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在烧伤猪模型中使用智能脱细胞真皮基质和间充质干细胞实现卓越的存活与再生过程。

Outstanding survival and regeneration process by the use of intelligent acellular dermal matrices and mesenchymal stem cells in a burn pig model.

作者信息

Mansilla E, Spretz R, Larsen G, Nuñez L, Drago H, Sturla F, Marin G H, Roque G, Martire K, Díaz Aquino V, Bossi S, Gardiner C, Lamonega R, Lauzada N, Cordone J, Raimondi J C, Tau J M, Biasi N R, Marini J E, Patel A N, Ichim T E, Riordan N, Maceira A

机构信息

Department of Tissue Engineering CUCAIBA, Ensenada, Buenos Aires 1925, Argentina.

出版信息

Transplant Proc. 2010 Dec;42(10):4275-8. doi: 10.1016/j.transproceed.2010.09.132.

Abstract

A pig model with a deep large burn was used to study the regeneration process induced by mesenchymal stem cells (MSCs) and acellular pig dermal matrices, made intelligent by the combination with biodegradable nanofibers loaded with growth factors (granulocyte-macrophage colony-stimulating factor and epidermal growth factor) and coated with the anti-CD44 monoclonal antibody (intelligent acellular dermal matrices, IADMs). These IADMs are specially designed to integrate in the wound bed as new biological scaffolds as well as to specifically recruit and attach circulating and/or externally applied MSCs through the anti-CD44 antibody while delivering precise amounts of growth factors. In this way, the reparative process as well as the aesthetic and functional results were enhanced in our burn model. The animal survived, the wound was completely closed, and total regeneration of the skin was obtained without much scarring. Surprisingly, hair follicles and other skin appendages developed despite the severity and deepness of the burn. Even burned muscles and ribs seemed to have undergone a regenerative process by the end of the study. Based on these findings, we have proposed the use of IADMs and autologous, allogeneic or xenogeneic MSCs, as a new paradigm for the future treatment of large burns and probably other dermatological and cosmetic human conditions.

摘要

使用一种深度大面积烧伤的猪模型来研究间充质干细胞(MSCs)和脱细胞猪真皮基质诱导的再生过程,这些脱细胞猪真皮基质通过与负载生长因子(粒细胞-巨噬细胞集落刺激因子和表皮生长因子)的可生物降解纳米纤维结合并涂覆抗CD44单克隆抗体而变得智能化(智能脱细胞真皮基质,IADMs)。这些IADMs经过特殊设计,既能作为新的生物支架整合到伤口床中,又能通过抗CD44抗体特异性招募和附着循环中的和/或外部应用的MSCs,同时释放精确量的生长因子。通过这种方式,我们烧伤模型中的修复过程以及美学和功能效果都得到了增强。动物存活下来,伤口完全愈合,实现了皮肤的完全再生且几乎没有疤痕形成。令人惊讶的是,尽管烧伤严重且深度较深,但仍有毛囊和其他皮肤附属器发育。到研究结束时,甚至烧伤的肌肉和肋骨似乎也经历了再生过程。基于这些发现,我们提出将IADMs与自体、异体或异种MSCs联合使用,作为未来治疗大面积烧伤以及可能的其他人类皮肤病学和美容病症的新范例。

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