Department of Pathology, Sichuan Clinical Research Center for Cancer, Sichuan Cancer Hospital & Institute, Sichuan Cancer Center, University of Electronic Science and Technology of China
Does recombinant Lactobacillus expressing granulocyte colony-stimulating factor (G-CSF) have a better protective effect than the current treatment of thin endometrium (TE)?
Summary Answer
This study suggested that the intrauterine injection of Lactobacillus crispastus (L. crispastus)-pPG612-G-CSF has a positive effect on preventing TE induced by 95% alcohol in mice.
What Is Known Already
TE has a negative impact on the success rate of ART in patients, and is usually caused by intrauterine surgery, endometrial infection, or hormone drugs. Exogenous G-CSF can promote endometrial vascular remodelling and increase endometrial receptivity and the embryo implantation rate. Moreover, Lactobacillus plays a crucial role in maintaining and regulating the local microecological balance of the reproductive tract, and it could be a delivery carrier of the endometrial repair drug G-CSF.
Study Design, Size, Duration
We constructed engineered L. crispastus strains expressing G-CSF. The mice were divided into five groups: (i) Control group (C, n = 28), uteri were treated with preheated saline solution via intrauterine injection on the third and sixth day of oestrus; (ii) Model group (M, n = 35), where uteri were treated with 95% alcohol on the third day of oestrus and preheated saline solution on the sixth day of oestrus via intrauterine injection; (iii) L. crispatus-pPG612-treatment group (L, n = 45), where uteri were treated with 95% alcohol on the third day of oestrus and 0.1 ml × 108 CFU/ml L. crispatus-pPG612 on the sixth day of oestrus via intrauterine injection; (iv) L. crispatus-pPG612-treatment group (LG, n = 45), where uteri were treated with 95% alcohol on the third day of oestrus and 0.1 ml × 108 CFU/ml L. crispatus-pPG612-G-CSF on the sixth day of oestrus via intrauterine injection; (v) G-CSF-treatment group (G, n = 52), where uteri were treated with 95% alcohol on the third day of oestrus and 30 µg/kg G-CSF on the sixth day of oestrus via intrauterine injection. Then, we compared the effects of L. crispastus, L. crispatus-pPG612-G-CSF and G-CSF on endometrial thickness, angiogenesis, fibrosis, and inflammation in the TE mouse.
Participants/Materials, Setting, Methods
We collected uterine tissues for haematoxylin-eosin staining, immunohistochemical staining, Western blot and RT-PCR, as well as serum for ELISA and uterine flushing solution for high-throughput sequencing.
MAIN RESULTS AND THE ROLE OF CHANCE: Compared with those in the M group (the mice of the group were intrauterine injected 95% alcohol and treated with saline solution), the L. crispatus-pPG612-G-CSF strain increased the thickness of the endometrium (P < 0.001) and the number of blood vessels and glands (both P < 0.001), enhanced the expression of cytokeratin 19 (CK19) (P < 0.001), vimentin (Vim) (P < 0.001), vascular endothelial growth factor-A (P < 0.001), and CD34 (P < 0.001), and decreased fibrosis levels (P = 0.004). In addition, the high-throughput sequencing results indicated that the L. crispatus-pPG612-G-CSF strain could decrease the abundance of Pseudomonas (P = 0.044) and Actinomyces spp. (P = 0.094) in TE mice and increased the average number of embryos (P = 0.036). Finally, the L. crispatus-pPG612-G-CSF strain was preliminarily confirmed to activate the phosphoinositide 3-kinase/protein kinase B (PI3K/AKT) signalling pathway and enhance the mRNA expression of hypoxia-inducible factor-1α (P < 0.001), vascular endometrial growth factor (P = 0.003), and endothelial cell nitric oxide synthase (P = 0.003) in mouse uterine tissue.
Large Scale Data
N/A.
Limitations, Reasons for Caution
Therapy with the L. crispatus-pPG612-G-CSF strain has tremendous potential to accelerate the reparative processes of TE. However, we have reported only the expression of genes and proteins related to the PI3K/AKT pathway, and numerous other mechanisms may also be involved in the restoration of the endometrium by L. crispatus-pPG612-G-CSF.
Wider Implications of the Findings
The results from the study provide new ideas and suggest new methods for TE treatment.
STUDY FUNDING/COMPETING INTEREST(S): This work was financially supported by the Project of Science and Technology Development Plan of Jilin Province (grant number 20210101232JC), the Science and Technology Plan Item of Jilin Provincial Education Department (grant number JT53101022010), and the Doctoral Research Start-up Fund of Jilin Medical University (grant numbers JYBS2021014LK and 2022JYBS006KJ). The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as potential conflicts of interest.
Mørch NF et al., 2026·Human reproduction (Oxford, England)
Are maternal concentrations of pregnancy-associated plasma protein-A (PAPP-A) and insulin-like growth factor-1 (IGF-1) influenced by the frozen embryo transfer (FET) protocol in early pregnancy? Maternal concentrations of PAPP-A and IGF-1 were significantly lower in programmed cycle (PC) FET compared to modified natural cycle (mNC) FET among ovulatory women and compared to gonadotrophin-stimulated cycle (gSC) FET in anovulatory women. PC-FET has been associated with increased risks of preeclampsia and other placenta-related complications, pointing to altered placental development. PAPP-A and IGF-1 are biochemical markers of early placental function, and reduced levels have been linked to preeclampsia and other adverse outcomes. These markers may therefore provide insight into the pathways underlying the distinct risk profile of PC-FET. STUDY DESIGN, SIZE, This is a secondary analysis from a randomized controlled trial investigating estradiol and progesterone concentrations in FET treatments. The trial was conducted at Copenhagen University Hospital-Herlev, Denmark, from April 2021 to December 2024. Biochemical analyses for PAPP-A and IGF-1 were performed on stored biobank samples from the trial. The main analyses included women with ongoing pregnancies (n = 116), while additional analyses of IGF-1 were conducted in all ovulatory women with available biobank samples (n = 193). PARTICIPANTS/MATERIALS, SETTING, Eligible participants were women aged 18-40 years with BMI ≤35 kg/m2 undergoing frozen-thawed autologous blastocyst transfer. Ovulatory women were randomized to mNC or PC, and anovulatory women to gSC or PC. Samples were collected at the following 7 timepoints on the 2nd or 3rd day of menstrual bleeding, on the day of trigger/endometrial thickness ≥7 mm, on the day of embryo transfer and by gestational ages (GA) 4 + 2, 6 + 0, 8 + 0, and 9 + 6. Data on placental weight were collected at delivery. MAIN The present analyses included women with ongoing pregnancies 43 in the ovulatory mNC group, 42 in the ovulatory PC group, 16 in the anovulatory gSC group, and 15 in the anovulatory PC group. PC had substantially lower IGF-1 concentrations from treatment initiation through GA 8 + 0 compared to both mNC and gSC. Ovulatory women treated with PC showed significantly lower PAPP-A concentrations during endometrial preparation (7.4 vs 8.7 mU/l; adjusted P = 0.02), at embryo transfer (6.7 vs 8.8 mU/l; adjusted P < 0.001), and GA 4 + 2 (7.2 vs 8.5 mU/l; adjusted P = 0.03) than women treated with mNC. Among anovulatory women, PAPP-A concentrations were also reduced during endometrial preparation (5.8 vs 9.1 mU/l; adjusted P = 0.008) in PC compared to gSC. LIMITATIONS, As this was a secondary analysis, no formal power calculation was made, and statistical power may therefore be limited. We provide evidence that PC-FET was followed by lower IGF-1 concentrations in early pregnancy and by time-dependent reductions in PAPP-A compared to mNC-FET and gSC-FET. These findings suggest alterations in early placental biology that may contribute to the adverse obstetric risk profile associated with PC-FET. Future studies should clarify whether these changes are related to the use of oral estradiol and whether alternative administration routes could modify this risk. STUDY FUNDING/COMPETING INTEREST(S): The trial was funded by Gedeon Richter Nordics AB, including analysis of biobank samples (grant numbers DK-2019-04, DK-2022-03, DK-2023-08, DK-2023-06, DK-2024-08). The trial also received one grant from the Gangsted-Rasmussen Foundation (grant number A39784) and a grant was obtained from the local research board at Copenhagen University Hospital-Herlev. The study was designed and planned independently, with no involvement from the funders in data analysis or interpretation of the results. N.F.M. has received funding for congress attendance from Gedeon Richter Nordics AB and Merck A/S, unrelated to the present work. B.N. has received grants to the institution from Merck A/S, Gedeon Richter Nordics AB, and Ferring Pharmaceuticals A/S, along with personal fees from Ferring Pharmaceuticals A/S, travel support from Gedeon Richter Nordics AB, and has participated in a data safety monitoring or advisory board for Ferring Pharmaceuticals A/S, outside of this research. M.K. has received funding from Rigshospitalets Research Board outside of this research. L.R. has received a research grant from the Novo Nordisk Foundation outside of this research. P.F.S. has received grants from Merck A/S, Gedeon Richter Nordics AB, and Ferring Pharmaceuticals A/S, travel support from Ferring Pharmaceuticals A/S, and personal fees from Novo Nordisk for webinars, outside of this study. 2020-001218-39 in EudraCT.
Are dietary patterns associated with age at menarche after accounting for BMI-for-age (BMIz) and height? We observed associations between both the Alternative Healthy Eating Index (AHEI) and the Empirical Dietary Inflammatory Pattern (EDIP) and age at menarche. Dietary patterns have been sparsely examined in relation to age at menarche and no studies have examined the association between the AHEI, a healthier diet, and EDIP, a pro-inflammatory diet, and menarche. STUDY DESIGN, SIZE, The Growing Up Today Study (GUTS) is a prospective cohort of children ages 9-14 years at study enrollment. GUTS enrolled in two waves with enrollment beginning in 1996 (GUTS1) and 2004 (GUTS2). For this analysis, GUTS1 and GUTS2 participants were followed through 2001 and 2008, respectively. PARTICIPANTS/MATERIALS, SETTING, We included 7530 participants who completed food frequency questionnaire(s) (FFQ) prior to menarche who then self-reported age at menarche during study follow-up. Cox proportional hazard models were used to calculate multivariable hazard ratios (HRs) and 95% CIs for the associations between two dietary patterns, the AHEI and EDIP, and age at menarche, with and without adjustment for time-varying BMIz and height. MAIN Six thousand nine hundred ninety-two participants (93%) reported menarche during the study period. On average, participants completed the baseline FFQ 1.75 years prior to menarche. Participants in the highest quintile of AHEI diet score (indicating a healthier diet) were 8% less likely to attain menarche within the next month compared to those in the lowest quintile (95% CI = 0.85-0.99; Ptrend = 0.03). This association remained after adjustment for BMIz and height (corresponding HR = 0.93; 95% CI = 0.86-1.00; Ptrend = 0.04). Participants in the highest quintile of the EDIP score (i.e. most inflammatory diet), were 15% more likely to attain menarche in the next month relative to those in the lowest quintile (95% CI = 1.06-1.25; Ptrend = 0.0004), and the association remained following adjustment for BMIz and height (corresponding HR = 1.15; 95% CI = 1.06-1.25; Ptrend = 0.0004). LIMITATIONS, Self-reported questionnaires are subject to some error; however, given our prospective study design it is likely this error is non-differential with respect to the outcome. Our findings of an association between both the AHEI and EDIP and age at menarche indicate that diet quality may play a role in age at menarche independent of BMI or height. STUDY FUNDING/COMPETING INTEREST(S): This work was supported by the Breast Cancer Research Foundation. The GUTS is supported by the National Institutes of Health U01 HL145386. C.P.D. was supported by National Institutes of Health T32 CA094880. The authors have no conflicts of interest to disclose. N/A.
EndometriosisMenopause TimingEndometriosis HistoryPooled Cohort Analysis
Open Access
What is the association between endometriosis and the type and age of menopause? Women with endometriosis had a 7-fold increased risk of undergoing surgical menopause rather than natural menopause and were more likely to experience premature or early menopause, both surgically and naturally. Endometriosis is associated with reduced ovarian reserve, but evidence on its relationship with the type of menopause (surgical vs natural) and timing (especially premature and early menopause) is limited. Women with endometriosis are more likely to undergo hysterectomy and/or oophorectomy (either unilateral or bilateral), but the average age of these surgeries remains unclear. STUDY DESIGN, SIZE, The study analysed individual-level data from 279 948 women in five cohort studies conducted in the UK, Australia, Sweden, and Japan between 1996 and 2022. PARTICIPANTS/MATERIALS, SETTING, Women whose menopause type and age could not be determined due to premenopausal hysterectomy with ovarian preservation or use of menopausal hormone therapy were excluded. Endometriosis was identified through self-reports and administrative data. Surgical menopause was defined as premenopausal bilateral oophorectomy. Fine-Gray subdistribution hazard models estimated hazard ratios (HRs) for surgical and natural menopause. Age at menopause was determined by the ages at the final menstrual period or bilateral oophorectomy. Linear regression assessed mean differences in menopause age, while multinomial logistic regression estimated odds ratios (ORs) <40 (premature), 40-44 (early), 45-49, 50-51 (reference), 52-54, and ≥55 years. Spontaneous premature ovarian insufficiency (POI) was defined as natural menopause before age 40 years. MAIN Endometriosis was identified in 3.7% of women. By the end of follow-up, 7.9% had surgical menopause and 58.2% experienced natural menopause. Using a competing risk model, women with endometriosis had a 7-fold increased risk of surgical menopause (HR: 7.54, 95% CI 6.84, 8.32) and were less likely to experience natural menopause (HR: 0.40, 95% CI 0.33, 0.49). On average, surgical menopause occurred 1.6 years (19 months) earlier (β: -1.59, 95% CI -1.77, -1.42) in women with endometriosis. Among women who experienced natural menopause, it was 0.4 years (5 months) earlier (β: -0.37, 95% CI -0.46, -0.28) for those with endometriosis. Women with endometriosis were twice as likely to experience premature surgical menopause (<40 years) (OR: 2.11, 95% CI 2.02, 2.20) or 1.4 times more likely to develop spontaneous POI (OR: 1.36, 95% CI 1.17, 1.59). They were also at increased odds of early surgical and natural menopause (40-44 years). LIMITATIONS, This study could not differentiate between subtypes and stages of endometriosis or assess treatments for ovarian endometrioma, which may impact ovarian reserve. Self-reported menopause type and age could introduce recall bias. Given the consistent findings across individual studies, our results are likely to be generalizable to different populations, highlighting the need for tailored management of endometriosis to prevent medically induced or premature menopause. Long-term monitoring of women with endometriosis is recommended, given their elevated risk of surgical menopause and premature or early menopause, which are associated with adverse health outcomes in later life. STUDY FUNDING/COMPETING INTEREST(S): The InterLACE Consortium is funded by the Australian National Health and Medical Research Council project grant (APP1027196) and Centres of Research Excellence (APP1153420). G.D.M. is funded by the Australian National Health and Medical Research Council Leadership Fellowship (APP2009577). This research is funded in part by the Japan Society for the Promotion of Science (JSPS 19KK0235, 23KK0167). The authors have no conflict of interest. Where authors are identified as personnel of the International Agency for Research on Cancer or WHO, the authors alone are responsible for the views expressed in this article, and they do not necessarily represent the decisions, policy, or views of the International Agency for Research on Cancer or WHO. N/A.