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High-level secretion of growth hormone by retrovirally transduced primary human keratinocytes

机译:逆转录病毒转导的原代人角质形成细胞高水平分泌生长激素

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A gene therapy clinical trial for treatment of growth hormone (GH) deficiency has not been reached yet, but several strategies using different gene transfer methodologies and animal models have been developed and showed successful results. We have set up an ex vivo gene therapy protocol using primary human keratinocytes transduced with an efficient retroviral vector (LXSN) encoding the human (hGH) or mouse GH (mGH) genes. These stably modified cells presented high in vitro expression levels of hGH (7 μg/106 cells/d) and mGH (11 μg/106 cells/d) after selection with geneticin. When the hGH-secreting keratinocytes were grafted onto immunodeficient dwarf mice (lit/scid), hGH levels in the circulation were about 0.2–0.3 ng/mL during a 12-d assay and these animals presented a significant body weight increase (p<0.01) compared to the control. Substitution of conventional grafting methodologies with organotypic raft cultures revealed a peak value of up to 20 ng mGH/mL in the circulation of grafted lit/scid mice at 1 h postimplantation, followed by a rapid decline to baseline (≈2 ng/mL) within 24 h. One week after grafting, however, the cultured excised implants still presented approx 45% of their original in vitro secretion efficiency. Further studies are being carrier out to identify the main factor(s) that still constitute one of the major impediments to the success of this promising model of cutaneous gene therapy.
机译:尚未进行用于治疗生长激素(GH)缺乏症的基因疗法临床试验,但是已经开发出了几种使用不同基因转移方法和动物模型的策略,并显示出成功的结果。我们已经建立了一个体外基因治疗方案,该方案使用通过编码人(hGH)或小鼠GH(mGH)基因的有效逆转录病毒载体(LXSN)转导的原代人角质形成细胞。经遗传霉素筛选后,这些经过稳定修饰的细胞在体外具有高表达的hGH(7μg/ 106 细胞/ d)和mGH(11μg/ 106 细胞/ d)。当将分泌hGH的角质形成细胞移植到免疫缺陷性矮小小鼠(lit / scid)上时,在12天试验中循环中的hGH水平约为0.2–0.3 ng / mL,这些动物的体重显着增加(p <0.01) )相比。用器官型筏培养替代传统的移植方法后,在移植后1 h,移植的轻度/ scid小鼠的循环中峰值最高可达20 ng mGH / mL,随后迅速下降至基线(≈2ng / mL) 24小时然而,嫁接后一周,培养的切下的植入物仍然表现出其原始体外分泌效率的约45%。正在进行进一步的研究以鉴定仍然构成该有前途的皮肤基因治疗模型成功的主要障碍之一的主要因素。

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