Role of α-Tocopherol and β-Carotene in Ameliorating the Fenvalerate-Induced Changes in Oxidative Stress, Hemato-Biochemical Parameters, and Semen Quality of Male Rats

2004 ◽  
Vol 39 (3) ◽  
pp. 443-459 ◽  
Author(s):  
F. M. El-Demerdash ◽  
M. I. Yousef ◽  
F. S. Kedwany ◽  
H. H. Baghdadi
2007 ◽  
Vol 293 (6) ◽  
pp. H3524-H3531 ◽  
Author(s):  
Sanjiv Dhingra ◽  
Anita K. Sharma ◽  
Dinender K. Singla ◽  
Pawan K. Singal

It is known that TNF-α increases the production of ROS and decreases antioxidant enzymes, resulting in an increase in oxidative stress. IL-10 appears to modulate these effects. The present study investigated the role of p38 and ERK1/2 MAPKs in mediating the interplay of TNF-α and IL-10 in regulating oxidative stress and cardiac myocyte apoptosis in Sprague-Dawley male rats. Isolated adult cardiac myocytes were exposed to TNF-α (10 ng/ml), IL-10 (10 ng/ml), and IL-10 + TNF-α ( ratio 1) for 4 h. H2O2(100 μM) as a positive control and the antioxidant Trolox (20 μmol/l) were used to confirm the involvement of oxidative stress. H2O2treatment increased oxidative stress and apoptosis; TNF-α mimicked these effects. Exposure to TNF-α significantly increased ROS production, caused cell injury, and increased the number of apoptotic cells and Bax-to-Bcl-xl ratio. This change was associated with an increase in the phospho-p38 MAPK-to-total p38 MAPK ratio and a decrease in the phospho-ERK1/2-to-total ERK1/2 ratio. IL-10 treatment by itself had no effect on these parameters, but it prevented the above-listed changes caused by TNF-α. The antioxidant Trolox modulated TNF-α-induced changes in Bax/Bcl-xl, cell injury, and MAPKs. Preexposure of cells to the p38 MAPK inhibitor SB-203580 prevented TNF-α-induced changes. Inhibition of the ERK pathway with PD-98059 attenuated the protective role of IL-10 against TNF-α-induced apoptosis. This study provides evidence in support of the essential role of p38 and ERK1/2 MAPKs in the interactive role of TNF-α and IL-10 in cardiac myocyte apoptosis.


2020 ◽  
Vol 8 (1) ◽  
pp. 78
Author(s):  
Mohammed Kassem ◽  
Abdel-Fattah Ali ◽  
Seham Y. Abo-kora ◽  
Nesreen Shawky

This study investigates the modulating effect of ginseng against testicular toxicity, oxidative stress and changes in some biochemical parameters induced by doxorubicin. Twenty male rats were divided into four groups. The 1st group received distilled water orally (control group), The 2nd group received doxorubicin (5 mg/kg b.wt. intrapertenoineal) once a week for eight weeks, The 3rd group received ginseng extract (200 mg/kg b.wt.) daily for eight weeks and the 4th group received doxorubicin with ginseng extract by the same doses as in the 2nd and the 3rd groups respectively. At the end of the 8th week, blood and semen samples were taken for biochemical and semen analysis, respectively. The doxorubicin treated group had significantly higher serum alanine aminotransferase (ALT), aspartate aminotransferase (AST), Creatine kinase (CK) and lactate dehydrogenase (LDH) along with lower levels of total protein, albumin and globulin. In addition, a significant decrease in antioxidant enzymes (SOD, CAT, GSHPx), and glutathione (GSH) associated with higher level of malondialdehyde (MDA) were observed. At the same time, the group that took doxorubicin with ginseng did not differ from control group in terms of these parameters. Male fertility study showed changes in testosterone and semen analysis in both groups treated with doxorubicin, while the group that took doxorubicin with ginseng showed an improvement towards control levels of these parameters. Thus ginseng supplement can reduce the negative effects of doxorubicin- induce.  


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 <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


2018 ◽  
Vol 61 ◽  
pp. 92-99 ◽  
Author(s):  
Lihui Zhou ◽  
Lian Ouyang ◽  
Shuangzhi Lin ◽  
Song Chen ◽  
YingJie Liu ◽  
...  

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