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用于腹股沟疝修补的再生 3D 支架。MR 成像和组织学交叉证据。定性研究。

A regenerative 3D scaffold for inguinal hernia repair. MR imaging and histological cross evidence. Qualitative study.

机构信息

Postgraduate School of General Surgery, University of Cagliari, Italy Department of General Surgery and Emergency, University of Palermo, Italy Experimental Zooprophylactic Institute A. Mirri, Palermo, Italy Department of Biomedicine, Neurosciences and Advanced Diagnostic University of Palermo, Italy Department of Surgical Sciences, University of Cagliari, Italy.

出版信息

Int J Surg. 2021 Dec;96:106170. doi: 10.1016/j.ijsu.2021.106170. Epub 2021 Nov 12.

Abstract

BACKGROUND

Inguinal hernia is a degenerative disease occurring in a high motile surround. Stopping degeneration and promoting tissue regeneration should be the treatment goal. Groin hernias are conventionally managed with static flat meshes, mostly fixated to the delicate inguinal environment. Far from a regenerative effect, the biologic response of conventional hernia meshes is characterized by a foreign body reaction leading to a stiff/shrunken scar plate, which is often the source of unpleasant complications. Recently, a newly engineered 3D device for inguinal hernia repair - ProFlor-has been developed to produce a regenerative biological response. Unlike conventional hernia meshes, this regenerative 3D hernia scaffold seems to demonstrate suitable features for a pathogenetical and physiological coherent treatment of the disease. The aim of this manuscript is to cross evidence these features through magnetic resonance imaging (MRI) and histology.

STUDY DESIGN

The biological response of ProFlor at three defined post-implantation stages has been evaluated through MRI signal intensity and compared to neighbouring muscles and fat. As additional proof, histology of tissue specimens excised at the same post-implantation periods from porcine models during an experimental attempt were also evaluated.

RESULTS

MRI of newly ingrown tissue in ProFlor demonstrated similar signal intensity of muscles while fat tissue showed remarkably higher values. These data matched with the histology of ProFlor biopsies excised from pigs.

CONCLUSIONS

The motile compliance to groin movements of ProFlor appears to induce a probiotic biologic response comparable to a regenerative scaffold, allowing to physiologically resolve the degenerative source of inguinal hernia disease.

摘要

背景

腹股沟疝是一种发生在高活动区域的退行性疾病。阻止退化和促进组织再生应该是治疗目标。腹股沟疝传统上采用静态平网片治疗,这些网片大多固定在脆弱的腹股沟环境中。与再生效果相反,传统疝网片的生物反应特征是异物反应,导致僵硬/收缩的疤痕板,这通常是不愉快并发症的根源。最近,一种新开发的用于腹股沟疝修复的 3D 装置——ProFlor——已被开发用于产生再生的生物反应。与传统疝网片不同,这种再生 3D 疝支架似乎具有适合疾病病理生理一致治疗的合适特征。本文的目的是通过磁共振成像(MRI)和组织学交叉证明这些特征。

研究设计

通过 MRI 信号强度评估 ProFlor 在三个定义的植入后阶段的生物反应,并与相邻肌肉和脂肪进行比较。作为额外的证据,还评估了从猪模型在实验尝试中同一植入后时期切除的组织标本的组织学。

结果

ProFlor 中新生长组织的 MRI 显示出与肌肉相似的信号强度,而脂肪组织显示出明显更高的值。这些数据与从猪中切除的 ProFlor 活检的组织学相匹配。

结论

ProFlor 对腹股沟运动的活动顺应性似乎会引起类似于再生支架的益生菌生物反应,从而能够从生理上解决腹股沟疝疾病的退行性根源。

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