scholarly journals Effect of glutathione S-transferase gene polymorphisms on semen quality in patients with idiopathic male infertility

2021 ◽  
Vol 49 (12) ◽  
pp. 030006052110610
Author(s):  
Hongyan Zhang ◽  
Jun He ◽  
Yili Zhao ◽  
Qifei Wu ◽  
Tiejun Zou ◽  
...  

Objective To investigate the relationship between glutathione S-transferase enzyme ( GSTM1, T1, and P1) genetic variants and semen quality in men with idiopathic infertility. Methods Sperm characteristics were measured using computer-assisted sperm analysis. The malondialdehyde (MDA), nitric oxide (NO), and total antioxidant capacity (TAC) activities were detected by spectroscopic analysis, and 8-hydroxy-2′-deoxyguanosine (8-OHdG) was detected by enzyme-linked immunosorbent assay. Results This study included 246 idiopathic infertile men and 117 controls. The GSTM1(−), T1(−), and M1/T1(−/−) genotype frequencies significantly differed between the groups. The GSTM1(−) and T1(−) genotypes in idiopathic infertile men negatively correlated with sperm concentration, motility, mitochondrial membrane potential, and other parameters. However, these genotypes positively correlated with the amplitude of the lateral head displacement and NO and 8-OHdG levels. The GSTT1(−) genotype positively correlated with mean angular displacement and MDA activity. GSTM1(−) and T1(−) had a synergistic effect on semen quality. Sperm motility, normal morphology, straightness, and TAC were lower and amplitude of lateral head displacement and MDA were higher in the GSTP1(A/G + G/G) group than in the GSTP1(A/A) group among men with idiopathic infertility. Conclusions GSTM1, T1, and P1 genetic variants may be risk factors for infertility by affecting the semen quality men with idiopathic oligoasthenospermia.

2018 ◽  
Vol 30 (1) ◽  
pp. 144
Author(s):  
A. Martins ◽  
F. N. Marqui ◽  
T. E. Cruz ◽  
T. I. H. Berton ◽  
D. G. Souza ◽  
...  

We previously reported that single layer centrifugation (SLC) with Percoll® (GE Healthcare, Uppsala, Sweden) of fresh bovine semen resulted in improved sperm progressive motility and movement, as evidenced by computer-assisted sperm analyzer (CASA) after freezing-thawing. However, no report has been found in the literature on the use of Percoll Plus® (PP; GE Healthcare), a nontoxic colloid, for the same purpose. Thus, this study aimed to verify the effects of SLC-PP before bull sperm freezing on sperm kinematics after cryopreservation. Ejaculates were collected from 3 Nellore bulls (6 from each) using an artificial vagina. After collection, the semen was assessed and pooled, and then 1 billion spermatozoa either diluted [D; 1:2 (v/v)] in freezing extender (FE, without glycerol) or undiluted (UD) was layered on top of a 9-mL column of PP (in 15-mL centrifuge tubes) at concentrations of 70% or 90% to form the 70D, 70UD, 90D, and 90UD treatment groups. Following centrifugation for 13 min at 839 × g [except for the control (C) group], the supernatant was removed and the sperm pellet diluted to 50 × 106 sperm mL−1 in FE medium plus glycerol. Then, frozen–thawed sperm samples were analysed by CASA (MMC Sperm, St. Petersburg, Russia) for the following parameters: total motility (TM, %), progressive motility (PM, %), curvilinear velocity (VCL, µm−1), straight line velocity (VSL, µm s−1), average path velocity (VAP, µm s−1), amplitude of lateral head displacement (ALH, µm), beat cross frequency (BCF, Hz), linearity (LIN, %), and straightness (STR, %). For statistical analyses, ANOVA and Student-Newman-Keuls test were used. Data are presented as mean ± SEM with P < 0.05 taken as significant. No difference was found among the groups for TM, VSL, BCF, and STR. However, the percentage of PM was higher (P < 0.05) in the SLC-selected sperm samples (values ranging from 42.0 ± 7.0 to 47.4 ± 11.4) than in C (28.8 ± 5.0), and ALH was lower in 70UD (1.6 ± 0.12) and 70D (1.7 ± 0.10) than in C (1.9 ± 0.2). Moreover, 70UD (49.0 ± 1.0), 90UD (50.0 ± 3.0), and 90D (50.0 ± 4.0) displayed higher percentage of LIN (P < 0.05) compared with C (45.0 ± 2.0) and 70D (48.0 ± 3.0). On the other hand, similar results were obtained for VCL (from 126.3 ± 8.0 to 130.0 ± 20.5) and VAP (from 82.7 ± 14.5 to 85.1 ± 6.9) in C, 70UD, and 70D, but these values differed (P < 0.05) from those for VCL in 90UD (104.6 ± 10.3) and 90D (97.2 ± 22.0) as well as for VAP in 90UD (72.2 ± 11.0) and 90D (71.8 ± 9.6). These are the first data demonstrating favourable influences of SLC with 70% Percoll Plus® to select distinct sperm subpopulations as evidenced by enhanced PM, LIN, and ALH. Thus, SLC-PP could optimize the production of frozen bull semen by decreasing the number of sperm per insemination dose, and help to circumvent limitations associated with the poor semen quality sometimes found in bulls of high genetic merit. This research was funded by FAPESP # 2015/20986-3, MasterFertility and Tairana Artificial Insemination Station, Brazil.


2015 ◽  
Vol 18 (4) ◽  
pp. 817-824 ◽  
Author(s):  
D. Gączarzewicz

Abstract The objective of the study was to evaluate the effect of different types of chambers used in computer-assisted semen analysis (CASA) on boar sperm concentration and motility parameters. CASA measurements were performed on 45 ejaculates by comparing three commonly used chambers: Leja chamber (LJ), Makler chamber (MK) and microscopic slide-coverslip (SL). Concentration results obtained with CASA were verified by manual counting on a Bürker hemocytometer (BH). No significant differences were found between the concentrations determined with BH vs. LJ and SL, whereas higher (p<0.01) values of this parameter were obtained with MK. Compared to MK and SL, significantly higher values were recorded in LJ for velocity (VCL and VAP) as well as amplitude of the lateral head displacement (ALH) and beat cross frequency (BCF), which was associated with significantly higher percentages of motile, progressively motile and rapidly progressive motile spermatozoa. Higher values for the linearity (LIN) and straightness (STR) of sperm movement were obtained for the analysis performed in MK and SL. In both these chambers, the results of all the linearity and kinetic parameters of sperm were similar (p>0.05). The results obtained show that CASA assessment of boar semen should account for the effect of counting chamber on the results of sperm motility and concentration, which confirms the need for further study on standardizing the automatic analysis of boar semen.


Author(s):  
W. N. Li ◽  
M. M. Jia ◽  
Y. Q. Peng ◽  
R. Ding ◽  
L. Q. Fan ◽  
...  

Abstract Background The aim of this study was to provide information on the semen quality pattern of infertile men and age thresholds for semen parameters in China. Methods This was a retrospective cross-sectional study investigating 71,623 infertile men from the Reproductive and Genetic Hospital of CITIC Xiangya in Hunan, China, from 2011 to 2017. The Kruskal-Wallis test, Mann-Kendall test, linear regression model and joinpoint regression were used. Results Although erratic changes were observed in the median semen parameters (sperm concentration 40.1–52.1 × 106/ml, total sperm count 117.8–153.1 × 106, sperm progressive motility 33.4–38.1%) during the 7 years of observation, no significant decrease in semen quality was found, and 47.88% of infertile men showed normal semen parameters according to the World Health Organization (WHO) criteria. According to the joinpoint regression analysis, sperm progressive motility appeared to decrease earlier than the sperm concentration and total sperm count (at 28, 58, and 42 years of age, respectively). Conclusions There is no evidence of a deterioration in semen quality among infertile men in Hunan, China. Semen parameters decreased with increasing age, with turning points noted at different ages. Semen parameters are not absolute evidence for the assessment of male fertility potential. Therefore, we believe that, among semen parameters, the sperm concentration is the best predictor of fertility for ART, followed by motility. Decreased sperm motility may affect natural pregnancy, but it is not necessary for successful IVF.


2010 ◽  
Vol 22 (1) ◽  
pp. 204
Author(s):  
J. Dorado ◽  
M. J. Galvez ◽  
M. R. Murabito ◽  
S. Demyda ◽  
L. J. De Luca ◽  
...  

Tris-egg yolk-based diluents provide adequate cryoprotection for the sperm of most species. This study was conducted to compare the ability of Tris-glucose extender containing 2 different concentrations of egg yolk to maintain sperm motility and acrosome integrity of canine spermatozoa during 72 h of preservation. For this purpose, a total of 20 ejaculates from 4 clinically healthy dogs (2 Spanish Greyhound, 1 German Pointer, and 1 Crossbreed) were collected by digital manipulation. The sperm-rich fraction of each ejaculate was divided into 2 aliquots. Then, they were diluted in Tris-based extender and centrifuged at 700g for 8 min. Sperm pellets were resuspended in either Tris buffer added to 20% (EY20) or 10% centrifuged egg yolk (EY10) and cooled to 5°C over 72 h. The effects of these extenders on motility and acrosome integrity were assessed objectively using a computer-aided semen analyzer (Sperm Class Analyzer, Microptic SL, Spain) and Spermac® staining, respectively. Each cooled-rewarmed semen sample was evaluated after 24, 48, and 72 h of preservation. Sperm motion parameters shown by computer-assisted semen analysis (CASA) are progressively motile (PMS) and motile spermatozoa (MS), curvilinear velocity (CLV), average path velocity (APV), progressive speed (SLV), and lateral head displacement (LHD). Data were statistically analysed by ANOVA. Dependent variables expressed as percentages were arsine-transformed before analysis. Differences between mean values were evaluated by the Duncan method. Data were presented as mean ± SEM. Differences were considered significant when P < 0.05. Analyses were performed using the statistical package SPSS 12.0. A total of 98 172 motile sperm trajectories were analyzed by CASA: 52 259 in EY20 and 45 913 in EY10. After 24, 48, and 72 h of preservation, MS and PMS were statistically higher (P < 0.01) in EY20. No significant differences were found for LHD using either extender over a 72-h period. No significant differences were observed for CLV using either extender during the first 2 days. At Day 3, CLV data were significantly higher (P < 0.01) in EY20. Similarly, from Day 2, APV was significantly higher (P < 0.001) in EY20. After 24 h of preservation, SLV was statistically higher (P < 0.001) in EY10, whereas the opposite tendency was found at Day 3. No significant differences were observed for SLV using either extender after 48 h of preservation. During the first 2 days, acrosome integrity was statistically higher (P < 0.001) in EY20. At hour 72, higher acrosome integrity (P < 0.001) was observed in EY10. In conclusion, we have observed that the EY20 extender provided higher motility after 72 h of chilled preservation; however, the acrosome membrane integrity was better preserved in EY10.


2020 ◽  
Vol 32 (2) ◽  
pp. 137
Author(s):  
Y. Pirosanto ◽  
M. Valera ◽  
A. Molina ◽  
J. Dorado ◽  
S. Demyda-Peyrás

Inbreeding depression, a genetic condition produced by the mating of close-related individuals, has been associated with a reduction of fertility in several species. However, a loss in sperm quality was also associated with age. In horses, the few existing reports have described a tendency of both parameters to produce a negative effect on sperm quality. However, those reports were performed using a subjective evaluation of sperm motility. In the present study, a total of 692 ejaculates from 86 Pure Spanish stallions (PRE), aged between 3 and 22 years, were evaluated using a computer-assisted methodology to determine the effect of inbreeding in four semen parameters: free-gel volume (V), sperm concentration (C, by haemocytometer), and total (TM) and progressive (PM) sperm motility (by Spermvision sperm class analyser; Minitube). The inbreeding coefficient (F) was estimated using 300 000 PRE pedigree records approximately (minimum pedigree depth, eight equivalent complete generations; range, between 1 and 30.1%). Stallion, age, ejaculate, and season of semen collection were the variables included in the statistical model (general linear model), with ejaculate and season being the variables with a major effect (by variance components analysis). Our results showed that sperm concentration (r=−0.18; P&lt;0.0001) and volume (to a lesser extent) were reduced with advancing age, both showing a major decline after 15 years of age. To the contrary, sperm motility was not affected by age of the stallion. We also found a negative correlation between the inbreeding coefficient and ejaculate volume (r=−0.14; P&lt;0.001), with a marked decrease seen when F was between 7 and 20%. Also, a negative correlation was observed in PM (r=−0.08; P&lt;0.05), although to a lower extent. Conversely, C and TM were not affected by inbreeding depression (P&gt;0.05). In conclusion, our results demonstrated that high levels of inbreeding can compromise severely the sperm quality of the PRE stallion, which, subsequently, may have a negative influence on fertility. Ongoing studies using genomic data will help to detect genetic variants associated with stallion semen quality and how it is influenced by inbreeding in specific genomic regions.


2018 ◽  
Vol 29 (3) ◽  
pp. 485 ◽  
Author(s):  
Anthony Valverde-Abarca ◽  
Mónica Madrigal-Valverde ◽  
Marlen Camacho-Calvo ◽  
Adones Zambrana-Jiménez ◽  
Leonardo López

The assessment of the semen quality is an essential tool to improve the reproductive indexes in swine farms. The motility is the most important parameter that used in the sperm quality evaluation because it is associated with the energy of the spermatozoon. The aim of this research was to determine the influence of breed composition on reproductive variables of sperm quality, kinetics and semen motility in boars. During 2016, 240 ejaculates were collected from 63 boars with a mean age of 24.4±10.9 months. Six racial groups were identified: Duroc (D), Yorkshire (Y), Landrace (L), F1 Pietrain*Duroc (PD) and two genetic lines (LA and LB). The breeds with the highest ejaculate volume presented a higher total number of spermatozoa (P<0.05). The effect of the breed was significant (P<0.05) on sperm kinetics variables except for amplitude of lateral head displacement (ALH, μm). The Landrace breed presented the highest (P<0.05) percentage of static sperm (29.30±1.57). The most relevant differences (P<0.05) for total motility (MTOT) and progressive motility (MP), were presented between L and PD with values of 70.71±1.57; 77.48±1.09 and 51.80±1.97; 59.85±1.37% respectively. Adult boars (≥18 months) had higher volumes of ejaculate and total number of sperm than boars in the intermediate and young ages, however, for velocities (μm/s): curvilinear (VCL), straight line (VSL) and average path (VAP), adult boars only were different (P<0.05) of the boars in-between ages. Four sperm subpopulations (SP) were identified, SP1 (46.83%) characterized by a moderate speed, but of very progressive motility, SP2 (14.78%) with active movement, but not progressive, SP3 (8.45%) with low speeds and progressive path and SP4 (29.94%) with quick movement, but without progressivity.


2007 ◽  
Vol 76 (4) ◽  
pp. 601-604 ◽  
Author(s):  
R. Kozdrowski ◽  
A. Dubiel ◽  
W. Bielas ◽  
M. Dzięcioł

The objective of the study was a comparison of two protocols of goat semen cryopreservation with the use of computer-assisted semen analysis system. Twenty ejaculates obtained with electroejaculation method were assessed. Each ejaculate was divided in half and frozen according to two protocols. In protocol I semen was centrifuged in order to remove its plasma and diluted in Tris buffer extender containing glucose, citric acid and glycerol with 20% addition of egg yolk. Protocol II did not include removal of plasma and the extender contained 1.5% egg yolk. It was shown that the removal of semen plasma improved motility of goat spermatozoa following freezing/thawing with respect to the following motility indicators: motility, average path velocity, amplitude of lateral head displacement at p < 0.05, and straight velocity, straightness and linearity at p < 0.01. In conclusion, the removal of semen plasma through centrifugation improved motility properties of goat semen following the freezing/thawing procedure.


2020 ◽  
Vol 63 (1) ◽  
pp. 145-154 ◽  
Author(s):  
Yara Suliman ◽  
Frank Becker ◽  
Armin Tuchscherer ◽  
Klaus Wimmers

Abstract. Horses are seasonal breeders with a natural breeding season beginning in spring and extending through midsummer. In this study, quantitative and qualitative parameters of chilled stallion semen were compared between fertile and subfertile stallions and between the breeding and the non-breeding season. Semen quality parameters compared included ejaculate volume, sperm concentration, total sperm number, sperm morphology, and computer-assisted semen analysis (CASA)-derived sperm movement characteristics obtained from two groups of warmblood stallions (n=8; four fertile stallions and four subfertile stallions), which differ in the seasonal pregnancy rate 80 %–90 % (fertile) vs. 40 %–60 % (subfertile). A total of 64 ejaculates were collected from the stallions (n=8; four in the breeding season and four in the non-breeding season of each stallion). No significant differences in the semen quality parameters between the fertile and the subfertile stallions in the non-breeding season were observed. However, in the breeding season the proportion of morphologically normal sperm, total motility, progressive motility, average path velocity (VAP), and curvilinear velocity (VCL) were significantly higher in the fertile group (P<0.05) when compared with the subfertile group. In addition, a significant seasonal variation in the proportion of morphological normal sperm was found in the fertile group between the breeding and the non-breeding season (P<0.05). Moreover, significant seasonal variations (P<0.05) in CASA parameters of mean VAP, straight line velocity (VSL), and beat-cross frequency (BCF) were observed in the fertile and the subfertile stallions, which tended to be lower in the non-breeding season. In conclusion, differences between the fertile and the subfertile stallions were observed only in the breeding season, and a few of CASA-derived parameters seemed to be significantly lower during the non-breeding season in both the fertile and the subfertile stallions.


2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
A Agarwal ◽  
M K Panne. Selvam

Abstract Study question Can LensHooke X1 PRO semen analyzer be used to evaluate sperm morphology in men with infertility? Summary answer Morphology results generated by X1 PRO are highly reliable when normal sperm forms are ≥4% and therefore they can be reported in such cases . What is known already Most laboratories rely on manual evaluation of sperm morphology smears, which is a time-consuming procedure and its results are subjected to a relatively high variability. However, in recent years the computer-assisted semen analyzers are being increasingly used to evaluate sperm morphology. The X1 PRO semen quality analyzer was designed for in vitro diagnostic use to analyze sperm concentration, total, progressive and non-progressive motility as well as sperm morphology based on WHO 5th edition criteria. Evaluation of sperm morphology using X1 PRO based on AIOM (Artificial Intelligence Optical Microscopic)-based technology requires no fixation steps or staining unlike the manual method. Study design, size, duration This cross-sectional study used 31 semen samples from 8 normozoospermic healthy volunteers and 5 infertile men with a minimum abstinence period between 2 - 3 days. While the 8 healthy semen donors produced a total of 26 ejaculates, which were split into 88 aliquots, the 5 infertile patients produced 5 ejaculates that were split into 13 aliquots. Participants/materials, setting, methods A total of 101 aliquots were prepared from the native semen samples either by dilution or concentration using seminal plasma of the respective donors. Automated semen analysis was performed by the X1 PRO semen analyzer and the results of sperm morphology were compared with manual morphology results using Diff-Quik staining. Statistical analysis was carried out to calculate the positive predictive value (PPV) and negative predictive value (NPV) of X1 PRO semen analyzer. Main results and the role of chance The X1 PRO sperm morphology results show a weak non-significant (P = 0.2441) correlation (r = 0.119) with the manual results. However, X1 PRO demonstrated a high PPV (97.7%) and a low NPV (9.1%) for correct assessment of sperm morphology (≥4%) when compared to manual results. Due to its high PPV, laboratories can report the morphology results generated by X1 PRO in all such cases when normal sperm forms are ≥4%. However, a manual evaluation is necessary in patients with abnormal morphology (&lt;4%). Limitations, reasons for caution One of the limitation of this study is that X1 PRO morphology values did not correlate with manual results. The low NPV seen in our study is due to the inclusion of very few samples with abnormal sperm forms (&lt;4%) in the analysis. Wider implications of the findings: The X1 PRO’s combination of speed, ease of use, accuracy and portability makes it a good choice of device for small medical offices to large IVF centers. High PPV of X1 PRO allows it to correctly identify normal sperm forms for diagnostic use. Trial registration number 18–771


2020 ◽  
Vol 15 (7) ◽  
Author(s):  
Thiago Fernandes Negris Lima ◽  
Evgeniya Rakitina ◽  
Ruben Blachman-Braun ◽  
Ranjith Ramasamy

Introduction: The goal of medical therapy for infertile men with testosterone deficiency (TD) is to improve intratesticular testosterone (ITT). There is a gap in knowledge to identify those who will respond with semen parameter(s) improvement. We hypothesized that serum 17-hydroxyprogesterone (17-OHP) — a marker of ITT — can be used to predict improvement of semen parameter(s). Methods: Between July 2018 and January 2020, we conducted a prospective study of 31 men with primary infertility, TD, and secondary hypogonadism receiving clomiphene citrate (CC) and/or human chorionic gonadotropin (hCG) for three months. We assessed baseline and followup hormones, including testosterone, 17-OHP, semen parameter(s), and demographics. Semen quality upgrading was based on assisted reproduction eligibility: in-vitro fertilization (<5 million), intrauterine insemination (IUI) (5–9 million), and natural pregnancy (>9 million). Variables were compared using the Mann-Whitney U or Wilcoxon rank test. Results: Twenty-one men received CC and 10 received CC/hCG. Median followup was 3.7 (3.3–5.1) months. Sixteen men upgraded semen quality. Six of 10 men with baseline total motile sperm count (TMSC) of 0 had motile sperm after treatment, and 11/20 men with TMSC<5 upgraded semen quality into TMSC>5 range. Low 17-OHP was the only factor that predicted semen quality upgrading. Men with 17-OHP ≤55 ng/dL upgraded semen quality and improved hormones, whereas men with 17-OHP >55 ng/dL did not upgrade semen quality. Conclusions: Medical therapy for infertile men with TD resulted in the improvement of sperm concentration, TMSC, testosterone, and 17-OHP. Semen quality upgrading appears to be more significant in patients with low 17-OHP, suggesting that ITT can be used as a biomarker to predict semen parameter(s) improvement.


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