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表皮中持久且具有分层特异性的基因表达。

Durable and stratum-specific gene expression in epidermis.

作者信息

Ghazizadeh S, Doumeng C, Taichman L B

机构信息

Department of Oral Biology and Pathology, Westchester Hall (Room 100), SUNY at Stony Brook, Stony Brook, NY 11794-8702, USA.

出版信息

Gene Ther. 2002 Oct;9(19):1278-85. doi: 10.1038/sj.gt.3301800.

Abstract

A number of genetic disorders are manifested in cutaneous epithelium and gene therapy approaches for treatment of such diseases are being considered. A successful gene therapy protocol requires durable and correctly targeted gene expression within the tissue. The continuous renewal and high levels of compartmentalization in epidermis are two challenges for a successful gene therapy of skin disorders. For those disorders which affect the upper layers of epidermis, vectors must be available that target stem cells, but remain silent until the progeny of these cells undergo differentiation. To explore the potential of long-term and targeted vector expression in epidermis, a hybrid retroviral vector encoding the reporter enhanced green fluorescent protein (EGFP) was constructed. The viral enhancer in the long terminal repeat of the vector was replaced with a 510-bp enhancer element of the human involucrin promoter. Keratinocyte-specific expression directed by the hybrid vector was demonstrated in culture and suprabasal-specific expression was observed in organotypic human epidermal cultures. In vivo transduction of mouse skin with this hybrid vector indicated long-term and stratum-specific expression of the transgene in mouse epidermis. The design of similar vectors for various gene therapy applications constitutes an important step toward clinically effective gene therapy.

摘要

许多遗传性疾病表现在皮肤上皮组织中,目前正在考虑采用基因治疗方法来治疗这类疾病。一个成功的基因治疗方案需要在组织内实现持久且靶向正确的基因表达。表皮的持续更新和高度区室化是皮肤疾病成功进行基因治疗的两大挑战。对于那些影响表皮上层的疾病,必须有能够靶向干细胞的载体,并且这些载体在这些细胞的后代进行分化之前保持沉默。为了探索在表皮中实现长期靶向载体表达的潜力,构建了一种编码报告基因增强绿色荧光蛋白(EGFP)的杂交逆转录病毒载体。该载体长末端重复序列中的病毒增强子被人内披蛋白启动子的一个510碱基对的增强子元件所取代。在培养物中证明了杂交载体指导的角质形成细胞特异性表达,并在器官型人表皮培养物中观察到基底上层特异性表达。用这种杂交载体对小鼠皮肤进行体内转导表明,转基因在小鼠表皮中实现了长期和分层特异性表达。设计用于各种基因治疗应用的类似载体是朝着临床有效基因治疗迈出的重要一步。

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