Corrective transduction of human epidermal stem cells in laminin-5-dependent junctional epidermolysis bullosa

被引:99
作者
Dellambra, E
Vailly, J
Pellegrini, G
Bondanza, S
Golisano, O
Macchia, C
Zambruno, G
Meneguzzi, G
De Luca, M
机构
[1] Ist Dermopat Immacolata, IDI, Lab Tissue Engn, IRCCS, I-00040 Pomezia, Italy
[2] Ist Dermopat Immacolata, IDI, Mol & Cellular Biol Lab, IRCCS, I-00040 Pomezia, Italy
[3] Fac Med, U385 INSERM, Nice 2, France
关键词
D O I
10.1089/hum.1998.9.9-1359
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Laminin-5 is composed of three distinct polypeptides, alpha 3, beta 3, and gamma 2, which are encoded by three different genes, LAMA3, LAMB3, and LAMC2, respectively. We have isolated epidermal keratinocytes from a patient presenting with a lethal form of junctional epidermolysis bullosa characterized by a homozygous mutation of the LAMB3 gene, which led to complete absence of the beta 3 polypeptide. In vitro, beta 3-null keratinocytes were unable to synthesize laminin-5 and to assemble hemidesmosomes, maintained the impairment of their adhesive properties, and displayed a decrease of their colony-forming ability. A retroviral construct expressing a human beta 3 cDNA was used to transduce primary beta 3-null keratinocytes, Clonogenic beta 3-null keratinocytes were transduced with an efficiency of 100%. beta 3-transduced keratinocytes were able to synthesize and secrete mature heterotrimeric laminin-5, Gene correction fully restored the keratinocyte adhesion machinery, including the capacity of proper hemidesmosomal assembly, and prevented the loss of the colony-forming ability, suggesting a direct link between adhesion to laminin-5 and keratinocyte proliferative capacity. Clonal analysis demonstrated that holoclones expressed the transgene permanently, suggesting stable correction of epidermal stem cells. Because cultured keratinocytes are used routinely to make autologous grafts for patients suffering from large skin or mucosal defects, the full phenotypic reversion of primary human epidermal stem cells defective for a structural protein opens new perspectives in the long-term treatment of genodermatoses.
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页码:1359 / 1370
页数:12
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