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MDI 301 a non-irritating retinoid induces changes in human skin that underlie repair

机译:MDI 301是一种无刺激性的类维生素A可诱导人体皮肤发生变化成为修复的基础

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摘要

Previous studies have demonstrated that all-trans retinoic acid (RA) increases collagen production and decreases matrix metalloproteinase (MMP) activity in organ-cultured human skin. Decreased MMP activity is associated with up-regulation of tissue inhibitor of metalloproteinase-1 (TIMP-1). These changes are accompanied by a hyperplastic response in the epidermis. Here we show that a synthetic picolinic ester-substituted retinoid (designated as MDI 301) has comparable effects to those of RA in regard to these activities. What makes these findings of interest is that RA also stimulates elaboration of several pro-inflammatory cytokines and up-regulates leukocyte adhesion molecules in organ-cultured skin. MDI 301 does not induce such changes or is much less active. In a past study we showed that while RA was irritating to the skin of topically treated hairless mice, MDI 301 was essentially non-irritating under the same conditions [Varani et al. (2003) Arch. Dermatol Res 295:255–262]. Taken in conjunction with the findings from the past study, the present data suggest that MDI 301 will be similar to RA in capacity to repair damaged skin, but will be effective under conditions that are not irritating. These findings, thus, suggest that retinoid efficacy and clinically relevant irritancy are not inextricably linked. Potential for efficacy under conditions in which irritation is not observed is a strong rationale for further development of MDI 301 as a skin-repair agent.
机译:先前的研究表明,全反式维甲酸(RA)可以增加器官培养的人皮肤中胶原蛋白的产生,并降低基质金属蛋白酶(MMP)的活性。 MMP活性降低与金属蛋白酶1(TIMP-1)组织抑制剂的上调相关。这些变化伴随着表皮的增生反应。在这里,我们表明,合成的吡啶甲酸酯取代的类视黄醇(指定为MDI 301)在这些活性方面与RA相当。使这些发现有意义的是,RA还刺激了多种促炎性细胞因子的合成,并上调了器官培养皮肤中的白细胞粘附分子。 MDI 301不会引起此类更改,或者其活动性要差得多。在过去的研究中,我们表明,当RA刺激局部治疗的无毛小鼠的皮肤时,在相同条件下MDI 301基本上不刺激[Varani等。 (2003)Arch。 Dermatol Res 295:255–262]。结合过去的研究结果,目前的数据表明,MDI 301在修复受损皮肤的能力上与RA相似,但在无刺激性的情况下会有效。因此,这些发现表明类维生素A功效和临床相关刺激性没有密不可分的联系。在未观察到刺激的条件下产生疗效的潜力是进一步开发MDI 301作为皮肤修复剂的强烈理由。

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