Koller Ulrich, Bauer Johann W
EB House Austria, Research Program for Molecular Therapy of Genodermatoses, Department of Dermatology and Allergology, University Hospital of the Paracelsus Medical University, Salzburg, Austria.
Front Genet. 2021 Apr 30;12:658295. doi: 10.3389/fgene.2021.658295. eCollection 2021.
Epidermolysis bullosa (EB) is a genodermatosis, characterized by the formation of extended blisters and lesions on the skin and mucous membranes upon minimal mechanical trauma. The disease is caused by mutations in genes encoding proteins that are essential for skin stability. Functional impairment, reduction, or absence of one of these proteins results in skin fragility due to reduced connectivity between dermis and epidermis. Currently, gene therapy represents the only treatment option with the potential to cure this severe blistering skin disease. Two promising forms of gene therapy are potentially feasible for EB: gene replacement and genome editing. While genome editing for genodermatoses remains at the preclinical stage, gene replacement approaches are clinically advanced and have been applied already to a small number of patients with junctional and dystrophic forms of EB. Here, the viral transduction of the "wild-type" transgene into skin stem cells, followed by autologous grafting of corrected epidermal sheets, led to the regeneration of stable skin. Recent developments regarding designer nuclease-based gene editing strategies enable the establishment of alternative options to restore the gene function in genodermatoses. This is particularly true in cases wherein genetic constellation hinders gene therapy-based gene replacement.
大疱性表皮松解症(EB)是一种遗传性皮肤病,其特征是在受到最小程度的机械创伤后,皮肤和粘膜上会形成广泛的水疱和损伤。该疾病是由编码对皮肤稳定性至关重要的蛋白质的基因突变引起的。这些蛋白质中的一种功能受损、减少或缺失会导致真皮和表皮之间的连接性降低,从而导致皮肤脆弱。目前,基因治疗是唯一有可能治愈这种严重水疱性皮肤病的治疗选择。两种有前景的基因治疗形式对EB可能可行:基因替代和基因组编辑。虽然针对遗传性皮肤病的基因组编辑仍处于临床前阶段,但基因替代方法在临床上已取得进展,并且已经应用于少数患有交界性和营养不良型EB的患者。在这里,将“野生型”转基因病毒转导到皮肤干细胞中,然后对校正后的表皮片进行自体移植,导致了稳定皮肤的再生。基于设计核酸酶的基因编辑策略的最新进展使得能够建立替代方案来恢复遗传性皮肤病中的基因功能。在基因组合阻碍基于基因治疗的基因替代的情况下尤其如此。