Areas
Cross-sectional and retrospective case-control studies, which select participants after both vaccination and menstrual changes have already occurred, are more prone to selection bias than prospective studies because selection is more likely to be dependent on both exposure and outcome. Another common concern about many studies is that participants were asked to report data on changes in menstruation in relation to vaccination, or participants were asked to provide data on vaccination and menstrual changes on the same questionnaire, both of which are likely to increase potential for spurious positive associations. The studies at lowest risk of bias are those that: 1) did not select participants in a way that depended on outcome status, 2) collected data prospectively in time (i.e., vaccination data were collected before data on the occurrence of menstrual changes), 3) included a comparison group of non-vaccinated participants, and 4) followed participants for at least two menstrual cycles to assess the extent to which menstrual changes persisted over time. Ideally, a study would use vaccine data on brand, dose, and dates from a population vaccine registry (gold standard), but only a small subset of studies had access to vaccination records. Nevertheless, studies that collected data proximal in time to the occurrence of vaccination are likely to have reasonably valid exposure classification. Prospective cohort studies in which participants were asked to report any changes in menstruation attributed to vaccination should still be considered at relatively higher risk of bias. Overall, based on these criteria, there is a moderate-to-high risk of bias in the vast majority of published studies on this topic.
While we still do not know the mechanism for vaccine-induced menstrual changes, in retrospect it is not surprising that temporary changes to the menstrual cycle could occur with vaccination. Prior evidence exists demonstrating that the reproductive and immune systems ‘cross-talk,’ and a large body of literature has demonstrated the role of estrogen receptors and their impact on immune function,( 52 , 53 ) although the extent to which the reverse is true (i.e., influence of immune responses on estrogen) is not well-documented. The menstrual cycle is orchestrated through the hypothalamic-pituitary-ovarian (HPO) axis with a series of well-timed hormonal events.( 54 ) The follicular phase of the menstrual cycle or the first half of the menstrual cycle prior to ovulation is the portion of the cycle that is the most variable in its duration while the luteal phase is a consistent duration (typically 14 days).( 55 ) It is quite plausible that both stress and inflammation would impact the balance of ovarian hormones that determine menstrual cyclicity.( 56 ) Future research exploring these potential mechanisms is warranted.
Methods
To identify potentially relevant publications, we used the following search terms on PubMed to identify articles published on or before October 31, 2023: “COVID-19”, “vaccination”, “vaccine”, “menstruation”, “menses”, and “menstrual changes.” After excluding case series or case reports and publications based solely on postmenopausal individuals, we identified a total of 53 publications: 11 prospective cohort studies, 11 retrospective cohort studies or registry-based cohort studies, and 31 cross-sectional or retrospective case-control studies. These papers were then rated by the co-authors and a research staff member for risk of bias using the ROBINS-E tool, which provides a structured method for evaluating risk of bias in non-randomized epidemiological studies.( 11 ) Authors of any of the included papers were not involved in the risk assessment of these papers. In the results, we have highlighted key studies while summarizing the evidence. Additionally, we provide study details for the identified prospective and retrospective cohort studies or registry-based cohort studies in Tables 1 and 2 , respectively. Study details for cross-sectional studies or retrospective case-control studies are presented in Supplement Table 1 .
Results
Cycle length is a distinct measurement defined as the time period from the first day of the last menstrual period until the day before the next menses starts. The bulk of research on COVID-19 vaccination and menstrual health has been focused on cycle length as it is a well-defined and, often, routinely-tracked outcome. Formal passive reporting systems and public reports described both longer and shorter cycle lengths in the cycle during which COVID-19 vaccination occurs.( 12 , 13 ) The first prospective study to identify an association between COVID-19 vaccination and temporary alterations to menstrual cycle length was a retrospective cohort study of prospectively tracked menstrual cycles in approximately 4,000 US-based individuals.( 14 ) The study utilized de-identified period tracking data from the FDA-cleared menstrual tracking application Natural Cycles to compare cycle length differences between vaccinated and unvaccinated individuals. The population analyzed had to be not recently pregnant, naturally cycling (no use of hormones), and demonstrate normal menstrual cycle length pre-vaccination. As compared with the unvaccinated control group, vaccinated individuals experienced a slightly longer cycle of less than 1 day after vaccination. A subsequent study broadening the population to include individuals outside the US confirmed the findings with data from nearly 20,000 individuals and additionally found that for most individuals, the increase in cycle length resolved in the cycle following vaccination.( 15 )
Although the average cycle length change observed in these population analyses was small, there were individuals in both the vaccinated and unvaccinated groups who experienced a greater magnitude of change. Of the total, 1,342 participants experienced a change in cycle length of eight or more days, comprising 6.2% of vaccinated individuals and 5.0% of unvaccinated individuals. Individuals who were younger and who had a longer cycle length before vaccination were more likely to experience the increase. This study also found no difference in the type of COVID vaccine (e.g. mRNA, attenuated virus, etc.) and no change in menstrual cycle length (e.g., days of bleeding).
With regard to menstrual cycle phase at the time of vaccination, one retrospective cohort study of individuals using a menstrual tracking application demonstrated that individuals who received vaccine in the follicular phase where more likely to experience a cycle length disturbance then those who received vaccine in the luteal phase.( 16 ) This study was not designed to determine causation, as it did not include a control group or use a validated ovulation date.
Much less is known about the extent to which adolescent girls experience menstrual cycle changes following COVID-19 vaccination – likely given the greater difficulties in studying this vulnerable population. One study included 39 adolescent girls (ages 12–16) and assessed menstrual regularity following vaccination. Although this study did not include a control group, the data showed that 8 girls (of the 23 with pre-vaccine regular cycles) reported some kind of menstrual irregularity 3 months post-vaccination.( 17 ) A separate study in Norway asked mothers of both vaccinated and unvaccinated adolescent girls to retrospectively report any menstrual cycle disturbances in their daughters.( 18 ) The data showed mothers reported more menstrual disturbances (shorter and longer cycles, increased pain, and increased heavy bleeding) in the girls who had been vaccinated, compared to those who were not, although the authors mentioned that menstrual disturbances were common in both groups.
The published literature has continued to demonstrate that COVID-19 vaccination is associated with a slightly longer average cycle length among reproductive-aged individuals who prior to vaccination, had regular cycles.( 16 , 19 – 22 ) We now know the COVID-19 vaccine is associated with changes in cycle length, at least in adult populations, and although a small change in menstrual cycle length may not be meaningful to health care professionals and researchers as it does not signify the need for a clinical work up or intervention, the significance of this body of research is that unanticipated, even small disturbances for a key patient outcome like menstrual health can trigger an exponential rise in concerns, as has been the case with the COVID-19 vaccine.
Studies investigating altered menstrual patterns (i.e., missed periods, intermenstrual bleeding, and cycle irregularity) remain sparse. These outcomes, specifically missed periods and cycle irregularity, overlap somewhat with one another and with cycle length outcomes and may be viewed and defined differently by patients and the scientific community. Intermenstrual bleeding is more straightforward to define, any bleeding that occurs outside of menses, but the data has not been available prospectively or inconsistently tracked by patients. Just three prospective cohort studies in the US and UK have reported on pre- and post-vaccination menstrual cycle characteristics; all concluded that COVID-19 vaccination was not associated with a change in menstrual regularity.( 21 – 23 ) Additionally, one Swedish national register-based cohort study found that COVID-19 vaccinations were not associated with incident menstrual cycle irregularity that was ‘at least of sufficient concern to warrant seeking medical care’ among pre-menopausal women.( 24 )
The evidence is less clear regarding any impact of COVID-19 vaccination on other bleeding disorders. Evidence from any longitudinal studies is absent. We found seven cross-sectional surveys of individuals reporting missed periods and intermenstrual bleeding after receiving COVID-19 vaccination (especially in subsequent and booster doses compared to the 1 st dose).( 25 – 31 ) However, none of the studies was able to ascertain the extent to which these findings were attributable to a natural menstrual variation, selection bias, or causally affected by the vaccines given the cross-sectional study design.
At this time, the current evidence is insufficient to determine if COVID-19 vaccination is associated with cycle irregularity or other altered menstrual patterns.
Menstrual flow is truly a patient-oriented outcome where the patient determines what is heavy or light; thus any reported change from an individual’s baseline is the outcome of interest.( 32 ) Reported menstrual flow effects around COVID-19 vaccination has been mainly retrospectively collected but duration of menses or number of bleeding days has been more available prospectively as it is tracked routinely by individuals and is a main data point captured by menstrual tracking applications.
A large-scale investigation of 9555 menstruating individuals (7401 vaccinated and 2154 unvaccinated) who tracked menstrual cycles using an app found no differences in number of heavy bleeding days, although vaccinated individuals did report greater total bleeding quantity in the cycle when the vaccine was received.( 33 ) Other studies have found no significant changes in self-reported menstrual flow in a large prospective and retrospective sample of women ( 19 ) and no differences in relative risk of reporting “heavier” or “lighter” periods in those vaccinated compared with those who were not.( 34 ) Similar self-report studies have found no differences in menstrual flow following vaccination.( 35 ) However, contradictory findings have also been published suggesting there are changes to menstrual flow following vaccination, with many participants reporting “heavier” menstrual flow.( 12 , 36 , 37 ) These findings also have support from research demonstrating changes to menstrual flow following vaccination,( 31 , 38 ) although there have also been a mix of reported changes including “heavier” and “lighter” flow.( 39 ) Despite these mixed findings, the UK Medicines and Healthcare products Regulatory Agency determined that “heavy flow” be included as a potential vaccine side effect, given the strength of the evidence supporting this outcome and Pfizer and Moderna Product information has now added this as a possible side effect.( 40 )
Menstrual pain is a self-reported outcome measure, defined as pain and discomfort in and around the pelvic region that begins with the onset menstruation. Data on menstrual pain and COVID-19 vaccination are limited, although existing studies do suggest increased menstrual pain after COVID-19 vaccination, affecting around 20–40% of menstruating people after vaccination; estimated prevalence was similar after both the first and second vaccination dose.( 28 , 41 – 43 ) Heterogeneity by type of vaccination in relation to post-vaccination menstrual pain experience remains inconclusive.( 39 , 41 ) However, a longitudinal study that included pre-pandemic and pre-vaccination follow-up data did not observe that menstrual cycle pain complaints varied appreciably according to vaccination status.( 22 ) Importantly, post-vaccination change in menstrual pain could also be attributed to background variability in menstrual pain driven by, for example, between-cycle fluctuations, age-related menstrual changes, or pandemic-related stress.( 44 ) Unlike menstrual length and regularity, menstrual pain and other menstruation-related symptoms can be perceived differently when reported in real time versus recalled and influenced by the format of questions, increasing the risk of misclassification or recall bias.
One of the most common medical conditions associated with menstrual pain is endometriosis. Endometriosis is a disease where the lining of the uterus (the “endometrium”) grows outside of the uterus. Endometriosis is associated with other painful conditions, including dyspareunia, dysuria, and dyschezia, and can be a source of chronic pelvic pain. It is associated with inflammatory processes, and thus, individuals with endometriosis may be particularly susceptible to effects from the COVID-19 vaccine. Emerging research suggests that people with endometriosis immunized with SARS-CoV-2 mRNA vaccines perceived worsening menstrual cycle abnormalities – namely, fatigue, pain, and regularity disorders, compared to those without a history of endometriosis.( 43 , 45 ) Among people with endometriosis, those taking hormonal treatment reported less change in menstrual-associated symptoms,( 43 ) suggesting a possible protective or stabilizing effect of estrogen or progesterone. Notably, in these studies, endometriosis was confirmed by either transvaginal sonography or by hospital record, so it is not clear if participants received surgical confirmation of endometriosis at any point, which is the gold standard for diagnosis.
The diagnosis of menopause is quite clear, diagnosed 12 months after an individual’s last period. Although one small study of 64 post-menopausal Lebanese women found no evidence of vaginal bleeding following receipt of the COVID-19 vaccine,( 46 ) many larger studies examining population data have found evidence of a slightly increased risk of bleeding in post-menopausal women. In an examination of clinical records of 485,644 post-menopausal women, there was a small but statistically significant increase in the likelihood of receiving an abnormal bleeding diagnostic code in the 16 weeks following COVID-19 vaccination.( 47 ) However, the authors note that this temporary increase was so small that it translated to fewer than 1 in 1000 women experiencing this change. Another study of over 1.5 million Swedish post-menopausal women also reported a small but significantly increased risk of bleeding, particularly after receiving a third dose of the vaccine.( 24 ) An evaluation of reports of COVID-19 vaccine side effects to “v-safe” – an independent and voluntary vaccine monitoring system for individuals in the United States – found that approximately 4% of the 84,943 responses of menstrual disturbances reported post-menopausal bleeding.( 48 ) Additionally, a supplementary analysis of 14,577 Danish self-reported postmenopausal women showed 2% (n=347) reported some “menstrual changes” following vaccination.( 49 ) Post-menopausal women, by definition, are not menstruating, although the authors did not clarify the specific “menstrual” changes reported by post-menopausal women. Taken together, it does appear that many post-menopausal individuals experienced some abnormal vaginal bleeding following COVID-19 vaccination and this information is critically important information for this population to know when considering the potential side effects of the COVID-19 vaccination.
Hormonal contraception encompasses a wide range of methods, method delivery systems and dosing, and can contain only progestin or estrogen combined with a progestin. The few studies that have specifically evaluated the impact of hormonal contraception on menstrual cycle changes following COVID-19 vaccination have suggested that hormonal use has a protective effect against changes to the menstrual cycle but not all studies are able to differentiate between different methods.
One large study including prospective and retrospectively collected self-report data found a delay in the menstrual period following vaccination of 0.37 days, which was smaller delay than those not using hormonal contraception. There were no significant changes to menstrual flow following vaccination in those using hormonal contraception generally, although when type of hormone was analyzed separately, those using progesterone-only hormones reported heavier flow following vaccination.( 19 ) A separate study also reported heavier menstrual flow post-vaccine among those using hormonal contraception, although type of hormonal contraceptive was not analyzed separately. Those using hormonal treatments also reported more breakthrough bleeding.( 12 ) However, one additional study reported fewer menstrual cycle changes and less bleeding changes following each the first and second dose vaccinations in those using hormonal contraceptives compared to those who were not.( 43 )
The term “stress” is a broad and wide-ranging term that encompasses a number of areas related to psychological distress, worry, or concern.( 50 ) Many different measures can reflect different aspects of stress – including depression, anxiety, perceived stress, and COVID-19 pandemic-related stress. There have been mixed results with regard to the impact of psychological stress on menstrual disturbances following receipt of the COVID-19 vaccine. Wang and colleagues reported that adult vaccinated women had a higher risk of increased cycle length compared with unvaccinated women, and this finding persisted after accounting for pandemic-related stress, which was assessed as depression, anxiety, posttraumatic stress, perceived stress, and worry about COVID-19.( 21 ) Similarly, another study found no relationship between perceived stress and vaccination status or menstrual cycle characteristics.( 22 ) However, another study found that changes in menstrual cycle characteristics were correlated with symptoms of depression, suggesting that the menstrual cycle effects of the vaccine may be related to changes in mood.( 51 ) However, these inconsistent findings may result from different assessments of stress and how those measures related to changes in the menstrual cycle.
Almost all of the research published thus far is focused on individuals with regular pre-vaccination menstrual cycles.( 32 ) The restriction of analyses to this ‘normal’ cycle population was by design, otherwise it would have been impossible to determine if an actual signal existed due to the vaccine. Individuals with baseline irregular cycles did report menstrual disturbances through official passive reporting systems (VAERS) and social media-based surveys. However, due to the inherent increased variability with irregular cycles, it will be a challenge to determine what changes are due to the vaccine.
Discussion
This review summarized the existing literature on the relationship between COVID-19 vaccination and menstrual cycle changes. Overall, data from published studies indicate small transient changes in menstrual cycle length (i.e., longer cycle length) following vaccination. Additionally, there is some evidence that other menstrual characteristics such as menstrual pain, menstrual flow, and intermenstrual bleeding also occur following vaccination. Less is known about how these effects impact unique populations, including post-menopausal individuals and adolescents, although the limited data available suggest that “breakthrough” bleeding or menstrual cycle changes, respectively, may occur. Data from several studies suggest estrogen-containing hormonal contraception may protect against changes, which may be due to combined hormonal contraception’s inherent, dominant effect on the endometrium or perhaps, a unique estrogen-inflammatory interaction. Additionally, preliminary evidence exists suggesting that menstrual cycle phase at the time of vaccination impacts the degree of menstrual changes, although much more research is needed in this area. The role of stress and long/short pre-vaccination cycles is much less clear due to the very limited data available.
Despite the range of studies included in this review, outcome measures varied from study to study and likely reflecting the lack of established measures for assessing menstrual characteristics or use of whatever data was available in attempts to try to answer the question. Although efforts have been made to provide guidelines for menstrual cycle outcome measures,( 57 ) this remains a significant gap in menstrual-related research. Additionally, lack of standardized measures creates further obstacles for future clinical trials to evaluate and assess the impact of interventions on the menstrual cycle. The menstrual cycle is a significant indicator of women’s health outside of fertility and pregnancy, and the lack of attention to this critical health indicator suggests much work is still needed to address women’s health disparities.
We now have a solid evidence base from data over the past 3 years demonstrating the impact of the COVID-19 vaccine on the menstrual cycle. However, it should be noted that the majority of these papers are published in obstetrics/gynecology or low impact health journals. The lack of publication of vaccine/menstrual cycle papers in general medical journals suggests that much of academic medicine does not see this information as important for public health. Unfortunately, many providers and members of the public may not learn about these results because of decreased visibility or availability of the published articles. General medical journals may want to reconsider publication priorities in light of the impact of women’s health outcomes on public health; given the paucity of evidence in the field, even a small or negative finding is important for both patients and providers. Going forward, we encourage the measurement and monitoring of menstrual health as a key outcome in future clinical trials.
Introduction
Half the population will experience menstruation at some point in their lives. Among individuals with a uterus, menstruation occurs for approximately 5–7 days each month for 40 years. Menstrual health, whether characterized in terms of cycle length, days of flow, volume/intensity of flow, regularity, or associated symptoms, is a key patient-reported outcome beyond its importance as a general indicator of health and fertility. Menstrual health outcomes are not routinely included in clinical trials and have not been a consideration for vaccine trials.( 1 – 4 ) Numerous reports of menstrual disturbances following COVID-19 vaccination, the complete absence of evidence, and the lack of attention on this sex-specific issue contributes to vaccine hesitancy, causes public mistrust, and directly impacts preventable morbidity and mortality (see Supplement 1 ).( 5 – 10 ) The purpose of this review was to summarize the existing evidence on the relationship between COVID-19 vaccination and menstrual health.