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首页> 外文期刊>Experimental dermatology >Isolating RNA from precursor and mature melanocytes from human vitiligo and normal skin using laser capture microdissection
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Isolating RNA from precursor and mature melanocytes from human vitiligo and normal skin using laser capture microdissection

机译:使用激光捕获显微切割技术从白癜风和正常皮肤的前体细胞和成熟黑素细胞中分离RNA

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To characterize the gene expression profile of regenerated melanocytes in the narrow band UVB (NBUVB)-treated vitiligo epidermis and their precursors in the hair follicle, we present here a strategy of RNA isolation from in situ melanocytes using human frozen skin. We developed a rapid immunostaining protocol using the NKI-beteb antibody, which labels differentiated and precursor melanocytes, followed by fluorescent laser capture microdissection. This technique enabled the direct isolation, from melanocyte and adjacent keratinocyte populations, of satisfactory quality RNA that was successfully amplified and analysed by qRT-PCR. The melanocyte-specific gene transcripts TYR, DCT, TYRP1 and PMEL were significantly upregulated in our NBUVB-treated melanocyte samples as compared with the keratinocyte samples, while keratinocyte-specific genes (KRT5 and KRT14) were expressed significantly higher in the keratinocyte samples as compared with the melanocyte samples. Furthermore, in both NBUVB-treated vitiligo skin and normal skin, when bulge melanocytes were compared with epidermal melanocytes, we found significantly lower expression of melanocyte-specific genes and significantly higher expression of three melanocytic stem cell genes (SOX9, WIF1 and SFRP1), while ALCAM and ALDH1A1 transcripts did not show significant variation. We found significantly higher expression of melanocyte-specific genes in the epidermis of NBUVB-treated vitiligo, as compared to the normal skin. When comparing bulge melanocyte samples from untreated vitiligo, NBUVB-treated vitiligo and normal skin, we did not find significant differences in the expression of melanocyte-specific genes or melanocytic stem cell genes. These techniques offer valuable opportunities to study melanocytes and their precursors in vitiligo and other pigmentation disorders.
机译:为了表征在窄带UVB(NBUVB)处理的白癜风表皮及其毛囊中前体中再生黑素细胞的基因表达谱,我们在这里提出一种使用人冷冻皮肤从原位黑素细胞中分离RNA的策略。我们开发了一种使用NKI-beteb抗体的快速免疫染色方案,该抗体可标记分化的和前体黑色素细胞,然后进行荧光激光捕获显微切割。这项技术能够从黑素细胞和邻近的角质形成细胞群中直接分离出令人满意的高质量RNA,并通过qRT-PCR成功地对其进行了扩增和分析。与角质形成细胞样本相比,在我们的NBUVB处理的黑色素细胞样本中,黑色素细胞特异性基因转录本TYR,DCT,TYRP1和PMEL被显着上调,而与之相比,角质形成细胞特异性基因(KRT5和KRT14)的表达明显更高。与黑色素细胞样本。此外,在NBUVB处理的白癜风皮肤和正常皮肤中,当将膨大的黑素细胞与表皮黑素细胞进行比较时,我们发现黑素细胞特异性基因的表达明显较低,而三个黑素细胞干细胞基因(SOX9,WIF1和SFRP1)的表达则明显较高,而ALCAM和ALDH1A1转录本没有显示显着差异。我们发现,与正常皮肤相比,NBUVB处理的白癜风表皮中黑素细胞特异性基因的表达明显更高。当比较未经处理的白癜风,NBUVB处理的白癜风和正常皮肤的黑色素细胞样本时,我们在黑色素细胞特异性基因或黑素细胞干细胞基因的表达中未发现显着差异。这些技术为研究白癜风和其他色素沉着疾病中的黑素细胞及其前体提供了宝贵的机会。

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