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通过改良低温法合成负载多糖作为抗氧化剂的羟基磷灰石,用于肌肉注射预防肌肉减少症。

To Synthesize Hydroxyapatite by Modified Low Temperature Method Loaded with Polysaccharide as Antioxidant for the Prevention of Sarcopenia by Intramuscular Administration.

作者信息

Liang Ya-Jyun, Hong Jia-Yu, Yang I-Hsuan, Zhou Xin-Ran, Lin Yi-Wen, Lin Tzu-Chieh, Hou Chun-Han, Lin Feng-Huei

机构信息

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, Taipei 10617, Taiwan.

Department of Orthopedic Surgery, National Taiwan University Hospital, Taipei 10617, Taiwan.

出版信息

Antioxidants (Basel). 2021 Mar 20;10(3):488. doi: 10.3390/antiox10030488.

Abstract

Oxidative stress has been suggested as an important factor in the progress of sarcopenia. The current treatments for sarcopenia have the disadvantages of insufficient effect or daily administration. Therefore, an alternative for effective, safety and long-term treatment may be a solution for unmet needs. polysaccharide has been reported to have anti-oxidative and anti-inflammatory properties. In this study, we used polysaccharide (BSP) combined with hydroxyapatite, a carrier. We hypothesized that the resulting combination (BSP-HAP) is a good formula for the controlled release of BSP via intramuscular (IM) administration, so as to prevent the worsening of presarcopenia or even recover from the early stage of the illness. In this research, BSP-HAP was synthesized by a modified low temperature co-precipitation process that would be beneficial for BSP loading. By conducting DCFDA, WST-1 and the Live/Dead assay, BSP-HAP is shown to be a biocompatible material which may release BSP by cells through the endocytosis pathway. Animal studies revealed that the rats treated with BSP-HAP could effectively recover muscle endurance, grip strength or fat/lean mass ratio from lipopolysaccharide (LPS)-induced sarcopenia. This study shows BSP delivered by BSP-HAP system has potential for application in the treatment and prevention of sarcopenia in the future.

摘要

氧化应激被认为是肌肉减少症进展中的一个重要因素。目前治疗肌肉减少症的方法存在效果不佳或需每日给药的缺点。因此,一种有效、安全且长期的治疗替代方案可能是满足未满足需求的解决办法。据报道,多糖具有抗氧化和抗炎特性。在本研究中,我们使用多糖(BSP)与载体羟基磷灰石结合。我们假设所得的组合(BSP-HAP)是通过肌肉注射(IM)给药控制BSP释放的良好配方,从而防止肌肉减少症前期恶化,甚至从疾病早期恢复。在本研究中,BSP-HAP通过改良的低温共沉淀法合成,这有利于BSP负载。通过进行DCFDA、WST-1和活/死细胞检测,表明BSP-HAP是一种生物相容性材料,细胞可通过内吞途径释放BSP。动物研究表明,用BSP-HAP治疗的大鼠能够有效恢复因脂多糖(LPS)诱导的肌肉减少症导致的肌肉耐力、握力或脂肪/瘦肉质量比。本研究表明,由BSP-HAP系统递送的BSP在未来治疗和预防肌肉减少症方面具有应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e51c/8035982/43710c2728cb/antioxidants-10-00488-g001.jpg

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