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胰岛素样生长因子-I信号通路对衰老和寿命的调控。

Control of aging and longevity by IGF-I signaling.

作者信息

Yang Joshua, Anzo Makoto, Cohen Pinchas

机构信息

Division of Pediatric Endocrinology, Mattel Children's Hospital at UCLA, David Geffen School of Medicine, Los Angeles, CA 90095, USA.

出版信息

Exp Gerontol. 2005 Nov;40(11):867-72. doi: 10.1016/j.exger.2005.08.001. Epub 2005 Sep 8.

Abstract

Animal models have established the IGF-I signaling pathway as a key modulator of aging in rodents and invertebrates. Considerable evidence suggests that reduced exposure of tissue to IGF-I is associated with an extended lifespan in these species. In humans, IGF-I is linked to various age-related diseases that are limiting factors for youthful longevity. On one hand, reduced IGF-I activity is associated with significant morbidity in adulthood with an increased risk of developing cardiovascular disease, diabetes, osteoporosis and neurodegenerative diseases. On the other hand, elevated IGF-I levels have been linked to cancer risk given the role of IGF in mediating normal and malignant tissue growth. Thus, IGF is clearly involved in modulating disease of aging; however, the mechanism appears to be complex and interdependent on additional modulating factors. It is attractive to hypothesize that maximal human survival depends on tight regulation of the GH-IGF axis and maintenance of optimal IGF-I action in order to prevent morbidities associated with either deficient or excessive state. Specifically, it is possible that lower levels of IGF-I during early adulthood followed by higher levels of IGF-I later in life may be most beneficial for human longevity by addressing age-specific morbidities.

摘要

动物模型已证实胰岛素样生长因子-I(IGF-I)信号通路是啮齿动物和无脊椎动物衰老的关键调节因子。大量证据表明,组织对IGF-I的暴露减少与这些物种的寿命延长有关。在人类中,IGF-I与各种与年龄相关的疾病相关,这些疾病是年轻长寿的限制因素。一方面,IGF-I活性降低与成年期的显著发病率相关,患心血管疾病、糖尿病、骨质疏松症和神经退行性疾病的风险增加。另一方面,鉴于IGF在介导正常和恶性组织生长中的作用,IGF-I水平升高与癌症风险相关。因此,IGF显然参与调节衰老相关疾病;然而,其机制似乎很复杂,且依赖于其他调节因子。有一种颇具吸引力的假设认为,人类的最大寿命取决于生长激素-IGF轴的严格调控以及维持最佳的IGF-I作用,以预防与缺乏或过量状态相关的疾病。具体而言,成年早期IGF-I水平较低,随后在生命后期IGF-I水平较高,通过解决特定年龄的疾病,可能对人类长寿最为有益。

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