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1.
J Hum Reprod Sci ; 16(3): 185-194, 2023.
Article in English | MEDLINE | ID: mdl-38045501

ABSTRACT

Background: Most studies evaluating the possible seasonal variation of semen quality have considered temperature as the only causal factor. Aims: To assess possible seasonality in sperm quality and associations between semen parameters and several meteorological variables (temperature, humidity, apparent temperature and atmospheric pressure) in a large cohort of andrological patients. Settings and Design: This was a retrospective, cross-sectional and correlational/descriptive study. Materials and Methods: Patients (n: 15665) were categorised into four groups (summer, winter, spring and autumn) according to the date of assistance at the fertility centre. Daily values of temperature, apparent temperature, humidity and atmospheric pressure were provided by the National Weather System and were calculated as the average of the 74 days previous to semen collection (spermatogenic cycle). Statistical Analysis Used: As appropriate, the results were analysed by analysis of variance/Kruskal-Wallis, Chi-square test, t-test/Mann-Whitney, forward conditional regression model and Spearman/Pearson's correlations. Results: We detected seasonality effects on sperm count, total sperm count and total motile sperm count, with the highest values in winter and the lowest in summer. Correlation analysis showed that temperature, apparent temperature and humidity negatively correlated with semen parameters, being humidity the most powerful predictive meteorological variable. Conclusion: Sperm quality is influenced by seasons; increased environmental temperature and humidity negatively affect semen quality.

2.
Reprod Fertil Dev ; 34(14): 944-955, 2022 Sep.
Article in English | MEDLINE | ID: mdl-36031715

ABSTRACT

CONTEXT AND AIMS: We have demonstrated that ghrelin (Ghrl) participates in fetal programming, since intragestational hyperghrelinaemia increased pup's growth and a Ghrl-receptor antagonist accelerated offspring's sexual maturation and impaired their adult reproductive function. Now, we aim to analyse if these phenotypic changes (found in F1) also occurred in F2 and/or F3 generations. METHODS: We treated mice dams (F0), with 4nmol/animal/day of Ghrl or 6nmol/animal/day of an antagonist [Ant:(d -Lys3)GHRP6] from day 1 of pregnancy until delivery. When F1 female pups reached adulthood, they were paired to obtain F2, and subsequently, F2 females were paired to obtain F3. Parameters evaluated in F2 and F3 pups were: growth, physical development, neurobiological maturation, puberty onset and in adulthood, reproductive function. KEY RESULTS: The F2 and F3 Ant groups showed a significant increase in litter size. Although no differences were detected in the weight of these pups at birth, in adulthood, they were heavier. At F3, pups from the Ant group showed advanced incisors eruption and eye opening compared to controls. Furthermore, F3 male pups from the Ant group showed earlier testis descent, although in adulthood, these males exhibited reduced sperm concentration in comparison to Ghrl. No differences were detected in F2 or F3 females regarding puberty onset or reproduction. CONCLUSIONS AND IMPLICATIONS: Some fetal programming effects of Ghrl seen in F1, also appeared transgenerationally. Since many women at reproductive age suffer from conditions with reduced Ghrl levels (i.e. obesity or polycystic ovarian syndrome), these results could be relevant to the health of their descendants.


Subject(s)
Ghrelin , Prenatal Exposure Delayed Effects , Animals , Female , Ghrelin/pharmacology , Humans , Litter Size , Male , Mice , Parturition , Pregnancy , Reproduction , Semen
3.
J Assist Reprod Genet ; 39(5): 1125-1134, 2022 May.
Article in English | MEDLINE | ID: mdl-35296953

ABSTRACT

PURPOSE: To assess the possible variations in semen quality during the last 20 years in Córdoba, Argentina, and to identify possible causal lifestyle or genitourinary factors. METHODS: Retrospective study of 23,130 patients attending an andrology laboratory. The 20-year period (2001-2020) was divided into four quinquenniums. Seminal parameters (sperm concentration, motility, morphology, viability, and membrane functional integrity) were classified as normal or abnormal according to WHO, and results were expressed as percentage of patients abnormal for each parameter per quinquennium. In addition, the percentage of patients per quinquennium exposed to the different risk factors (daily alcohol and/or tobacco consumption; occupational exposure to heat or toxics; history of parotitis or varicocele; and high body mass index, BMI) was reported. RESULTS: Patients included in our study did not show impairment in seminal quality over time. Beyond a transient decrease in normozoospermia in the second and third quinquennium, possibly explained by a parallel increase in teratozoospermia, other important parameters of the spermogram did not change. In fact, abnormalities in sperm concentration (oligozoospermia), total sperm count, viability and response to hypoosmotic test showed a decreasing trend over time. On the other hand, parotitis, varicocele, morbid obesity and regular exposition to heat/toxics were the factors more frequently associated with semen abnormalities; the last two increased their frequency over the study period. CONCLUSION: The population included in this study did not show a clear impairment in semen quality during the last 20 years. The decreasing patterns found were associated with high BMI and exposure to heat/toxics.


Subject(s)
Infertility, Male , Parotitis , Varicocele , Argentina/epidemiology , Humans , Infertility, Male/epidemiology , Infertility, Male/etiology , Male , Parotitis/complications , Retrospective Studies , Semen/physiology , Semen Analysis , Sperm Count , Sperm Motility/physiology , Spermatozoa , Varicocele/complications
4.
Reprod Sci ; 28(12): 3547-3561, 2021 12.
Article in English | MEDLINE | ID: mdl-33856666

ABSTRACT

To explore in mice if a 15% food restriction protocol during pregnancy programs the offspring postnatal development, with emphasis on reproductive function, and to assess if ghrelin (Ghrl) administration to mouse dams exerts effects that mimic those obtained under mild caloric restriction. Mice were 15% food-restricted, injected with 4 nmol/animal/day of Ghrl, or injected with the vehicle (control) thorough pregnancy. After birth, the pups did not receive further treatment. Pups born from food-restricted dams (FR pups) were lighter than Ghrl pups at birth, but reached normal weight at adulthood. Ghrl pups were heavier at birth and gained more weight than control pups (C pups). This effect was not associated with plasma IGF-1. FR pups showed a delay in pinna detachment and eye opening, while an advance was observed in Ghrl pups. FR pups showed also impairment in the surface-righting reflex. In both female FR and Ghrl pups, there was an advance in vaginal opening and, in adulthood, FR pups showed a significant decrease in their own litter size and plasma progesterone, and an increase in embryo loss. A delay in testicular descent was evident in male Ghrl pups. Changes in puberty onset were not associated with differences in the expression of Kiss1 in hypothalamic nuclei. Finally, in adulthood, FR pups showed a significant decrease in sperm quality. In conclusion, a mild food restriction thorough gestation exerted programming effects on the offspring, affecting also their reproductive function in adulthood. These effects were not similar to those of intragestational Ghrl administration.


Subject(s)
Caloric Restriction/methods , Fetal Development/physiology , Ghrelin/administration & dosage , Prenatal Exposure Delayed Effects/genetics , Sexual Development/physiology , Animals , Animals, Newborn , Drug Administration Routes , Female , Fetal Development/drug effects , Male , Mice , Pregnancy , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/physiopathology , Sexual Development/drug effects
5.
Obes Rev ; 22(1): e13082, 2021 01.
Article in English | MEDLINE | ID: mdl-32705766

ABSTRACT

The present updated systematic review and meta-analysis aims to summarize the evidence from published studies with low risk for any important bias (based on methodological quality assessment) investigating the potential associations of adiposity with sperm quality and reproductive hormones. We conducted a systematic search of the literature published in MEDLINE-PubMed and EMBASE through June 2019. Based on the criteria in our review, 169 eligible publications were used for data abstraction. Finally, 60 articles were included in the qualitative analysis and 28 in the quantitative analysis. Our systematic review results indicated that overweight and/or obesity were associated with low semen quality parameters (i.e., semen volume, sperm count and concentration, sperm vitality and normal morphology) and some specific reproductive hormones (e.g., inhibin B, total testosterone and sex hormone-binding globulin). Overweight and/or obesity were also positively associated with high estradiol concentrations. Meta-analysis indicated that overweight and/or obesity categories were associated with lower sperm quality (i.e., semen volume, sperm count and concentration, sperm vitality, total motility and normal morphology), and underweight category was likewise associated with low sperm normal morphology. In conclusion, our results suggest that maintaining a healthy body weight is important for increasing sperm quality parameters and potentially male fertility.


Subject(s)
Adiposity , Infertility, Male , Semen Analysis , Humans , Inhibins , Male , Obesity , Sex Hormone-Binding Globulin , Spermatozoa , Testosterone
6.
Heliyon ; 5(11): e02886, 2019 Nov.
Article in English | MEDLINE | ID: mdl-31844755

ABSTRACT

The objectives of this study were: 1) to evaluate the effects of a fructose enriched diet (FED) on rat sperm quality, epididymal function (i.e. oxidative stress and alpha-glucosidase expression) and testosterone concentrations; 2) to determine if the administration of ghrelin (Ghrl), reverses the effects induced by FED. After validating the protocol as an inductor of metabolic syndrome like-symptoms, adult male rats were assigned to one of the following treatments for 8 weeks: FED = 10% fructose enriched in water (v/v); FED + Ghrl = fructose enriched diet plus Ghrl (6 nmol/animal/day, s.c.) from week 6-8; or C = water without fructose (n = 5-10 animals/group). FED significantly decreased sperm concentration and motile sperm count/ml vs C (FED: 19.0 ± 1.6 × 106sperm/ml and 834.6 ± 137.0, respectively vs C: 25.8 ± 2.8 × 106 and 1300.4 ± 202.4, respectively; p < 0.05); ghrelin injection reversed this negative effect (23.5 ± 1.6 × 106sperm/ml and 1381.7 ± 71.3 respectively). FED resulted in hypogonadism, but Ghrl could not normalize testosterone concentrations (C: 1.4 ± 0.1 ng/ml vs FED: 0.8 ± 0.2 ng/ml and FED + Ghrl: 0.6 ± 0.2 ng/ml; p < 0.05). Ghrelin did not reverse metabolic abnormalities secondary to FED. FED did not alter epididymal expression of antioxidants enzymes (superoxido-dismutase, catalase and glutathione peroxidases -Gpx-). Nevertheless, FED + Ghrl significantly increased the expression of Gpx3 (FED + Ghrl: 3.47 ± 0.48 vs FED: 0.69 ± 0.28 and C: 1.00 ± 0.14; p < 0.05). The expression of neutral alpha-glucosidase, which is a marker of epididymal function, did not differ between treatments. In conclusion, the administration of Ghrl modulated the negative effects of FED on sperm quality, possibly by an epididymal increase in Gpx3 expression. However, Ghrl could not neither normalize the metabolism of FED animals, nor reverse hypogonadism.

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