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Hallmarks of Testicular Aging: The Challenge of Anti-Inflammatory and Antioxidant Therapies Using Natural and/or Pharmacological Compounds to Improve the Physiopathological Status of the Aged Male Gonad

Journal

CELLS
Volume 10, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/cells10113114

Keywords

aging; testis; inflammation; oxidative stress; apoptosis; anti-aging

Categories

Funding

  1. Consejo Nacional de Investigaciones Cientificas y Tecnicas (CONICET)
  2. Agencia Nacional de Promocion Cientifica y Tecnologica (ANPCyT) [PICT 2015 2337, PICT 2018 1221]
  3. Universidad de Buenos Aires (UBACYT)
  4. Fundacion Roemmers, Ministerio de Ciencia
  5. Tecnologia e Innovacion Productiva (MINCYT)
  6. Fundacion Rene Baron
  7. National Institute on Aging
  8. American Diabetes Association

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The male reproductive system undergoes aging primarily affecting the testes, resulting in decreased sexual hormone levels, altered sperm quality, and reduced fertility. Inflammation, oxidation, and apoptosis are predictors of aging-related diseases, with pro-inflammatory molecules and reactive oxygen species identified as contributing factors for testicular aging. The impact of age-related testicular changes on fertility, reproductive health, and lifespan remains incompletely understood, motivating research into anti-aging interventions and therapies utilizing pharmaceuticals or natural alternatives with anti-inflammatory, antioxidant, and anti-apoptotic properties.
The evolutionary theory of aging supports a trade-off relationship between reproduction and aging. Aging of the male reproductive system primarily affects the testes, leading to a decrease in the levels of sexual hormones, alterations in sperm quality and production, and a decline in fertility that does not necessarily involve a complete cessation of spermatogenesis. Inflammation, oxidation, and apoptosis are events considered as predictors of pathogenesis and the development of age-related diseases that are frequently observed in aged testes. Although the molecular mechanisms are still poorly understood, accumulating evidence points toward pro-inflammatory molecules and reactive oxygen species as primary contributing factors for testicular aging. However, the real impact of aging-related testicular alterations on fertility, reproductive health, and life span is far from being fully revealed. This work discusses the current knowledge on the impact of aging in the testis, particularly of aging-related dysregulated inflammation and oxidative damage on the functioning of its different cell populations. More interestingly, this review covers the potential benefits of anti-aging interventions and therapies using either pharmacological compounds (such as non-selective non-steroidal anti-inflammatory medication) or more natural alternatives (such as various nutraceuticals or even probiotics) that exhibit anti-inflammatory, antioxidant, and anti-apoptotic properties. Some of these are currently being investigated or are already in clinical use to delay or prevent testicular aging.

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