Amato Giuseppe, Puleio Roberto, Romano Giorgio, Calò Pietro Giorgio, Di Buono Giuseppe, Cicero Luca, Cassata Giovanni, Goetze Thorsten, Buscemi Salvatore, Agrusa Antonino, Rodolico Vito
Department of Surgical, Oncological and Oral Sciences University of Palermo, 90127 Palermo, Italy.
Department of Pathologic Anatomy and Histology, IZSS, 90129 Palermo, Italy.
Biology (Basel). 2023 Mar 11;12(3):434. doi: 10.3390/biology12030434.
Surgical repair of groin protrusions is one of the most frequently performed procedures. Currently, open or laparoscopic repair of inguinal hernias with flat meshes deployed over the hernial defect is considered the gold standard. However, fixation of the implant, poor quality biologic response to meshes and defective management of the defect represent sources of continuous debates. To overcome these issues, a different treatment concept has recently been proposed. It is based on a 3D scaffold named ProFlor, a flower shaped multilamellar device compressible on all planes. This 3D device is introduced into the hernial opening and, thanks to its inherent centrifugal expansion, permanently obliterates the defect in fixation-free fashion. While being made of the same polypropylene material as conventional hernia implants, the 3D design of ProFlor confers a proprietary dynamic responsivity, which unlike the foreign body reaction of flat/static meshes, promotes a true regenerative response. A long series of scientific evidence confirms that, moving in compliance with the physiologic cyclical load of the groin, ProFlor attracts tissue growth factors inducing the development of newly formed muscular, vascular and nervous structures, thus re-establishing the inguinal barrier formerly wasted by hernia disease. The development up to complete maturation of these highly specialized tissue elements was followed thanks to biopsies excised from ProFlor from the short-term up to years post implantation. Immunohistochemistry made it possible to document the concurrence of specific growth factors in the regenerative phenomena. The results achieved with ProFlor likely demonstrate that modifying the two-dimensional design of hernia meshes into a 3D outline and arranging the device to respond to kinetic stresses turns a conventional regressive foreign body response into advanced probiotic tissue regeneration.
腹股沟突出物的手术修复是最常进行的手术之一。目前,使用平片覆盖疝缺损进行开放或腹腔镜腹股沟疝修补术被认为是金标准。然而,植入物的固定、对补片质量欠佳的生物学反应以及缺损的处理不当仍是持续争论的焦点。为克服这些问题,最近提出了一种不同的治疗理念。它基于一种名为ProFlor的3D支架,这是一种在所有平面上均可压缩的花形多层装置。这种3D装置被引入疝孔,由于其固有的离心扩张作用,能以无固定方式永久性地封闭缺损。虽然ProFlor与传统疝植入物采用相同的聚丙烯材料制成,但其3D设计赋予了一种专有的动态反应性,与平片/静态补片的异物反应不同,它能促进真正的再生反应。一系列科学证据证实,ProFlor顺应腹股沟的生理周期性负荷,吸引组织生长因子,诱导新形成的肌肉、血管和神经结构的发育,从而重建因疝病而受损的腹股沟屏障。通过对植入后短期至数年从ProFlor上取下的活检组织进行观察,跟踪了这些高度专业化组织成分直至完全成熟的发育过程。免疫组织化学能够记录再生现象中特定生长因子的同时出现。ProFlor所取得的结果可能表明,将疝补片的二维设计修改为3D轮廓,并使装置能对动态应力作出反应,可将传统的退行性异物反应转变为先进的益生菌组织再生。