Search PubMedSearch

SEARCH · Search PubMed

Results for “Reproductive disorders”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

miRNA-mediated control of TLR-NLR interplay in the uterus: A hidden corner of recurrent pregnancy loss.

Toll-like receptors (TLRs) and NOD-like receptors (NLRs) are crucial pattern recognition receptors that initiate inflammatory responses and immunological activation upon detecting pathogen- or damage-associated molecular patterns (PAMPs/DAMPS) in the female reproductive tract, thereby maintaining homeostasis and supporting pregnancy success. Their signaling pathways play a significant role in reproductive disorders by mediating the immune response to various pathogenic stimuli. Recurrent pregnancy loss (RPL), defined as the natural ending of two or more pregnancies before 24 weeks of gestation, approximately half of these patients remain idiopathic without precise prognostic, diagnostic, and therapeutic plans. Emerging data point that microRNAs are essential for immunological control in the female reproductive tract. MicroRNAs (miRNAs) are non-coding RNAs that regulate gene expression by binding to mRNA and preventing translation into protein. miRNAs play a role in many biological processes, including the development and differentiation of trophoblasts, the activation and implantation of embryos, immune tolerance, and the receptivity of the endometrium during implantation. Given their capacity to regulate up to 30 % of the human genome, miRNAs offer a promising avenue for understanding the immunopathogenesis of pregnancy complications. Recent research has detected differential expression of specific miRNAs in reproductive system pathologies. This review focuses on microRNAs and their association with idiopathic recurrent miscarriage, a condition characterized by considerable heterogeneity. Future studies identifying the precise mechanisms linking miRNA-mediated immune dysregulation in RPL immunopathogenesis could open the way for novel personalized therapeutic and diagnostic strategies.

Female

Nongenomic Stimulatory Effect of T3 on Calcium Dynamics in GnRH Neurons via Integrin αVβ3.

Many clinical studies have identified correlations between thyroid dysfunction and reproductive issues, yet the underlying mechanisms behind this interaction remain poorly understood. In this study, we investigated the effect of triiodothyronine (T3) on the activity of gonadotropin-releasing hormone (GnRH) neurons, a key regulator of the central reproductive axis. Dual labeling confirmed that GnRH neurons express thyroid receptor (TR)α and integrin αVβ3 receptors mediating genomic and nongenomic effects of thyroid hormones, respectively. Using calcium imaging in an ex vivo model, we show that T3 induces a rapid and sustained increase of calcium oscillation frequency in GnRH neurons. No change in response was detected after application of T4. The T3 stimulatory effect was not inhibited by a TR-specific antagonist (1-850) but was mimicked by membrane-impermeable T3-BSA, indicating a mechanism independent of nuclear TR signaling. In contrast, the blockade of membrane αVβ3 integrins (with cilengitide) prevented the T3-induced increase in GnRH neurons calcium peak oscillation frequency. Further investigation using modulators of intracellular calcium and calcium entry revealed that binding to αVβ3 integrin can induce distinct calcium responses depending on the ligand, with T3 triggering a complex response involving multiple channels and calcium sources, possibly with compensatory mechanisms. In sum, these results demonstrate for the first time a direct effect of thyroid hormones on GnRH neuronal activity, with T3 stimulating calcium oscillations through the nongenomic αVβ3 integrin pathway. Understanding this thyroid-reproductive axis interaction will help clarify the mechanisms linking thyroid dysfunction to reproductive disorders and pave the way for targeted therapeutic interventions.

Animals

Water a major source of endocrine-disrupting chemicals: An overview on the occurrence, implications on human health and bioremediation strategies.

Endocrine disrupting chemicals (EDCs) are toxic compounds that occur naturally or are the output of anthropogenic activities that negatively impact both humans and wildlife. A number of diseases are associated with these disruptors, including reproductive disorders, cardiovascular disorders, kidney disease, neurological disorders, autoimmune disorders, and cancer. Due to their integral role in pharmaceuticals and cosmetics, packaging companies, agro-industries, pesticides, and plasticizers, the scientific awareness on natural and artificial EDCs are increasing. As these xenobiotic compounds tend to bioaccumulate in body tissues and may also persist longer in the environment, the concentrations of these organic compounds may increase far from their original point of concentrations. Water remains as the major sources of how humans and animals are exposed to EDCs. However, these toxic compounds cannot be completely biodegraded nor bioremediated from the aqueous medium with conventional treatment strategies thereby requiring much more efficient strategies to combat EDC contamination. Recently, genetically engineered microorganism, genome editing, and the knowledge of protein and metabolic engineering has revolutionized the field of bioremediation thereby helping to breakdown EDCs effectively. This review shed lights on understanding the importance of aquatic mediums as a source of EDCs exposure. Furthermore, the review sheds light on the consequences of these EDCs on human health as well as highlights the importance of different remediation and bioremediation approaches. Particular attention is paid to the recent trends and perspectives in order to attain sustainable approaches to the bioremediation of EDCs. Additionally, rigorous restrictions to preclude the discharge of estrogenic chemicals into the environment should be followed in efforts to combat EDC pollution.

Animals

Fertility and the physician.

Gonadal function in both sexes is under the synergistic control of the pituitary gonadotrophins, follicle stimulating hormone (FSH) and luteinising hormone (LH) which are in turn influenced both by the hypothalamus (via the gonadotrophin releasing hormone) and by feedback signals from the gonads. There is good evidence that such feedback is mediated by steroid hormones and by a product of the germinal epithelium, termed inhibin. A logical approach to reproductive disorders involves the localization of the primary disturbance either to the hypothalamo-pituitary unit or to the gonad, on the basis of history, physical findings and the results of hormone assays. In men, the majority of disorders leading to infertility are of unknown aetiology and cannot, therefore, be treated specifically. In women, anovulation is usually readily treatable and recent studies have emphasised the usefulness of prolactin assays and of specific treatment for hyperprolactinaemia in restoring ferility. Increased understanding of the mechanisms leading to infertility may provide valuable new approaches to fertility control.

Adolescent

Non-syndromic premature ovarian insufficiency associated with monoallelic LIG4 mutation via haploinsufficiency.

BACKGROUND: Premature ovarian insufficiency (POI) is a heterogeneous reproductive disorder, with genetic factors, particularly defects in DNA damage response pathways, increasingly implicated in its pathogenesis. DNA ligase IV (LIG4) is a key enzyme in the non-homologous end joining (NHEJ) pathway responsible for repairing DNA double-strand breaks (DSBs). However, its role in non-syndromic POI remains unclear. This study aimed to investigate the potential contribution of LIG4 variants to non-syndromic POI. RESULTS: Whole-exome sequencing identified a heterozygous frameshift variant in LIG4 (c.1271_1275del) in a three-generation Han Chinese family with non-syndromic POI, which co-segregated with affected individuals. AlphaFold-based structural modeling predicted truncation of the C-terminal XRCC4 interaction region. Functional experiments demonstrated that the mutant LIG4 protein showed reduced stability and was predominantly mislocalized to the cytoplasm of cells. In ovarian KGN cells, LIG4 depletion reduced cell viability, induced stress-associated cellular senescence, and impaired DNA damage repair capacity. In LIG4 knockout 293T cells, co-transfection of wild-type and mutant constructs revealed dose-dependent functional impairment, resulting in increased apoptosis under basal conditions and after phleomycin induced DNA damage, together with delayed repair of DSBs. Reanalysis of public single-cell RNA sequencing data further showed stage specific upregulation of LIG4 during oocyte maturation. Co-expression network analysis revealed enrichment in the Fanconi anemia pathway, phosphatidylinositol 3-kinase signaling pathway, and glycan metabolism. CONCLUSIONS: Our findings suggest that monoallelic LIG4 mutations may represent a potential genetic etiology for non-syndromic POI with sex-limited penetrance. While further validation in more physiologically relevant models is warranted, our data indicate that LIG4 haploinsufficiency may impair DSB repair and disrupt molecular pathways crucial for oocyte maturation and survival, highlighting a potential role of the NHEJ pathway in maintaining human ovarian function.

Humans

Development and epidemiological investigation of a TaqMan-based multiplex real-time quantitative PCR assay for simultaneous detection of five bovine viruses (BVDV, AKAV, BNoV, BEV, and BCoV).

INRODUCTION: Infectious diseases caused by bovine viral diarrhea virus (BVDV), Akabane virus (AKAV), bovine norovirus (BNoV), bovine enterovirus (BEV), and bovine coronavirus (BCoV) significantly threaten the cattle industry, resulting in substantial economic losses. These pathogens often present similar clinical signs, such as diarrhea, vomiting, and reproductive disorders in pregnant cattle, and frequent covert or mixed infections further complicate accurate diagnosis. Therefore, rapid, sensitive, and field‑deployable diagnostic methods are essential for effective disease surveillance and control in the cattle industry. METHODS: In this study, we report for the first time the establishment of a TaqMan‑based real‑time quantitative PCR (qPCR) assay that enables simultaneous detection of these five bovine viruses. Multiple sequence alignment of conserved genomic regions was performed, and virus‑specific primers and probes were designed and optimized using Beacon Designer 7 software. Subsequently, a TaqMan‑based multiplex real‑time qPCR assay was established for simultaneous detection of BVDV, AKAV, BNoV, BEV, and BCoV. The established detection method was applied to 200 clinical samples collected from 10 farms in multiple regions of Jilin Province. RESULTS: The results showed that the detection rates for BVDV, AKAV, BNoV, BEV, and BCoV were 33.50%, 0.50%, 4.50%, 7.50%, and 12.00%, respectively. Mixed infections were detected in 9 samples co‑infected with two of the five pathogens, with an overall mixed infection rate of 4.50%. Compared with conventional PCR, coincidence rates were 100% for BVDV, AKAV, BNoV, BEV, and BCoV. DISCUSSION: These findings indicate that the TaqMan multiplex real‑time qPCR assay developed here demonstrates favorable specificity, sensitivity, and reproducibility. This assay enables efficient detection and surveillance of bovine viruses, offering a reliable technical tool for the diagnosis and control of corresponding viral diseases in cattle.

Akabane virus (AKAV)

Frequency of ovarian follicular cysts, reasons for culling, and fertility in Holstein-Friesian cows given gonadotropin-releasing hormone at two weeks after parturition.

Holstein-Friesian cows (n=204) were given saline solution or 200 microgram of gonadotropin-releasing hormone (GnRH) by intramuscular injection at 8 to 23 days after parturition. Of cows culled, fewer GnRH-treated cows were culled for infertility, compared with number of cows given saline solution (26 vs 57%; P less than 0.05). Frequency of ovarian follicular cysts was reduced from 15.2% in controls to 5.7% for cows given GnRH (P less than 0.01). The interval to 1st insemination, interval to conception, and inseminations per conception did not differ among saline solution or GnRH-treated cows which remained in the herds. These data provide evidence for reduction in infertility and reproductive disorders in early postpartum dairy cows given GnRH as a prophylactic.

Animals

Salpingitis isthmica nodosa in female infertility and ectopic tubal pregnancy.

Salpingitis isthmica nodosa has been studied in relation to female infertility and tubal ectopic pregnancy. The incidence of this lesion in a control Caucasian population was 0.6%, as compared with incidences of 2.86% in an ectopic group and 50% in a small infertility group undergoing tuboplasty. It is suggested that salpingitis isthmica nodosa should be considered as an etiologic factor in these reproductive disorders. Chronic tubal spasm is suggested as the underlying process.

Adolescent

Bromocryptine therapy in cases of amenorrhea-galactorrhea.

Of 28 patients presenting with amenorrhea-galactorrhea, pituitary tumors were confirmed in eight. Six patients had occult hypothyroidism and the rest had an endocrine profile suggestive of pituitary tumor or of an idiopathic etiology. Treatment with bromocryptine resulted in suppression of the inappropriate lactation and restoration of regular menstrual function. In five cases, however, the galactorrhea was only diminished and in four of these cases, normal ovarian function did not return. Of the 19 patients that were seeking fertility and continued the medication for at least 20 days, nine pregnancies resulted. A similar response to bromocryptine was observed regardless of the underlying cause of the amenorrhea-galactorrhea.

Adult

The significance of galactorrhea in patients with normal menses, oligomenorrhea, and secondary amenorrhea.

Thyroid-stimulating hormone and prolactin (PRL) were measured in a group of 149 women with galactorrhea. Three of these patients were found to have primary hypothyroidism. In the remaining 146 patients, the PRL assay was correlated with the menstrual history and the results of hypocycloidal polytomography. Sixty-two per cent of these patients had hyperprolactinemia and 35 per cent had abnormal tomograms. Nine patients with abnormal x-rays had normal prolactin levels. None of the patients with normal menses and normal PRL was found to have an abnormal x-ray. Fourteen of the 15 patients with PRL levels greater than 200 ng. per milliliter had abnormal tomograms. Almost 70 per cent of patients with secondary amenorrhea and low estrogen status had abnormal x-rays. In patients with oligomenorrhea and secondary amenorrhea with normal estrogen status, it was not possible to differentiate between patients with normal or abnormal tomograms based on the level of serum PRL. Polytomography remains the single most important diagnostic test in establishing the presence of a pituitary tumor.

Adolescent

Hypogonadism, galactorrhoea and hyper-prolactinaemia: Evaluation of pituitary gonadotrophins reserve before and under bromocriptine.

Twenty patients with hypogonadism (19 women with amenorrhoea and 1 man with impotence and infertility), galactorrhoea and hyper-prolactinaemia (range: 36 to 344 ng/ml) were studied. The radiological study of the sella turcica, including in all cases hypocycloidal tomograms, allowed classification of the patients into 3 groups: group I (n = 4) had a grossly enlarged sella turcica, group II (n = 12) had localized alterations indicating the probable existence of a prolactin-secreting microadenoma ("microdeformation") while group III patients presented no radiological abnormality. Before treatment, all the patients were submitted to a complete evaluation of the function of their anterior pituitary, including the LH and FSH responses to iv administration of Gn-RH. All the group I patients had low basal LH levels and a blunted response to Gn-RH. The basal LH and in response to Gn-RH were normal in most of the group II patients and in all of the group III patients. An exaggerated FSH response to Gn-RH was observed in 6/12 patients with microdeformation (group II) but not in groups I and III patients. A low LH and a blunted LH response to Gn-RH is highly suggestive of the existence of a pituitary prolactin-secreting adenoma in case of amenorrhoea and hyper-prolactinaemia patients; a normal response does not however rule out such a diagnosis. The reasons for a exaggerated FSH response to Gn-RH in patients with suspected prolactin-secreting microadenoma remain to be investigated though this pattern can also occur in other cases of amenorrhoea. Hence the Gn-RH test might contribute to the assessment of the hypothalamo-pituitary axis of patients with hyper-prolactinaemia. Six patients treated for 4 months with bromocriptine (CB-154) were submitted to re-evaluation of their pituitary gonadotrophins reserve. All the women experienced restoration of menses with 39 days of treatment and the male patient regained potency. It was observed that bromocriptine treatment and subsequent normalized prolactin levels in the 4 group II women tested were associated with normalization of their previously exaggerated FSH response to Gn-RH; LH responses were also diminished in these cases. These data are compatible with the hypothesis that hyper-prolactinaemia per se could interfere with the endogenous secretion of Gn-RH at the hypothalamic level. In one patient with grossly enlarged sella turcica and a previous lack of an LH and FSH response to Gn-RH, bromocriptine treatment restored a normal gonadotrophins response, confirming that, in this case, the alteration of this response was indeed due to a prolonged lack of endogenous Gn-RH secretion.

Adolescent

Effect of the fungal toxin (zearalenone) on the reproductive system and fertility of male and female rats.

The fertility-inhibiting effects of long-term (8 weeks) consumption of maize infected with a fungus producing F2 toxin (zearalenone) was studied in adult male and female albino rats. The fertility rate was further decreased by 25-30% if the animals were kept on contaminated diet up to 14 weeks. The gonadal weight was decreased, follicular maturation and spermatogenesis were disturbed. The toxic diet consumed by mothers during pregnancy and lactation induced permanent changes in reproductive organs, disorders in vaginal cyclicity and disturbed fertility in the offspring. Neonatal administration of purified F2 toxin provoked similar changes. It is suggested that this fungal toxin may cause sterility syndrome in the offspring, similar to that produced by androgen or estrogen administration.

Animals

[Mitosis pathology in experimental measles infection].

Experiments in monkeys, puppies, and guinea pigs showed both virulent and vaccine strains of measles virus to produce disorders in the reproductive apparatus of cells of the immunocompetent organs. The qualitative analysis of the pathological forms of mitosis abnormalities revealed mainly two types of the structural disorders of division: lethal forms and moderate forms not lethal for the cell. Virulent strains are characterized by predominance of lethal forms of pathology, vaccine strains by moderate lesions which are the source of mutations. In selection of prospective vaccine strains, their capacity to induce non-lethal forms of mitosis abnormalities should be taken into consideration.

Animals

[Conception of female rats and litter mortality due to Mn-deficiency].

Sexually mature, female rats were fed an Mn-deficient (1.0 ppm) diet on saccharose/casein basis and studied for their reproductive behaviour. Cycle disorders as sometimes described of females depleted over a longer period, were not observed in any case. Although the experimental animals showed a normal estrus, only 50% of the rats conceived. The rats that had become pregnant produced litters of 2 to 11 animals born alive. However, their mortality was 80%. They died either immediately after birth or during the first days post partum.

Animal Nutritional Physiological Phenomena

A Risk Score for Polycystic Ovary Syndrome Based on Meta-Analysis and Machine Learning of Gut Microbiota Signatures.

Polycystic Ovary Syndrome (PCOS) is a prevalent endocrine and metabolic disorder among reproductive-age women, in which emerging evidence suggests a substantial role played by the gut microbiota. To comprehensively evaluate gut microbiota alterations in PCOS and identify microbial biomarkers through integrated analysis, a systematic search of PubMed, Web of Science, and Embase was conducted for studies employing 16S rRNA gene sequencing of fecal samples from PCOS cohorts. Ten eligible PCOS cohorts, comprising 858 individuals, were included in the study, from which a risk score was derived using a 20-gene gut microbial signature associated with PCOS. Meta-analysis at the genus level identified that Subdoligranulum, NK4A214_group, and Collinsella significantly decreased, and Bacteroides increased in PCOS across multiple cohorts. Machine learning analysis identified a 20-genus microbial signature using the least absolute shrinkage and selection operator (LASSO) method, which was used to construct a risk score with an AUC of 0.835 in diagnosis prediction. Network analysis further identified Negativibacillus and Lachnospiraceae_UCG_010 as potential driver microbes in PCOS. The analysis in this study highlights key alterations in the gut microbiota across PCOS cohorts. The identified gut microbial signature and derived LASSO-based risk model offer novel insights and a potential tool for PCOS diagnosis.

Polycystic Ovary Syndrome

CRISPR as a Tool to Uncover Gene Function in Polycystic Ovary Syndrome: A Literature Review of Experimental Models Targeting Ovarian and Metabolic Genes.

Polycystic ovary syndrome (PCOS) is a complex disorder characterized by reproductive abnormalities such as hyperandrogenism, ovulatory dysfunction, and polycystic ovarian morphology, and is frequently accompanied by metabolic disturbances such as insulin resistance, obesity and dyslipidemia. Genome-wide association studies (GWASs) have identified several susceptibility loci, yet little is known about their functional implications. Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (CRISPR/Cas9) has emerged as a powerful gene editing tool in bridging this gap by allowing researchers to directly target candidate genes in ovarian and metabolic pathways. For instance, experimental models have highlighted the role of CYP17A1 and DENND1A.V2 in androgen excess, anti-Müllerian hormone (AMH) in follicular arrest, and insulin receptor substrate 1 (IRS1) and PPARγ in insulin signaling and adipogenesis. To highlight the multifactorial nature of PCOS, animal models, including zebrafish and rodents, have been used to reveal interactions between reproductive and metabolic phenotypes. Nevertheless, most studies remain restricted to single-gene models, and dual-gene models or combined gene editing and hormonal induction models remain underexplored. Future research integrating precision editing, multi-omic platforms, and patient-derived organoids may provide more accurate disease models and novel therapeutic strategies.

Polycystic Ovary Syndrome