortal Wkly Rep. 2018;67(33):918–24. https://doi.org/10.15585/mmwr.mm6733a2.

    Article  PubMed  PubMed Central  Google Scholar 

  47. Wilson SL, Wiysonge C. Social media and vaccine hesitancy. BMJ Glob Health, 2020;5(10):e004206. https://doi.org/10.1136/bmjgh-2020-004206.

    Article  PubMed  PubMed Central  Google Scholar 

Download references

Acknowledgements

All the staff for the program Tiempo De Vacunarte for the amazing work they do in the community.

Funding

Funding/Support: This work was supported by a Cancer Prevention Program grant from the Cancer Prevention Research Institute of Texas (CPRIT) (grant numbers P140211 and PP190058). The funding agency did not participate in the study design, data collection and analysis, data interpretation, report writing, or decision to submit the article for publication.

Author information

Authors and Affiliations

Authors

Contributions

Phong Nguyen conceptualized the study, critically reviewed it, and revised the manuscript for important intellectual content. Dr. Jessica Calderon-Mora conceptualized the study and critically reviewed and revised the manuscript for important intellectual content. Sonya Roy conceptualized the study, critically reviewed, and revised the manuscript for important intellectual content. Dr. Vishwajeet Singh provided statistical analysis and critically reviewed and revised the manuscript for important intellectual content. Amir Hernandez critically reviewed and revised the manuscript for important intellectual content. Dr. Jennifer Molokwu conceptualized the study and critically reviewed and revised the manuscript for important intellectual content. All authors approved the final manuscript as submitted and agreed to be accountable for all aspects of this work.

Corresponding author

Correspondence to Jennifer Molokwu.

Ethics declarations

Ethics approval and consent to participate

Ethics approval: The Texas Tech University Health Sciences Center El Paso Institutional Review Board (IRB) approved this retrospective study involving human participants and was exempt from formal IRB review (reference number: E22095).

Informed Consent: The study was a retrospective analysis of De-identified participant data. Individual consent was obtained to participate in the program.

Consent for publication

All authors approved the final manuscript as submitted and agreed to be accountable for all aspects of this work. All author consent to the publication of this work.

Competing interests

The authors declare no competing interests.

Additional information

Publisher’s Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Rights and permissions

Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated in a credit line to the data.

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Nguyen, P., Calderon-Mora, J., Singh, V. et al. Impact of the COVID-19 pandemic on HPV vaccine uptake in a predominantly Hispanic Border Community: A retrospective cross-sectional analysis of the "Tiempo de Vacunarte Program". Arch Public Health 82, 96 (2024). https://doi.org/10.1186/s13690-024-01318-0

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1186/s13690-024-01318-0

Keywords