首页> 美国卫生研究院文献>International Journal of Nanomedicine >Sequential release of salidroside and paeonol from a nanosphere-hydrogel system inhibits ultraviolet B-induced melanogenesis in guinea pig skin
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Sequential release of salidroside and paeonol from a nanosphere-hydrogel system inhibits ultraviolet B-induced melanogenesis in guinea pig skin

机译:红景天苷和丹皮酚从纳米球-水凝胶系统中的顺序释放抑制了紫外线B诱导的豚鼠皮肤黑色素生成

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摘要

Melanin is the one of most important pigments for skin color in mammals. Excessive biosynthesis of melanin induces various pigment disorders. Much effort has been made to develop regulators to minimize skin pigmentation abnormalities. However, only a few of them are used, primarily because of safety concerns and low efficiency. In this study, we aimed to construct a novel nanosphere-gel for sequential delivery of salidroside and paeonol, to investigate the synergistic effects of these drugs in anti-melanogenesis, and to decrease their potential for toxicity in high dosage. Nanospheres were prepared and characterized for their particle size, polydispersity index, zeta potential, and morphological properties. The optimized nanospheres were incorporated in carbomer hydrogel with both paeonol and salidroside entrapped to form a dual drug-releasing nanosphere-gel. With this nanosphere-gel, rapid release of salidroside from the hydrogel followed by sustained release of paeonol from the nanosphere was achieved. Using a classical model of the melanogenesis response to ultraviolet exposure, it was shown that the anti-melanogenesis effects of the dual drug-releasing system, in which the doses of the individual drugs were decreased by half, was obviously enhanced when compared with the effects of the single drug preparations. Mechanistically, the burst release of salidroside from the hydrogel may enable prompt suppression of melanocyte proliferation on exposure to ultraviolet B radiation, while the paeonol released in a sustained manner can provide continuous inhibition of tyrosinase activity in melanocytes. Combined delivery of salidroside and paeonol was demonstrated to be a promising strategy for enhancing the therapeutic efficacy of these agents in anti-melanogenesis and reducing their toxicity, so may have great potential in nanomedicine.
机译:黑色素是哺乳动物皮肤颜色最重要的色素之一。黑色素的过度生物合成引起各种色素紊乱。已经做出了很多努力来开发调节剂以最小化皮肤色素沉着异常。但是,主要出于安全考虑和低效率,仅使用其中的少数几个。在这项研究中,我们旨在构建一种新的纳米球凝胶,用于顺序输送红景天苷和丹皮酚,以研究这些药物在抗黑素生成中的协同作用,并降低其在高剂量时的毒性潜力。制备纳米球,并对其粒度,多分散指数,ζ电势和形态学特性进行表征。将优化的纳米球掺入卡波姆水凝胶中,同时夹入丹皮酚和红景天苷,以形成双重药物释放纳米球凝胶。有了这种纳米球凝胶,红景天苷从水凝胶中快速释放,然后实现了丹皮酚从纳米球中的持续释放。使用经典模型对紫外线的黑色素生成反应,表明双重药物释放系统的抗黑色素生成作用(与单个药物的剂量相比降低了一半)显着增强单一药物制剂。从机制上讲,红景天苷从水凝胶中的突然释放可以在暴露于紫外线B辐射后迅速抑制黑素细胞的增殖,而以持续方式释放的丹皮酚可以持续抑制黑素细胞中的酪氨酸酶活性。红景天苷和丹皮酚的联合给药被证明是增强这些药物在抗黑素生成中的治疗功效并降低其毒性的有前途的策略,因此在纳米医学中可能具有巨大的潜力。

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