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首页> 外文期刊>The Journal of investigative dermatology. >Low-energy helium-neon laser induces locomotion of the immature melanoblasts and promotes melanogenesis of the more differentiated melanoblasts: recapitulation of vitiligo repigmentation in vitro.
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Low-energy helium-neon laser induces locomotion of the immature melanoblasts and promotes melanogenesis of the more differentiated melanoblasts: recapitulation of vitiligo repigmentation in vitro.

机译:低能氦氖激光诱导未成熟的黑素细胞的运动,并促进分化程度更高的黑素细胞的黑色素生成:体外白癜风色素沉着的概述。

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摘要

Helium-neon laser (He-Ne Laser, 632.8 nm) is a low-energy laser that has therapeutic efficacy on various clinical conditions. Our previous study has demonstrated efficacy of He-Ne laser on vitiligo, a disease characterized by skin depigmentation. To regain skin tone on vitiligo lesions, the process began by the migration of the immature melanoblasts (MBs) to the epidermis, which was followed by their functional development to produce melanin. In this study, we investigated the physiologic effects of He-Ne laser irradiation on two MB cell lines: the immature NCCmelb4 and the more differentiated NCCmelan5. The intricate interactions between MBs with their innate extracelluar matrix, fibronectin, were also addressed. Our results showed that He-Ne laser irradiation enhanced NCCmelb4 mobility via enhanced phosphorylated focal adhesion kinase expression and promoted melanogenesis in NCCmelan5. In addition, He-Ne laser decreased the affinity between NCCmelb4 and fibronectin, whereas the attachment of NCCmelan5 to fibronectin increased. The alpha5beta1 integrin expression on NCCmelb4 cells was enhanced by He-Ne laser. In conclusion, we have demonstrated that He-Ne laser induced different physiologic changes on MBs at different maturation stages and recapitulated the early events during vitiligo repigmentation process brought upon by He-Ne laser in vitro.
机译:氦氖激光器(He-Ne Laser,632.8 nm)是一种低能量激光器,在各种临床情况下均具有治疗功效。我们以前的研究证明了氦氖激光对白癜风的功效,白癜风是一种皮肤色素沉着的疾病。为了恢复白癜风病变的肤色,该过程始于将未成熟的黑素母细胞(MBs)迁移至表皮,然后其功能发展以产生黑色素。在这项研究中,我们调查了氦氖激光辐照对两种MB细胞系的生理影响:未成熟的NCCmelb4和分化程度更高的NCCmelan5。还讨论了MB与其固有的细胞外基质纤连蛋白之间的复杂相互作用。我们的结果表明,氦氖激光辐照通过增强磷酸化的粘着斑激酶的表达增强了NCCmelb4的迁移性,并促进了NCCmelan5中的黑色素生成。此外,He-Ne激光降低了NCCmelb4和纤连蛋白之间的亲和力,而NCCmelan5与纤连蛋白的附着增加了。 He-Ne激光增强了NCCmelb4细胞上alpha5beta1整合素的表达。综上所述,我们证明了氦氖激光在不同的成熟阶段诱导了MBs的不同生理变化,并概括了氦氖激光在体外引起的白癜风修复过程中的早期事件。

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