纳米级表面修饰推进当前颈椎退行性椎间盘病(CDDD)的治疗选择。

Journal of orthopedic research and therapy Pub Date : 2019-01-01 Epub Date: 2019-10-06
Anne Yau, Ian Sands, Yupeng Chen
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引用次数: 0

摘要

椎间盘退行性疾病(DDD)会引起严重的背部疼痛,以及四肢麻木的感觉,导致患者整体身高下降,腿部肌肉无力。椎间盘退行性疾病常见于老年患者以及背部受伤的患者。颈椎退变性椎间盘病(CDDD)是一种进行性疾病,导致支撑颈椎的椎间盘退变。前路颈椎椎间融合术(ACIF)一直是严重退变性椎间盘疾病的长期治疗选择;然而,ACIF出现了各种新的并发症,需要大量的比较装置研究来减少脊柱融合的负面影响。颈椎间盘置换术是最近临床关注的焦点,是减轻椎体融合术并发症的替代方法之一,但也有其自身的缺点。这些并发症促使对这些装置进行进一步的研究和修改。我们将讨论植入物和细胞外基质之间的纳米级相互作用在设备集成和功效中起着至关重要的作用,为设备的整体成功提供了另一种方法。
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Nano-Scale Surface Modifications to Advance Current Treatment Options for Cervical Degenerative Disc Disease (CDDD).

Degenerative Disc Disease (DDD) causes a nagging to severe back pain as well as numbing sensation to the extremities leading to loss of overall patients' height and weakness to leg muscles. Degenerative disc disease is often observed in aging patients as well as patients who have suffered from a back injury. Cervical Degenerative Disc Disease (CDDD) is a progressive condition that leads to the degeneration of the intervertebral discs supporting the cervical vertebral column. Anterior Cervical Interbody Fusion (ACIF) has been the longstanding treatment option for severe degenerative disc disease; however, ACIF presents various novel complications, necessitating numerous comparative device studies to reduce the negative effects of spinal fusion. Cervical disc arthroplasty, the recent focus of clinical attention, was one of the alternatives studied to mitigate the complications associated with vertebral fusion but presents its own disadvantages. These complications prompted further investigation and modifications that can be introduced into these devices. We will be discussing the nano-scale interactions between the implant and extracellular matrix play a crucial role in device integration and efficacy, providing an additional approach towards a device's overall success.

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