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胶原蛋白质摄入对肌肉骨骼结缔组织重塑的影响:叙事性综述。

The impact of collagen protein ingestion on musculoskeletal connective tissue remodeling: a narrative review.

机构信息

NUTRIM School of Nutrition and Translational Research in Metabolism, Maastricht University Medical Centre+, Maastricht, The Netherlands.

出版信息

Nutr Rev. 2022 May 9;80(6):1497-1514. doi: 10.1093/nutrit/nuab083.

Abstract

Collagen is the central structural component of extracellular connective tissue, which provides elastic qualities to tissues. For skeletal muscle, extracellular connective tissue transmits contractile force to the tendons and bones. Connective tissue proteins are in a constant state of remodeling and have been shown to express a high level of plasticity. Dietary-protein ingestion increases muscle protein synthesis rates. High-quality, rapidly digestible proteins are generally considered the preferred protein source to maximally stimulate myofibrillar (contractile) protein synthesis rates. In contrast, recent evidence demonstrates that protein ingestion does not increase muscle connective tissue protein synthesis. The absence of an increase in muscle connective tissue protein synthesis after protein ingestion may be explained by insufficient provision of glycine and/or proline. Dietary collagen contains large amounts of glycine and proline and, therefore, has been proposed to provide the precursors required to facilitate connective tissue protein synthesis. This literature review provides a comprehensive evaluation of the current knowledge on the proposed benefits of dietary collagen consumption to stimulate connective tissue remodeling to improve health and functional performance.

摘要

胶原蛋白是细胞外结缔组织的核心结构成分,为组织提供弹性。对于骨骼肌而言,细胞外结缔组织将收缩力传递到肌腱和骨骼上。结缔组织蛋白处于不断重塑的状态,表现出高度的可塑性。饮食蛋白摄入可增加肌肉蛋白合成速率。高质量、易消化的蛋白质通常被认为是刺激肌原纤维(收缩)蛋白合成速率的最佳蛋白质来源。相比之下,最近的证据表明,蛋白质摄入不会增加肌肉结缔组织蛋白的合成。蛋白质摄入后肌肉结缔组织蛋白合成没有增加,这可能是由于甘氨酸和/或脯氨酸的供应不足。饮食胶原含有大量的甘氨酸和脯氨酸,因此被认为可以提供促进结缔组织蛋白合成所需的前体。本文综述全面评估了饮食胶原摄入刺激结缔组织重塑以改善健康和功能表现的潜在益处的现有知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0da/9086765/55dc3bf54efd/nuab083f1.jpg

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