scholarly journals Coenzyme Q10, oxidative stress, and male infertility: A review

2021 ◽  
Vol 48 (2) ◽  
pp. 97-104
Author(s):  
Ahmed T. Alahmar ◽  
Aldo E. Calogero ◽  
Rajender Singh ◽  
Rossella Cannarella ◽  
Pallav Sengupta ◽  
...  

Male infertility has a complex etiopathology, which mostly remains elusive. Although research has claimed that oxidative stress (OS) is the most likely underlying mechanism of idiopathic male infertility, the specific treatment of OS-mediated male infertility requires further investigation. Coenzyme Q10 (CoQ10), a vitamin-like substance, has been found in measurable levels in human semen. It exhibits essential metabolic and antioxidant functions, as well as playing a vital role in mitochondrial bioenergetics. Thus, CoQ10 may be a key player in the maintenance of biological redox balance. CoQ10 concentrations in seminal plasma directly correlate with semen parameters, especially sperm count and sperm motility. Seminal CoQ10 concentrations have been shown to be altered in various male infertility states, such as varicocele, asthenozoospermia, and medical or surgical regimens used to treat male infertility. These observations imply that CoQ10 plays an important physiological role in the maintenance and amelioration of semen quality. The present article thereby aimed to review the possible mechanisms through which CoQ10 plays a role in the regulation of male reproductive function, and to concisely discuss its efficacy as an ameliorative agent in restoring semen parameters in male infertility, as well as its impact on OS markers, sperm DNA fragmentation, pregnancy, and assisted reproductive technology outcomes.

2018 ◽  
Vol 108 (5) ◽  
pp. 953-962 ◽  
Author(s):  
Albert Salas-Huetos ◽  
Rocío Moraleda ◽  
Simona Giardina ◽  
Ester Anton ◽  
Joan Blanco ◽  
...  

ABSTRACT Background Human semen quality has declined in industrialized countries. Pollution, smoking, and the consumption of a Western-style diet are all hypothesized as potential causes. Objective We evaluated the effect of chronic consumption of nuts on changes in conventional semen parameters and the potential mechanisms implicated. Design The FERTINUTS study was a 14-wk randomized, controlled, parallel trial. A total of 119 healthy men, aged 18–35 y, were allocated to 1 of 2 intervention groups: one group was fed the usual Western-style diet enriched with 60 g of a mixture of nuts/d (nut group), and the other was fed the usual Western-style diet avoiding nuts (control group). Semen and blood samples were collected at baseline and at the end of the intervention. Dietary information was recorded throughout the trial. Changes in conventional semen parameters (pH, volume, sperm count and concentration, motility, and morphology) were determined as primary outcomes. The effect of nut consumption on sperm DNA fragmentation (SDF), reactive oxygen species (ROS) production, chromosome anomalies (X, Y, and 18), total DNA methylation, and microRNA expression were measured in sperm samples as potential causes of the changes in the seminogram. Results Compared with the control group, improvements in total sperm count (P = 0.002) and vitality (P = 0.003), total motility (P = 0.006), progressive motility (P = 0.036), and morphology of sperm (P = 0.008) were observed in the nut group. Participants in the nut group showed an increase in the consumption of total fat, monounsaturated fatty acids, polyunsaturated fatty acids, magnesium, vitamin E, α-linolenic acid, total omega-3 (n–3) and ω-3:ω-6 ratio intake during the intervention. Participants in the nut group showed a significant reduction in SDF (P < 0.001) and in the expression of hsa-miR-34b-3p (P = 0.036). No significant changes in ROS, sperm chromosome anomalies, or DNA methylation were observed between groups. Conclusions The inclusion of nuts in a Western-style diet significantly improves the total sperm count and the vitality, motility, and morphology of the sperm. These findings could be partly explained by a reduction in the sperm DNA fragmentation. This trial was registered at ISRCTN as ISRCTN12857940.


Antioxidants ◽  
2021 ◽  
Vol 10 (6) ◽  
pp. 874
Author(s):  
Gianmaria Salvio ◽  
Melissa Cutini ◽  
Alessandro Ciarloni ◽  
Lara Giovannini ◽  
Michele Perrone ◽  
...  

Infertility affects 15% of couples worldwide. A male factor is involved in 50% of cases. The etiology of male infertility is poorly understood, but there is evidence for a strong association between oxidative stress (OS) and poor seminal fluid quality. For this reason, therapy with antioxidants is one of the cornerstones of empirical treatment of male infertility. Coenzyme Q10 (CoQ10)—an essential cofactor for energy production with major antioxidant properties—is commonly used to support spermatogenesis in idiopathic male infertility. This systematic review aims to elucidate the usefulness of CoQ10 supplementation in the treatment of male infertility, particularly with regard to semen quality assessed by conventional and advanced methods, and pregnancy rates. All studies report a beneficial effect of CoQ10 supplementation on semen parameters, although randomized controlled trials are a minority. Moreover, the optimal dosage of CoQ10 or how it can be combined with other antioxidant molecules to maximize its effect is unknown. However, CoQ10 is still one of the most promising molecules to treat idiopathic male infertility and warrants further investigation.


Toxics ◽  
2020 ◽  
Vol 8 (3) ◽  
pp. 62
Author(s):  
Kajsa Ugelvig Petersen ◽  
Ahmad Mahmoud Balkiss ◽  
Katia Keglberg Hærvig ◽  
Jens Peter Ellekilde Bonde ◽  
Karin Sørig Hougaard ◽  
...  

Personal care products (PCPs) may contain multiple chemicals capable of harming male reproductive function. The aim of this study was, therefore, to assess aggregated PCP exposure and potential associations with measures of semen quality in young men. Participants (n = 1058, age 18–21) were sampled among young men from the Danish National Birth Cohort (DNBC). Upon recruitment in 2017–2019, each man answered an online questionnaire and provided a semen sample. Exposure to 12 common types of PCPs was derived from the questionnaire, and the extent of use and co-use was analyzed. We applied a negative binomial regression model to estimate percentage differences in semen parameters between low, medium and high PCP exposure groups. All participants were exposed to at least one PCP more than once a week, resulting in a mean number (SD) of 5.3 (2.0) PCPs currently used. Most participants (92%) were also exposed to fragranced products on a weekly basis. Little association was observed between aggregated exposure to PCPs and sperm concentration, total sperm count, semen volume, sperm motility and morphology. Despite prevalent use of multiple PCPs, we found little indication of adverse effects of aggregated overall or fragranced PCP exposure on semen quality.


2020 ◽  
Vol 10 (2-s) ◽  
pp. 64-67
Author(s):  
Dalila Ferrag ◽  
Abbassia Demmouche ◽  
Charaf Khalloua Zine

Introduction: Body mass index BMI is a risk factor that influences semen quality and reduces male fertility. The aim of this study was to determine the impact of body mass index (BMI) on semen parameters in infertile men. Subject and method: A total of 446 infertile men, the study population was divided into four groups depending on their BMI , underweight (<18.5 kg/), normal weight (18.5-24.99 kg/m2 ), overweight 25-29.99 kg/m2), and obese >30.0 kg/.semen parameters (PH, volume, concentration ,total semen count ,vitality, morphology and motility ) were compared across the four BMI groups. Results: The mean of age was 41.91±6.39, the mean infertility duration was 4.92±3.28, 351(78.7٪) had primary infertility and 95(21.3٪) had secondary infertility. The mean BMI was 29.38± 4.85 and the most of patients 45.2٪ were obese. Conclusion: This study has found evidence of an association between BMI and semen parameters (Sperm concentration, Total sperm count, motility, and vitality) and no correlation between Semen volume, morphology and BMI. Keywords: Body mass index, male infertility, semen quality, west of Algeria


2020 ◽  
Vol 16 ◽  
Author(s):  
Hamed Heydari ◽  
Rafighe Ghiasi ◽  
Saber Ghaderpour ◽  
Rana Keyhanmanesh

Introduction: Obesity resulted by imbalance between the intake of energy and energy consumption can lead to growth and metabolic disease development in people. Both in obese men and animal models, several studies indicate that obesity leads to male infertility. Objective: This review has discussed some mechanisms involved in obesity-induced male infertility. Method: Online documents were searched through Science Direct, Pubmed, Scopus, and Google Scholar websites dating from 1959 to recognize studies on obesity, kisspeptin, leptin, and infertility. Results: Obesity induced elevated inflammatory cytokines and oxidative stress can affect male reproductive functions including spermatogenesis disorders, reduced male fertility power and hormones involved in hypothalamus-pituitarygonadal axis. Conclusion: There is significant evidence that obesity resulted in male infertility. obesity has negative effect on male reproductive function via several mechanisms such as inflammation and oxidative stress.


Antioxidants ◽  
2021 ◽  
Vol 10 (1) ◽  
pp. 97
Author(s):  
Leila Rashki Ghaleno ◽  
AliReza Alizadeh ◽  
Joël R. Drevet ◽  
Abdolhossein Shahverdi ◽  
Mojtaba Rezazadeh Valojerdi

One important reason for male infertility is oxidative stress and its destructive effects on sperm structures and functions. The particular composition of the sperm membrane, rich in polyunsaturated fatty acids, and the easy access of sperm DNA to oxidative damage due to sperm cell specific cytologic and metabolic features (no cytoplasm left and cells unable to mount stress responses) make it the cell type in metazoans most susceptible to oxidative damage. In particular, oxidative damage to the spermatozoa genome is an important issue and a cause of male infertility, usually associated with single- or double-strand paternal DNA breaks. Various methods of detecting sperm DNA fragmentation have become important diagnostic tools in the prognosis of male infertility and such assays are available in research laboratories and andrology clinics. However, to date, there is not a clear consensus in the community as to their respective prognostic value. Nevertheless, it is important to understand that the effects of oxidative stress on the sperm genome go well beyond DNA fragmentation alone. Oxidation of paternal DNA bases, particularly guanine and adenosine residues, the most sensitive residues to oxidative alteration, is the starting point for DNA damage in spermatozoa but is also a danger for the integrity of the embryo genetic material independently of sperm DNA fragmentation. Due to the lack of a spermatozoa DNA repair system and, if the egg is unable to correct the sperm oxidized bases, the risk of de novo mutation transmission to the embryo exists. These will be carried on to every cell of the future individual and its progeny. Thus, in addition to affecting the viability of the pregnancy itself, oxidation of the DNA bases in sperm could be associated with the development of conditions in young and future adults. Despite these important issues, sperm DNA base oxidation has not attracted much interest among clinicians due to the lack of simple, reliable, rapid and consensual methods of assessing this type of damage to the paternal genome. In addition to these technical issues, another reason explaining why the measurement of sperm DNA oxidation is not included in male fertility is likely to be due to the lack of strong evidence for its role in pregnancy outcome. It is, however, becoming clear that the assessment of DNA base oxidation could improve the efficiency of assisted reproductive technologies and provide important information on embryonic developmental failures and pathologies encountered in the offspring. The objective of this work is to review relevant research that has been carried out in the field of sperm DNA base oxidation and its associated genetic and epigenetic consequences.


2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
C Omes ◽  
V Tomasoni ◽  
R Bassani ◽  
V Amico ◽  
R E Nappi

Abstract Study question What is the cause of semen quality impairment in oncological patients during fertility preservation programs? The cancer type and stadiation or the resulting inflammatory state? Summary answer The inflammatory state seems to be related to the decrease of sperm concentration, motility, morphology and viability due to the worsening of oxidative stress microenvironment. What is known already Fertility preservation acquired a great importance in the last decades due to increase survival of oncological patients, boost of diagnosis under 40 years and postponement of paternal age. At the time of cryopreservation, only one third of these males are normozoospermic. Tumor itself or other factors, added to psychological reasons, may be involved but there is no clear evidence. An imbalance of ROS (reactive oxygen species) in semen can compromise its quality. However, the correlation between cancer-related generalized stress state and fertility is poorly investigated. Inflammatory conditions induced by infections and pathologies, including cancer, increase ROS. Study design, size, duration Retrospective observational analysis was performed on 45 patients (29.0 ± 6.9 yrs) recruited during their fertility preservation program between 2016 and 2019 with written consent on use of their clinical data for research purpose. Patients presented several oncological diagnoses. Semen samples obtained from multiple collections (N = 58) were analyzed before applying standard freezing protocol. Data on semen parameters, inflammatory indices, hematological values and type/stage of tumors were collected. No exclusion criteria were applied. Participants/materials, setting, methods Routine semen analysis was performed according to the WHO standards. Sperm concentration and motility were evaluated on Makler Chamber, whereas eosin stain and Diff-quick slides were used for viability and morphology, respectively. Lymphoma was present in 72% of cases, leukemia in 8%, seminoma in 7% and other cancers in 13%. Correlations (Pearson/Spearman tests) among principal semen parameters and hematological values (leukocytes, erythrocytes, hemoglobin, RDW, albumin, etc.) were calculated with a P-value &lt;0.05 considered statistically significant. Main results and the role of chance The majority of semen samples showed a severe impairment, with one or more parameters under lower reference limits (WHO): 48.3% had sperm concentration under 15 millions/ml, 43.1% had a progressive motility under 32%, 41.4% had viability under 58% and 91.4% had abnormal morphology (under 4%). The role of potential inflammatory state was analyzed by correlating semen parameters and some hematological values. No correlation was found with cancer type. Negative association resulted between progressive motility (%PR) and leukocytes (p = 0.041) or RDW% (p = 0.015), but positive one with albumin (p = 0.012). Even sperm count, total motility (%PR+NP) and morphology were significantly correlated to RDW% (p = 0.003, p = 0.032, p = 0.034, respectively). These findings suggest a possible role of inflammation and ROS related generation in semen quality impairment. Indeed, albumin exerts a protective action, but leukocytes are known to cause ROS increase. Cancer-induced oxidative stress state may alter red blood cells homeostasis and vitality and increase erythrocytes turnover resulting in high RDW values. It is likely semen is worse when blood values indicate more severe cancer-induced inflammatory condition. Limitations, reasons for caution Significant correlations with type/stage of cancer were not found due to small number of each diagnosis, in spite our study considered 3 years of patients inclusion. Moreover, we lack to analyze the same patient before the cancer onset to avoid the influence of inflammatory state generated by the tumor itself. Wider implications of the findings: Understanding the influence of cancer-induced inflammatory state on semen quality could increase the awareness that clinicians should direct patient to the fertility preservation as soon as possible, even if diagnosis is still ongoing. It should be evaluated whether offering specific treatments may reduce oxidative stress conditions. Trial registration number Not applicable


2014 ◽  
Vol 86 (3) ◽  
pp. 164 ◽  
Author(s):  
Davide Arcaniolo ◽  
Vincenzo Favilla ◽  
Daniele Tiscione ◽  
Francesca Pisano ◽  
Giorgio Bozzini ◽  
...  

Objective: Infertility affects 15% of couples in fertile age. Male factor is a cause of infertility in almost half of cases, mainly due to oligoasthenoteratozoospermia (OAT). The purpose of this study is to review the effects of nutritional supplements as medical treatment for idiopathic male infertility. Material and methods: A Pub Med and Medline review of the published studies utilizing nutritional supplements for the treatment of male infertility has been performed. Results: Clinical trials on Vitamin E, Vitamin A, Vitamin C. Arginine, Carnitine, N-Acetyl-Carnitine, Glutathione, Coenzyme Q10, Selenium and Zinc were reviewed. Although there is a wide variability in selected population, dose regimen and final outcomes, nutritional supplements both alone and in combination seems to be able to improve semen parameters (sperm count, sperm motility and morphology) and pregnancy rate in infertile men. Conclusions: There are rising evidences from published randomized trials and systematic review suggesting that nutritional supplementation may improve semen parameters and the likelihood of pregnancy in men affected by OAT. This improvement, however, is not consistent and there is a wide variation in the treatment regimens used. Well designed and adequately powered RCTs are needed to better clarify the role of nutritional supplements as treatment for male infertility.


Reproduction ◽  
2013 ◽  
Vol 145 (3) ◽  
pp. 227-235 ◽  
Author(s):  
M Cambi ◽  
L Tamburrino ◽  
S Marchiani ◽  
B Olivito ◽  
C Azzari ◽  
...  

Oxidative stress (OS) is involved in many disoders including male infertility. Human spermatozoa are very sensitive targets of reactive oxygen species (ROS) and most sperm functions are impaired in the case of OS. In addition unbalanced production of ROS is considered one of the most important causes of sperm DNA fragmentation, a semen trait of infertile men. The relationship between oxidative damage and semen quality is partially controversial, probably due to the different methods and/or targets used to reveal the OS. In this study, by fluorescence microscopy and flow cytometry, we compared two methods to reveal 8-hydroxy,2-deoxyguanosine (8-OHdG), the hallmark of oxidative DNA damage: an immunofluorescence method and the commercial OxyDNA kit. We found that although both methods localized the labelling in sperm nuclei they yielded different measures, and only with the immunofluorescence method was the labelling specific for sperm 8-OHdG. The immunofluorescence method, coupled to flow cytometry, was thus selected to analyse the 8-OHdG content in semen samples from 94 subfertile patients and to investigate the relationship with semen quality. We found that the percentages of spermatozoa with 8-OHdG (mean±s.d., 11.4±6.9%) were related to sperm count (Pearson's correlation coefficient (r)=−0.27, P=0.04 (ANOVA and student's t-test)), motility (progressive: r=−0.22, P=0.04; non-progressive: r=0.25, P=0.01), and normal morphology (r=−0.27, P=0.01). In conclusion, we demonstrate that immunofluorescence/flow cytometry is a reliable and specific method to detect 8-OHdG at single-cell level and show that oxidative damage only partially overlaps poor semen quality, suggesting that it could provide additional information on male fertility with respect to routine semen analysis.


2021 ◽  
Author(s):  
Ning Wang ◽  
Fang Lv ◽  
Ge Yu ◽  
Cuige Shi ◽  
Shangming Wang ◽  
...  

Abstract Background: Iodine is an essential element for hormones synthesized by the human thyroid gland. Thyroid hormone deficiency affects all body tissues, including multiple endocrine changes that alter growth hormones, corticotrophin, glucocorticoids, and gonadal function. In many countries, subfertility is an important problem affecting about 10–15% of all couples trying to conceive. Male subfertile factors have accounted for 25–30% of all cases in their studies. The aim of this study was to study the correlation between urinary iodine concentration (UIC) and semen quality of fertile male in China.Methods: semen and urine samples were collected from males who attended a survey for the reproductive physiological constants of male and female in China. All participants were fertile and they should be free from diseases of male reproductive system and thyroid related diseases. We studied the correlation between UIC and semen quality parameters in fertile males and the effect of iodine concentration on male reproduction. Participants were divided into six groups based on UIC. We measured semen parameters and UIC. Semen parameters or time-to-pregnancy (TTP) were analyzed by Spearman correlation, linear regression and multivariable logistic regression. Results: 1089 men were recruited in the study. The mean and median age of participants were 27.46±0.12 and 27±3.88 years, respectively. UIC of 274 (25.16%) men was lower than the UIC of WHO recommended. UIC of 405 men located in the region of WHO recommended. 62.35% of them were not located in the optimal region. Semen concentration and total sperm count were found to decrease when UIC increases when the UIC≥100 ug/L. Conclusions: A male with deficient UIC or excessive UIC has more risk of lower semen quality such as sperm concentration and total sperm count. In addition, if a male with deficient UIC or excessive UIC, his wife has longer TTP than the males who had normal UIC. Deficient UIC associated with lower semen quality and TTP than excessive UIC.


Sign in / Sign up

Export Citation Format

Share Document