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模拟太阳紫外线照射对0.1%维甲酸凝胶微球和0.025%维甲酸凝胶中维甲酸的影响。

The effect of simulated solar UV irradiation on tretinoin in tretinoin gel microsphere 0.1% and tretinoin gel 0.025%.

作者信息

Nighland Marge, Yusuf Mohammed, Wisniewski Stephen, Huddleston Kate, Nyirady Judit

机构信息

Johnson & Johnson Consumer and Personal Products Worldwide, Skillman, NJ 08558-9418, USA.

出版信息

Cutis. 2006 May;77(5):313-6.

PMID:16776288
Abstract

Topical tretinoin is highly effective and widely used in the treatment of acne vulgaris. Tretinoin gel microsphere 0.1% (TGM)--alone or in combination with erythromycin-benzoyl peroxide (EBP) or clindamycin-benzoyl peroxide (CBP) topical gels-and tretinoin gel 0.025% (TG)--alone or, combined with EBP-were exposed to simulated solar UV irradiation to determine the degree of tretinoin photodegradation/isomerization. The investigation revealed that 94% and 84% of the initial tretinoin in the TGM formulation remained stable after 2 and 6 hours, respectively, of simulated solar UV irradiation. When combined with EBP topical gel, 89% and 81% of the initial tretinoin remained stable after 2 and 6 hours, respectively, of exposure to simulated solar UV irradiation; 86% and 80% of the tretinoin remained stable after 2 and 6 hours, respectively, when combined with CBP topical gel. In contrast, only 19% and 10% of the tretinoin remained unchanged after 2 and 6 hours, respectively, of simulated solar UV irradiation of TG. Combined with the EBP topical gel, undegraded tretinoin quantities were further reduced to 7% and 0% at 2 and 6 hours, respectively, with TG. These data suggest that the TGM formulation offers marked protection against tretinoin photodegradation compared with TG, even in the presence of a topical gel containing a potent antibiotic or a strong oxidizing agent. Although simulated solar UV irradiation is not entirely reflective of actual conditions, the results appear to be substantial.

摘要

外用维甲酸在寻常痤疮的治疗中疗效显著且应用广泛。0.1%维甲酸凝胶微球(TGM)——单独使用或与红霉素 - 过氧化苯甲酰(EBP)或克林霉素 - 过氧化苯甲酰(CBP)外用凝胶联合使用——以及0.025%维甲酸凝胶(TG)——单独使用或与EBP联合使用——接受模拟太阳紫外线照射,以确定维甲酸的光降解/异构化程度。研究发现,在模拟太阳紫外线照射2小时和6小时后,TGM制剂中分别有94%和84%的初始维甲酸保持稳定。与EBP外用凝胶联合使用时,在模拟太阳紫外线照射2小时和6小时后,分别有89%和81%的初始维甲酸保持稳定;与CBP外用凝胶联合使用时,在照射2小时和6小时后,分别有86%和80%的维甲酸保持稳定。相比之下,在模拟太阳紫外线照射TG 2小时和6小时后,分别只有19%和10%的维甲酸保持不变。与EBP外用凝胶联合使用时,TG在照射2小时和6小时后未降解的维甲酸量分别进一步降至7%和0%。这些数据表明,与TG相比,TGM制剂能显著保护维甲酸免受光降解,即使在存在含有强效抗生素或强氧化剂的外用凝胶的情况下也是如此。尽管模拟太阳紫外线照射并不完全反映实际情况,但结果似乎很可观。

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