Porcine Acellular Nerve-Derived Hydrogel Improves Outcomes of Direct Muscle Neurotization in Rats.

IF 3.5 3区 医学 Q3 CELL & TISSUE ENGINEERING Tissue Engineering Part A Pub Date : 2024-01-01 Epub Date: 2023-12-04 DOI:10.1089/ten.TEA.2023.0191
Marissa N Behun, Mangesh Kulkarni, Alexis L Nolfi, Cambell T France, Clint D Skillen, Mark A Mahan, Lorenzo Soletti, Bryan N Brown
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Abstract

Background: The ability to reinnervate a muscle in the absence of a viable nerve stump is a challenging clinical scenario. Direct muscle neurotization (DMN) is an approach to overcome this obstacle; however, success depends on the formation of new muscle endplates, a process, which is often limited due to lack of appropriate axonal pathfinding cues. Objective: This study explored the use of a porcine nerve extracellular matrix hydrogel as a neuroinductive interface between nerve and muscle in a rat DMN model. The goal of the study was to establish whether such hydrogel can be used to improve neuromuscular function in this model. Materials and Methods: A common peroneal nerve-to-gastrocnemius model of DMN was developed. Animals were survived for 2 or 8 weeks following DMN with or without the addition of the hydrogel at the site of neurotization. Longitudinal postural thrust, terminal electrophysiology, and muscle weight assessments were performed to qualify and quantify neuromuscular function. Histological assessments were made to qualify the host response at the DMN site, and to quantify neuromuscular junctions (NMJs) and muscle fiber diameter. Results: The hydrogel-treated group showed a 132% increase in postural thrust at 8 weeks compared with that of the DMN alone group. This was accompanied by an 80% increase in the number of NMJs at 2 weeks, and 26% increase in mean muscle fiber diameter at 8 weeks. Conclusions: These results suggest that a nerve-derived hydrogel may improve the neuromuscular outcome following DNM.

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猪脱细胞神经衍生水凝胶改善大鼠直接肌肉神经化的结果。
背景:在没有可行的神经残端的情况下对肌肉进行神经再支配的能力是一个具有挑战性的临床场景。直接肌肉神经化(DMN)是克服这一障碍的一种方法;然而,成功取决于新的肌肉终板的形成,由于缺乏适当的轴突寻路线索,这一过程往往受到限制。目的:本研究探讨了在大鼠DMN模型中使用猪神经细胞外基质水凝胶作为神经和肌肉之间的神经诱导界面。该研究的目的是确定这种水凝胶是否可以用于改善该模型中的神经肌肉功能。方法:建立腓总神经-腓肠肌DMN模型。DMN后,在神经化部位添加或不添加水凝胶的情况下,动物存活2或8周。进行纵向姿势推力、末端电生理学和肌肉重量评估,以确定和量化神经肌肉功能。进行组织学评估,以确定DMN部位的宿主反应,并量化神经肌肉接头和肌肉纤维直径。结果:与单独DMN组相比,水凝胶治疗组在8周时的姿势推力增加了132%。2周时,神经肌肉接头的数量增加了80%,8周时,平均肌纤维直径增加了26%。结论:这些结果表明,神经衍生水凝胶可以改善DNM后的神经肌肉结果。
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来源期刊
Tissue Engineering Part A
Tissue Engineering Part A Chemical Engineering-Bioengineering
CiteScore
9.20
自引率
2.40%
发文量
163
审稿时长
3 months
期刊介绍: Tissue Engineering is the preeminent, biomedical journal advancing the field with cutting-edge research and applications that repair or regenerate portions or whole tissues. This multidisciplinary journal brings together the principles of engineering and life sciences in the creation of artificial tissues and regenerative medicine. Tissue Engineering is divided into three parts, providing a central forum for groundbreaking scientific research and developments of clinical applications from leading experts in the field that will enable the functional replacement of tissues.
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