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Primary Culture of Rat Adrenocortical Cells and Assays of Steroidogenic Functions
Published on: March 12, 2019
Anthocyanins Prevent AAPH-Induced Steroidogenesis Disorder in Leydig Cells by Counteracting Oxidative Stress and StAR
Jun Hu1, Xusheng Li1, Naijun Wu1
1Department of Food Science and Engineering, Institute of Food Safety and Nutrition, Guangdong Engineering Technology Center of Food Safety Molecular Rapid Detection, Jinan University, Guangzhou 510632, China.
Abstract:
Testosterone deficiency may increase the risk of sexual dysfunction and the failure of spermatogenesis. Oxidative stress that is derived from the destruction of homeostasis, disease, and exposure to contaminants can damage the steroidogenicity process in Leydig cells, resulting in a reduction in testosterone synthesis. Anthocyanins are a group of innoxious antioxidants widely recognized in food sources, and are an ideal candidate to relieve oxidative stress-related steroidogenesis disorder. However, there is still a major gap in our knowledge of the structure-function relationship of anthocyanin on the activity mentioned above. In the present study, four anthocyanins including cyanidin-3-glucoside (Cy-3-glu), delphinidin-3-glucoside (Dp-3-glu), pelargonidin-3-glucoside (Pg-3-glu), and cyanidin-3,5-diglucoside (Cy-3,5-diglu) were applied to reverse testosterone generation after employing 2,2'-Azobis(2-amidinopropane)-dihydrochloride (AAPH) as the inducer of oxidative stress in R2C cells. The results demonstrated that all four kinds of anthocyanins can inhibit ROS generation, alleviate mitochondrial membrane potential damage, and contribute to increased testosterone. Among them, Cy-3,5-diglu with diglycoside performed best on antioxidative ability and improved cell dysfunction and upregulated the expression of the steroidogenic acute regulatory protein (StAR). The molecular docking further revealed the direct combination between anthocyanins and StAR, suggesting that anthocyanins with monosaccharide were more likely to interact with StAR than with diglycoside. Taken together, these data indicate that recipient R2C cells under oxidative stress submitted to anthocyanins exhibited improved steroidogenesis in a structure-dependent manner. Anthocyanins could be considered the ideal ingredients against oxidative stress-induced testosterone deficiency.
Insights
Anthocyanins, natural antioxidants found in food, can combat oxidative stress and improve testosterone production in Leydig cells. Structure matters, with cyanidin-3,5-diglucoside showing the best results in this study.
Area of Science:
- Biochemistry
- Endocrinology
- Nutritional Science
Background:
- Testosterone deficiency is linked to sexual dysfunction and impaired spermatogenesis.
- Oxidative stress damages Leydig cell steroidogenesis, reducing testosterone synthesis.
- Anthocyanins are natural antioxidants with potential to mitigate oxidative stress-induced disorders.
Purpose of the Study:
- To investigate the structure-function relationship of anthocyanins in reversing testosterone deficiency caused by oxidative stress.
- To evaluate the efficacy of four specific anthocyanins in Leydig (R2C) cells exposed to oxidative stress.
Main Methods:
- Induced oxidative stress in R2C cells using 2,2'-Azobis(2-amidinopropane)-dihydrochloride (AAPH).
- Treated cells with four anthocyanins: cyanidin-3-glucoside, delphinidin-3-glucoside, pelargonidin-3-glucoside, and cyanidin-3,5-diglucoside.
- Assessed reactive oxygen species (ROS) generation, mitochondrial membrane potential, testosterone levels, and steroidogenic acute regulatory protein (StAR) expression.
- Utilized molecular docking to explore anthocyanin-StAR interactions.
Main Results:
- All tested anthocyanins inhibited ROS generation and protected mitochondrial membrane potential.
- Anthocyanins treatment increased testosterone production in stressed R2C cells.
- Cyanidin-3,5-diglucoside demonstrated superior antioxidative effects and enhanced StAR expression.
- Molecular docking suggested monosaccharide anthocyanins interact more favorably with StAR than diglycoside forms.
Conclusions:
- Anthocyanins improve steroidogenesis in R2C cells under oxidative stress in a structure-dependent manner.
- Cyanidin-3,5-diglucoside is particularly effective due to its diglycoside structure.
- Anthocyanins show promise as therapeutic ingredients against oxidative stress-induced testosterone deficiency.
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