Laboratoire Imagerie de l'Angiogénèse, Plateforme d'Imagerie du Petit Animal, PARCC, INSERM U970, Laboratoire de Recherches Biochirugicales (Fondation Carpentier), Université de Paris, 56 rue Leblanc, 75015, Paris, France.
Laboratoire Matière et Systèmes Complexes (MSC), Université de Paris, UMR 7057 CNRS, 75205 Paris cedex 13, France.
Nanoscale. 2021 Sep 17;13(35):14866-14878. doi: 10.1039/d1nr01240a.
In this study, we investigated the combination of extracellular (nano) vesicles (EVs) from pig adipose tissue-derived stromal cells (ADSCs) and a thermoresponsive gel, Pluronic® F-127 (PF-127), to prevent stricture formation after endoscopic resection in a porcine model. ADSC EVs were produced at a liter scale by a high-yielding turbulence approach from ADSCs 3D cultured in bioreactors and characterized in terms of size, morphology and membrane markers. The thermoresponsive property of the PF-127 gel was assessed by rheology. The pro-regenerative potency of ADSC EVs was investigated in esophageal biopsies under starvation. tests were performed in a porcine model after extended esophageal endoscopic mucosal dissection (ESD). Pigs were randomized into 3 groups: control ( = 6), gel ( = 6) or a combination of 1.45 × 10 EVs + gel ( = 6). Application of gel ± EVs was performed just after ESD with a follow-up finalized on day 21 post-ESD. There was a trend towards less feeding disorder in the EV + gel group in comparison with the gel and the control groups (16.67% 66.7% 83.33%, respectively) but without reaching a statistically significant difference. A significant decrease in the esophageal stricture rate was confirmed by endoscopic, radiological and histological examination for the EV + gel group. A decrease in the mean fibrosis area and larger regenerated were observed for the EV + gel group. In summary, the application of EVs + gel after extended esophageal endoscopic resection succeeded in preventing stricture formation with an anti-fibrotic effect. This nano-therapy may be of interest to tackle an unmet medical need considering that esophageal stricture is the most challenging delayed complication after extended superficial cancer resection by endoscopy.
在这项研究中,我们研究了猪脂肪组织来源基质细胞(ADSCs)的细胞外(纳米)囊泡(EVs)与温敏凝胶 Pluronic® F-127(PF-127)的联合应用,以预防猪模型内镜切除后狭窄的形成。通过从在生物反应器中 3D 培养的 ADSCs 中采用高产率的湍流方法,以升规模生产 ADSC EVs,并从大小、形态和膜标记物方面对其进行了表征。通过流变学评估了 PF-127 凝胶的温敏特性。通过饥饿状态下的食管活检研究了 ADSC EVs 的促再生能力。在经过扩展的食管内镜黏膜剥离(ESD)后,在猪模型中进行了 测试。猪随机分为 3 组:对照组(n = 6)、凝胶组(n = 6)或 1.45×10 EVs +凝胶组(n = 6)。在 ESD 后立即应用凝胶±EVs,随访期为 ESD 后 21 天。与凝胶组和对照组相比,EV +凝胶组的进食障碍趋势较轻(分别为 16.67%、66.7%和 83.33%),但无统计学差异。通过内镜、放射学和组织学检查证实,EV +凝胶组的食管狭窄率显著降低。EV +凝胶组的平均纤维化面积减小,再生的面积增大。总之,在延长的食管内镜切除术后应用 EVs +凝胶成功地预防了狭窄的形成,并具有抗纤维化作用。考虑到食管狭窄是内镜下广泛浅表性癌症切除后最具挑战性的延迟并发症,这种纳米治疗可能是满足未满足的医疗需求的一种选择。