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Using UVB 311 nm Narrow-Band Medical Lamp for the Treatment of Psoriasis

机译:使用UVB 311 NM窄带医疗灯来治疗牛皮癣

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Ultraviolet B (UVB) light is effective in eliminating symptoms of psoriasis and the overall dosage of the narrow-band radiation can be closely controlled, which makes UVB lamps suitable for home therapy. Utilizing phototherapy, this study proposes a psoriasis treatment method which applies 311 nm narrow-band UVB (NB-UVB) to improve efficacy and reduce long-term toxicity comparing to other recent treatments. One device was designed and built-from a Philips UVB Narrowband medical lamp and a controlling digital circuit comprising of an 89S52 microcontroller, a LCD screen, and a DS1307 real-time clock-to illuminate the psoriasis lesions in a controllable exposing time. An in vitro study was established on mouse skin fibroblasts to investigate the effect of NB-UVB on cell proliferation and morphology. The efficacy and safety of the lamp were also examined on two patients of psoriasis. The obtained results showed no significant abnormal change in morphology and growth of the irradiated fibroblasts. Furthermore, in patients undergoing the therapy, improvement was observed after 6 weeks of treatment. The psoriasis scales were fewer and the skin was softer and less flushed. The skin lesions also did not itch and spread out. The mechanism of action of the proposed treatment, however, remains not fully understood and would be further studied by investigating the effect of NB-UVB on key cell types involved in the pathogenesis of the disease including the keratinocytes and the T lymphocytes. The system will also be upgraded with various components, such as UV light sensor, for safe uses.
机译:紫外线B(UVB)光可有效地消除牛皮癣和窄带辐射的总剂量的症状可以严密地控制,这使得灯UVB适合家庭治疗。利用光疗,本研究中提出了适用311纳米的窄带UVB(NB-UVB)来提高疗效和减少长期毒性比较最近其他治疗银屑病的治疗方法。一个设备的设计和建造,从飞利浦窄带UVB灯医疗和包含89S52微控制器,LCD屏幕的控制数字电路,和一个DS1307实时时钟以照亮银屑病皮损以可控的曝光时间。体外研究成立于小鼠皮肤成纤维细胞进行调查NB-UVB对细胞增殖和形态的影响。灯的疗效和安全性还审查了牛皮癣的两个病人。将所得到的结果表明,在形态和照射成纤维细胞的生长没有显著异常变化。此外,在接受所述治疗的患者,在6周的治疗后观察到的改善。牛皮癣尺度比较少和皮肤柔和,少冲洗。皮损也没有痒和传播出去。建议治疗的作用机制,但是,仍然不能完全理解,并会通过调查NB-UVB对涉及的疾病,包括角质形成细胞和T淋巴细胞的发病关键细胞类型的影响有待进一步研究。该系统还将与各种组件,诸如UV光传感器,用于安全用途升级。

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