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1.
Perm J ; 27(2): 75-86, 2023 06 15.
Article in English | MEDLINE | ID: mdl-37154719

ABSTRACT

Introduction This paper describes the epidemiology and clinical presentation of complex regional pain syndrome (CRPS) in a large, integrated health care delivery system; and CRPS incidence rates (IRs) over a time period spanning human papillomavirus (HPV) vaccine licensure and published case reports of CRPS following HPV vaccination. Methods The authors examined CRPS diagnoses in patients aged 9-30 years between January 2002 and December 2017 using electronic medical records, excluding patients with lower limb diagnoses only. Medical record abstraction and adjudication were conducted to verify diagnoses and describe clinical characteristics. CRPS IRs were calculated for 3 periods: Period 1 (2002-2006: before HPV vaccine licensure), Period 2 (2007-2012: after licensure but before published case reports), and Period 3 (2013-2017: after published case reports). Results A total of 231 individuals received an upper limb or unspecified CRPS diagnosis code during the study period; 113 cases were verified through abstraction and adjudication. Most verified cases (73%) were associated with a clear precipitating event (eg, non-vaccine-related injury, surgical procedure). The authors identified only 1 case in which a practitioner attributed CRPS onset to HPV vaccination. Twenty-five incident cases occurred in Period 1 (IR = 4.35/100,000 person-years (PY), 95% confidence interval (CI) = 2.94-6.44), 42 in Period 2 (IR = 5.94/100,000 PY, 95% CI = 4.39-8.04), and 29 in Period 3 (IR = 4.53/100,000 PY, 95% CI = 3.15-6.52); differences between periods were not statistically significant. Conclusion These data provide a comprehensive assessment of the epidemiology and characteristics of CRPS in children and young adults and provide further reassurance about the safety of HPV vaccination.


Subject(s)
Complex Regional Pain Syndromes , Papillomavirus Infections , Papillomavirus Vaccines , Child , Humans , Young Adult , Complex Regional Pain Syndromes/epidemiology , Complex Regional Pain Syndromes/diagnosis , Papillomavirus Infections/prevention & control , Retrospective Studies , Upper Extremity , Vaccination
2.
J Low Genit Tract Dis ; 26(2): 135-139, 2022 Apr 01.
Article in English | MEDLINE | ID: mdl-35316258

ABSTRACT

OBJECTIVES: Since 2006, the US human papillomavirus (HPV) vaccination program has led to decreases in HPV infections caused by high-risk vaccine-targeted HPV types (HPV 16/18). We assessed differences in high-risk HPV prevalence by cervical cytology result among 20- to 24-year-old persons participating in routine cervical cancer screening in 2015-2017 compared with 2007. MATERIALS AND METHODS: Residual routine cervical cancer screening specimens were collected from 20- to 24-year-old members of 2 integrated healthcare delivery systems as part of a cross-sectional study and were tested for 37 HPV types. Cytology results and vaccination status (≥1 dose) were extracted from medical records. Cytology categories were normal, atypical squamous cells of undefined significance, low-grade squamous intraepithelial lesions (SIL), or high-grade SIL/atypical squamous cells cannot exclude high-grade SIL. Prevalences of HPV categories (HPV 16/18, HPV 31/33/45/52/58, HPV 35/39/51/56/59/66/68) were estimated by cytology result for 2007 and 2015-2017. RESULTS: Specimens from 2007 (n = 4046) were from unvaccinated participants; 4574 of 8442 specimens (54.2%) from 2015-2017 were from vaccinated participants. Overall, HPV 16/18 positivity was lower in 2015-2017 compared with 2007 in all groups: high-grade SIL/atypical squamous cells cannot exclude high-grade SIL, 16.0% vs 69.2%; low-grade SIL, 5.4% vs 40.1%; atypical squamous cells of undefined significance, 5.0% vs 25.6%; and normal, 1.3% vs 8.1%. Human papillomavirus 31/33/45/52/58 prevalence was stable for all cytology groups; HPV 35/39/51/56/59/66/68 prevalence increased among low-grade SIL specimens (53.9% to 65.2%) but remained stable in other groups. CONCLUSIONS: Prevalence of vaccine-targeted high-risk HPV types 16/18 was dramatically lower in 2015-2017 than 2007 across all cytology result groups while prevalence of other high-risk HPV types was mainly stable, supporting vaccine impact with no evidence of type replacement.


Subject(s)
Uterine Cervical Neoplasms , Adult , Cross-Sectional Studies , Early Detection of Cancer , Female , Human papillomavirus 16 , Human papillomavirus 18 , Humans , Uterine Cervical Neoplasms/diagnosis , Uterine Cervical Neoplasms/epidemiology , Uterine Cervical Neoplasms/pathology , Young Adult
3.
Vaccine ; 40(5): 752-756, 2022 01 31.
Article in English | MEDLINE | ID: mdl-34980508

ABSTRACT

BACKGROUND: The Vaccine Safety Datalink (VSD) uses vaccination data from electronic health records (EHR) at eight integrated health systems to monitor vaccine safety. Accurate capture of data from vaccines administered outside of the health system is critical for vaccine safety research, especially for COVID-19 vaccines, where many are administered in non-traditional settings. However, timely access and inclusion of data from Immunization Information Systems (IIS) into VSD safety assessments is not well understood. METHODS: We surveyed the eight data-contributing VSD sites to assess: 1) status of sending data to IIS; 2) status of receiving data from IIS; and 3) integration of IIS data into the site EHR. Sites reported separately for COVID-19 vaccination to capture any differences in capacity to receive and integrate data on COVID-19 vaccines versus other vaccines. RESULTS: All VSD sites send data to and receive data from their state IIS. All eight sites (100%) routinely integrate IIS data for COVID-19 vaccines into VSD research studies. Six sites (75%) also routinely integrate all other vaccination data; two sites integrate data from IIS following a reconciliation process, which can result in delays to integration into VSD datasets. CONCLUSIONS: COVID-19 vaccines are being administered in a variety of non-traditional settings, where IIS are commonly used as centralized reporting systems. All eight VSD sites receive and integrate COVID-19 vaccine data from IIS, which positions the VSD well for conducting quality assessments of vaccine safety. Efforts to improve the timely receipt of all vaccination data will improve capacity to conduct vaccine safety assessments within the VSD.


Subject(s)
COVID-19 , Vaccines , COVID-19 Vaccines , Humans , Immunization , Information Systems , SARS-CoV-2 , United States , Vaccination/adverse effects , Vaccines/adverse effects
4.
MMWR Morb Mortal Wkly Rep ; 70(24): 895-899, 2021 Jun 18.
Article in English | MEDLINE | ID: mdl-34138834

ABSTRACT

COVID-19 vaccines are critical for ending the COVID-19 pandemic; however, current data about vaccination coverage and safety in pregnant women are limited. Pregnant women are at increased risk for severe illness and death from COVID-19 compared with nonpregnant women of reproductive age, and are at risk for adverse pregnancy outcomes, such as preterm birth (1-4). Pregnant women are eligible for and can receive any of the three COVID-19 vaccines available in the United States via Emergency Use Authorization.* Data from Vaccine Safety Datalink (VSD), a collaboration between CDC and multiple integrated health systems, were analyzed to assess receipt of ≥1 dose (first or second dose of the Pfizer-BioNTech or Moderna vaccines or a single dose of the Janssen [Johnson & Johnson] vaccine) of any COVID-19 vaccine during pregnancy, receipt of first dose of a 2-dose COVID-19 vaccine (initiation), or completion of a 1- or 2-dose COVID-19 vaccination series. During December 14, 2020-May 8, 2021, a total of 135,968 pregnant women were identified, 22,197 (16.3%) of whom had received ≥1 dose of a vaccine during pregnancy. Among these 135,968 women, 7,154 (5.3%) had initiated and 15,043 (11.1%) had completed vaccination during pregnancy. Receipt of ≥1 dose of COVID-19 vaccine during pregnancy was highest among women aged 35-49 years (22.7%) and lowest among those aged 18-24 years (5.5%), and higher among non-Hispanic Asian (Asian) (24.7%) and non-Hispanic White (White) women (19.7%) than among Hispanic (11.9%) and non-Hispanic Black (Black) women (6.0%). Vaccination coverage increased among all racial and ethnic groups over the analytic period, likely because of increased eligibility for vaccination† and increased availability of vaccine over time. These findings indicate the need for improved outreach to and engagement with pregnant women, especially those from racial and ethnic minority groups who might be at higher risk for severe health outcomes because of COVID-19 (4). In addition, providing accurate and timely information about COVID-19 vaccination to health care providers, pregnant women, and women of reproductive age can improve vaccine confidence and coverage by ensuring optimal shared clinical decision-making.


Subject(s)
COVID-19 Vaccines/administration & dosage , COVID-19/prevention & control , Pregnant Women , Vaccination Coverage/statistics & numerical data , Adolescent , Adult , COVID-19/epidemiology , Delivery of Health Care, Integrated , Female , Humans , Middle Aged , Pregnancy , Pregnant Women/ethnology , United States/epidemiology , Young Adult
5.
J Infect Dis ; 212(12): 1970-5, 2015 Dec 15.
Article in English | MEDLINE | ID: mdl-26123561

ABSTRACT

BACKGROUND: In the United States, human papillomavirus (HPV) vaccine is recommended for 11- or 12-year-olds, and for young adults not previously vaccinated. Early vaccine impact can be measured by reductions in vaccine-type (VT) HPV prevalence. METHODS: Consecutive residual cervical specimens were retained from women aged 20-29 years at Kaiser Permanente Northwest in 2007, 2012, and 2013. HPV genotypes were determined using L1 consensus polymerase chain reaction with type-specific hybridization to detect 37 types, including VT HPV (HPV type 6, 11, 16, and 18). We compared HPV prevalence in 2007 and 2012-2013, and we evaluated predictors of VT HPV and any-HPV prevalence in 2012-2013. RESULTS: In 2012-2013, 31.9% of 4181 women had initiated HPV vaccination. VT HPV prevalence decreased from 10.6% in 2007 to 6.2% in 2012-2013 (P < .001). In 2012-2013, VT HPV prevalence was significantly lower among those who initiated vaccination <19 years (adjusted prevalence ratio, 0.1; 95% confidence interval, .1-.3) than among those who were not vaccinated, and higher among those who had chlamydia, human immunodeficiency virus, or pregnancy testing in the past year than among those who did not (adjusted prevalence ratio, 1.4; 95% confidence interval, 1.1-1.8). CONCLUSIONS: Reduction in VT HPV was found in young women in an integrated healthcare delivery system within 6 years of vaccine introduction, indicating early HPV vaccine impact.


Subject(s)
Papillomaviridae/classification , Papillomaviridae/isolation & purification , Papillomavirus Infections/epidemiology , Papillomavirus Infections/prevention & control , Papillomavirus Vaccines/administration & dosage , Adult , Female , Genotype , Genotyping Techniques , Humans , Papillomaviridae/genetics , Papillomavirus Infections/virology , Polymerase Chain Reaction , Prevalence , United States/epidemiology , Young Adult
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