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Human keloid cultured fibroblasts irradiated with Blue LED light: evidence from an in vitro study

机译:用蓝色LED光照射人类瘢痕疙瘩培养的成纤维细胞:来自体外研究的证据

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Keloids are an exuberant response to cutaneous wound healing, characterized by an exaggerated synthesis of collagen probably due to the increase of fibroblasts activity and their proliferation rate. Currently, there are not definitive treatments or pharmacological therapies able to prevent keloid formation and its recurrence. In the last years, physical treatments have been proposed and among them the photobiomodulation therapy. In this work, the effects of Blue LED light (410-430 nm wavelength, 0.69 W/cm~2 power density, 5÷60s treatment time) were evaluated on seven boundary keloid tissues by using two different colorimetric assays. Micro-Raman spectroscopy was used to explore direct effects of the Blue LED light on the endogenous cellular redox system and in particular to probe any variation in the oxidation state of the photosensitive heme-protein Cytochrome C (Cyt C) upon irradiation. We also investigated the effects of Blue LED light on membrane currents correlated to cell cycle modulation by patch-clamp recordings. Twenty-four hours after irradiation, a significant reduction of cell metabolism and proliferation was observed. The decrease in cell metabolism was maintained up to 48 hours when we found also an increased reduction in cell proliferation. Electrophysiological recordings showed an enhancement of voltage-dependent outward currents elicited by a depolarizing ramp protocol after a 30s irradiation. Data indicates that Blue LED light irradiation directly affects human keloid fibroblasts: it possesses a long lasting inhibitory effect on cell metabolism and proliferation whereas acutely increases membrane currents. Similar responses were obtained in our recent works conducted on human keloid tissues [1-2]. The proposed photomodulation treatment by using Blue LED light represents a non-invasive approach in the management of hypertrophic scars and keloids.
机译:瘢痕疙瘩是对皮肤伤口愈合的繁荣反应,其特征在于由于成纤维细胞活性的增加和其增殖率的增加,胶原蛋白的夸大合成。目前,没有能够防止瘢痕疙瘩形成及其复发的明确治疗或药理学疗法。在过去几年中,已经提出了物理治疗以及其中的光生物调节治疗。在这项工作中,通过使用两种不同的比色测定,在七个边界瘢痕疙瘩组织上评估蓝色LED光(410-430 nm波长,0.69W / cm〜2功率密度,5±60s处理时间)的影响。微拉曼光谱学用于探讨蓝色LED光对内源性细胞氧化还原系统的直接影响,特别是在照射时探测光敏血红蛋白细胞色素C(CYT C)的氧化状态的任何变化。我们还调查了蓝色LED灯对通过贴片夹具的细胞周期调制相关的膜电流的影响。辐照后二十四小时,观察到细胞代谢和增殖的显着降低。当我们发现细胞增殖的降低增加时,细胞代谢的降低长达48小时。电生理记录显示在30S照射之后通过去极化斜坡方案引发的电压依赖性向外电流的增强。数据表明,蓝色LED光照射直接影响人类瘢痕疙瘩成纤维细胞:它具有对细胞代谢和增殖的持久抑制作用,而急性增加膜电流。在我们最近对人类瘢痕疙瘩组织进行的作品中获得了类似的反应[1-2]。通过使用蓝色LED光的提出的光膜调制处理代表了肥厚疤痕和瘢痕疙瘩的管理中的非侵入性方法。

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