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保留髓核的免疫特惠龛位:用合成黏蛋白水凝胶注射防止椎间盘切除术后退变。

Preserving the Immune-Privileged Niche of the Nucleus Pulposus: Safeguarding Intervertebral Discs from Degeneration after Discectomy with Synthetic Mucin Hydrogel Injection.

机构信息

Medical 3D Printing Center, Orthopedic Institute, Department of Orthopedic Surgery, The First Affiliated Hospital, School of Basic Medical Sciences, Suzhou Medical College, Soochow University, Suzhou, Jiangsu, 215000, China.

National University of Singapore Suzhou Research Institute, Suzhou, Jiangsu, 215000, China.

出版信息

Adv Sci (Weinh). 2024 Nov;11(43):e2404496. doi: 10.1002/advs.202404496. Epub 2024 Aug 29.

Abstract

Intervertebral disc (IVD) herniation is a prevalent spinal disorder, often necessitating surgical intervention such as microdiscectomy for symptomatic relief and nerve decompression. IVDs comprise a gel-like nucleus pulposus (NP) encased by an annulus fibrosus (AF), and their avascular nature renders them immune-privileged. Microdiscectomy exposes the residual NP to the immune system, precipitating an immune cell infiltration and attack that exacerbates IVD degeneration. While many efforts in the tissue engineering field are directed toward IVD regeneration, the inherently limited regenerative capacity due to the avascular and low-cellularity nature of the disc and the challenging mechanical environment of the spine often impedes success. This study, aiming to prevent IVD degeneration post-microdiscectomy, utilizes mucin-derived gels (Muc-gels) that form a gel at the surgical site, inspired by the natural mucin coating on living organisms to evade immune reorganization. It is shown that type I macrophages are present in severely degenerated human discs. Encapsulating IVDs within Muc-gels prevents fibrous encapsulation and macrophage infiltration in a mouse subcutaneous model. The injection of Muc-gels prevents IVD degeneration in a rat tail IVD degeneration model up to 24 weeks post-operation. Mechanistic investigations indicate that Muc-gels attenuate immune cell infiltration into NPs, offering durable protection against immune attack post-microdiscectomy.

摘要

椎间盘(IVD)突出是一种常见的脊柱疾病,通常需要手术干预,如显微切除术以缓解症状和神经减压。IVD 由凝胶状的核髓(NP)和纤维环(AF)组成,由于其无血管特性,使其具有免疫豁免性。显微切除术将残余 NP 暴露于免疫系统中,引发免疫细胞浸润和攻击,从而加剧 IVD 退变。尽管组织工程领域的许多努力都集中在 IVD 再生上,但由于椎间盘的无血管和低细胞特性以及脊柱的挑战性机械环境,其固有再生能力有限,往往阻碍了成功。本研究旨在预防显微切除术后的 IVD 退变,利用粘蛋白衍生凝胶(Muc-gels),该凝胶在手术部位形成凝胶,灵感来自于生物体表面的天然粘蛋白涂层,以逃避免疫重组。研究表明,I 型巨噬细胞存在于严重退变的人类椎间盘。将 IVD 包裹在 Muc-gels 中可防止纤维包裹和巨噬细胞浸润在小鼠皮下模型中。Muc-gels 的注射可防止大鼠尾椎间盘退变模型在手术后 24 周内发生 IVD 退变。机制研究表明,Muc-gels 可减轻免疫细胞浸润 NP,为显微切除术后的免疫攻击提供持久保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d521/11578300/9b6b6c5a8a6d/ADVS-11-2404496-g011.jpg

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