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The Timing Sequence and Mechanism of Aging in Endocrine Organs

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CELLS
卷 12, 期 7, 页码 -

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MDPI
DOI: 10.3390/cells12070982

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endocrine; aging; mechanisms

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The world is facing an increasing aging population and there is a pressing need to find a safe and effective way to delay the aging process. This study focuses on the aging of endocrine glands, which play a crucial role in the regulation of aging. By analyzing genes and pathways related to endocrine gland aging, this research provides insights into the changes in structure and function of aging endocrine glands as well as the underlying mechanisms.
The world is increasingly aging, and there is an urgent need to find a safe and effective way to delay the aging of the body. It is well known that the endocrine glands are one of the most important organs in the context of aging. Failure of the endocrine glands lead to an abnormal hormonal environment, which in turn leads to many age-related diseases. The aging of endocrine glands is closely linked to oxidative stress, cellular autophagy, genetic damage, and hormone secretion. The first endocrine organ to undergo aging is the pineal gland, at around 6 years old. This is followed in order by the hypothalamus, pituitary gland, adrenal glands, gonads, pancreatic islets, and thyroid gland. This paper summarises the endocrine gland aging-related genes and pathways by bioinformatics analysis. In addition, it systematically summarises the changes in the structure and function of aging endocrine glands as well as the mechanisms of aging. This study will advance research in the field of aging and help in the intervention of age-related diseases.

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