白细胞端粒长度与老年人功能表现之间的关系:观察研究。

Rejuvenation research Pub Date : 2024-04-01 Epub Date: 2024-02-28 DOI:10.1089/rej.2023.0050
Fabiana Souza Máximo Pereira, Ronaldo Luis Thomasini, Daniele Sirineu Pereira, Thyago José Silva, Cleyde Amaral Leite, Luís Guilherme Oliveira Reis, Vitor Amorim De Andrade Câmara, Matheus Brum Rodrigues da Costa, João Víctor Santos Bakir, Laise Santos Xavier, Leani Souza Máximo Pereira, Adriana Netto Parentoni, Ana Cristina Rodrigues Lacerda
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摘要

尽管目前有文献指出端粒缩短与衰老、慢性疾病和老年综合症之间存在联系,但这种联系的确切含义仍不清楚。在这项探索性、横断面、观察性研究中,我们的目的是利用短期体能测试(SPPB)调查老年人外周血白细胞亚型(单核细胞和粒细胞)的端粒相对长度(RTL)与体能表现之间的关系。我们招募了 95 名参与者,其中包括 60 岁以上的男性和女性(70.48 ± 5.5 岁)。我们发现,单核细胞的 RTL 明显低于粒细胞(P
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Association Between the Length of Leukocyte Telomeres and Functional Performance of Older Adults: Observational Study.

Despite current literature pointing to a link between shortened telomeres and aging, chronic diseases, and geriatric syndromes, the precise implications of this connection remain unclear. The aim of this exploratory, cross-sectional, observational study was to investigate the association between the relative telomere length (RTL) of peripheral blood leukocyte subtypes (mononuclear cells and granulocytes) and physical performance using the Short Physical Performance Battery (SPPB) in older adults. A cohort of 95 participants was recruited, which included men and women aged over 60 years (70.48 ± 5.5 years). It was found that mononuclear cell RTL was significantly lower than that of granulocytes (p < 0.0001). Moreover, individuals with good SPPB performance exhibited lower mononuclear cell RTL compared with those with moderate or poor performance. However, no significant differences were observed in granulocyte RTL between different SPPB performance groups. The global SPPB score showed an inverse correlation with mononuclear cell RTL, but this correlation was not present with granulocyte RTL. Similarly, the SPPB sit-to-stand domain correlated with mononuclear cell RTL, but no such correlation was found with granulocyte RTL. Our findings challenge conventional expectations, suggesting that shorter mononuclear cell RTL may be associated with favorable functional capacity. The variations in RTL between mononuclear cells and granulocytes highlight their distinct biological roles and turnover rates. A history of immune responses may influence mononuclear cell RTL dynamics, while telomerase activity may protect granulocyte RTL from significant shortening. The unexpected associations observed in mononuclear cell RTL emphasize the complex interplay between immune responses, cellular aging, and functional capacity in older adults.

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