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椎间盘核修复:炒作还是希望?

Intervertebral Disc Nucleus Repair: Hype or Hope?

机构信息

Siegfried Weller Institute for Trauma Research at the BG Unfallklinik Tübingen, Eberhard Karls Universität Tübingen, Schnarrenbergstrasse 95, 72076 Tübingen, Germany.

出版信息

Int J Mol Sci. 2019 Jul 24;20(15):3622. doi: 10.3390/ijms20153622.

Abstract

Chronic back pain is a common disability, which is often accredited to intervertebral disc degeneration. Gold standard interventions such as spinal fusion, which are mainly designed to mechanically seal the defect, frequently fail to restore the native biomechanics. Moreover, artificial implants have limited success as a repair strategy, as they do not alter the underlying disease and fail to promote tissue integration and subsequent native biomechanics. The reported high rates of spinal fusion and artificial disc implant failure have pushed intervertebral disc degeneration research in recent years towards repair strategies. Intervertebral disc repair utilizing principles of tissue engineering should theoretically be successful, overcoming the inadequacies of artificial implants. For instance, advances in the development of scaffolds aided with cells and growth factors have opened up new possibilities for repair strategies. However, none has reached the stage of clinical trials in humans. In this review, we describe the hitches encountered in the musculoskeletal field and summarize recent advances in designing tissue-engineered constructs for promoting nucleus pulposus repair. Additionally, the review focuses on the effect of biomaterial aided with cells and growth factors on achieving effective functional reparative potency, highlighting the ways to enhance the efficacy of these treatments.

摘要

慢性背痛是一种常见的残疾,通常归因于椎间盘退行性变。脊柱融合等金标准干预措施主要旨在机械性封闭缺陷,但经常无法恢复原有的生物力学。此外,人工植入物作为一种修复策略的成功率有限,因为它们不会改变潜在的疾病,也无法促进组织整合和随后的原生物力学。报道的脊柱融合和人工椎间盘植入物失败率高,促使近年来椎间盘退行性变研究转向修复策略。利用组织工程学原理的椎间盘修复理论上应该是成功的,可以克服人工植入物的不足。例如,支架与细胞和生长因子结合的发展为修复策略开辟了新的可能性。然而,没有一种方法达到人体临床试验的阶段。在这篇综述中,我们描述了在肌肉骨骼领域遇到的困难,并总结了最近在设计用于促进髓核修复的组织工程构建体方面的进展。此外,该综述还重点介绍了细胞和生长因子辅助生物材料在实现有效功能修复效力方面的作用,强调了增强这些治疗效果的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e512/6696292/c364070e6f1e/ijms-20-03622-g001.jpg

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