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在大型动物模型中基于导管的肾去神经治疗后神经瘤样再生作为一种神经反应:免疫组织化学研究

Neuromatous regeneration as a nerve response after catheter-based renal denervation therapy in a large animal model: immunohistochemical study.

作者信息

Rousselle Serge D, Brants Irena K, Sakaoka Atsushi, Hubbard Brad, Jackson Nicolette D, Wicks Joan R, Dillon Krista N, Naiche L A, Hart Randy, Garza Javier A, Tellez Armando

机构信息

From the Alizée Pathology, LLC, Thurmont, MD (S.D.R., N.D.J., J.R.W., K.N.D., L.A.N., R.H., J.A.G., A.T.); Translational Testing and Training (T3) Laboratories, Atlanta, GA (I.K.B., B.H.); and Terumo Corporation, Kanagawa, Japan (A.S.).

出版信息

Circ Cardiovasc Interv. 2015 May;8(5). doi: 10.1161/CIRCINTERVENTIONS.114.002293.

Abstract

BACKGROUND

Renal denervation (RDN) emerged as a therapeutic option for resistant hypertension. Nerve regrowth after RDN has been questioned. We aimed to characterize the nerve response after RDN.

METHODS AND RESULTS

Swine underwent bilateral RDN and were followed up for 7, 30, and 90 days and evaluated with S100 (Schwann cell), tyrosine hydroxylase (TH; efferent nerves), and growth-associated protein 43 (neurite regeneration) markers. At 7 days, nerve changes consisted of necrosis associated with perineurial fibrosis and distal atrophy with inflammation. At 30 days changes were substituted by healing changes (ie, fibrosis). This response progressed through 90 days resulting in prominent neuroma formation. Immunohistochemistry at 7 days: TH staining was strongly decreased in treated nerves. Early regenerative attempts were observed with strongly TH and growth-associated protein 43 positive and weak S100 disorganized nerve sprouts within the thickened perineurium. Distal atrophic nerves show weak staining for all 3 markers. At 30 days, affected nerves show a weak TH and S100 staining. Evident growth-associated protein 43+ disorganized neuromatous tangles in the thickened perineurium of severed nerves were observed. At 90 days, some TH expression was observed together with prominent S100+ and growth-associated protein 43+ neuromatous tangles with disorganized architecture. The potential for regenerative activity is unlikely based on the disrupted architecture of these neuromatous tangles at the radiofrequency lesion sites.

CONCLUSIONS

This study is the first documentation that a progressive regenerative response occurs as early as 7 days after RDN, resulting in a poorly organized neuromatous regeneration. This finding is of paramount importance to further establish the potential functional significance of a regeneration after RDN.

摘要

背景

肾去神经支配术(RDN)已成为难治性高血压的一种治疗选择。RDN术后神经再生一直受到质疑。我们旨在描述RDN术后的神经反应特征。

方法与结果

对猪进行双侧RDN,并随访7天、30天和90天,采用S100(施万细胞)、酪氨酸羟化酶(TH;传出神经)和生长相关蛋白43(神经突再生)标记物进行评估。7天时,神经变化包括与神经束膜纤维化相关的坏死以及伴有炎症的远端萎缩。30天时,变化被愈合变化(即纤维化)所取代。这种反应持续到90天,导致明显的神经瘤形成。7天时的免疫组织化学结果:治疗侧神经中TH染色明显减少。在增厚的神经束膜内观察到早期再生尝试,TH和生长相关蛋白43呈强阳性,S100呈弱阳性且神经芽杂乱无章。远端萎缩神经对所有三种标记物的染色均较弱。30天时,受累神经TH和S100染色较弱。在切断神经增厚的神经束膜中观察到明显的生长相关蛋白43阳性的杂乱神经瘤缠结。90天时,观察到一些TH表达,同时伴有明显的S100阳性和生长相关蛋白43阳性的神经瘤缠结,结构紊乱。基于射频损伤部位这些神经瘤缠结的结构破坏,再生活动的可能性不大。

结论

本研究首次证明,RDN术后最早在7天就会出现进行性再生反应,导致神经瘤再生组织紊乱。这一发现对于进一步确定RDN术后再生的潜在功能意义至关重要。

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