Self-Delivering RNAi Compounds for Reduction of Hyperpigmentation.

IF 1.9 4区 医学 Q3 DERMATOLOGY Clinical, Cosmetic and Investigational Dermatology Pub Date : 2024-12-27 eCollection Date: 2024-01-01 DOI:10.2147/CCID.S498987
Melissa Maxwell, Katherine Holton, Richard J Looby, Michael Byrne, James Cardia
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Abstract

Purpose: Abnormal melanin synthesis causes hyperpigmentation disorders like melasma and lentigines, impacting psychological well-being. RNA interference (RNAi) uses small RNA molecules to inhibit gene expression by targeting specific mRNA, silencing genes involved in undesirable cellular functions. This study assessed INTASYL compounds, self-delivering RNAi molecules, designed to target and reduce tyrosinase gene expression to decrease pigmentation.

Methods: 36 INTASYL compounds were designed to target and reduce TYR gene expression and tested in a screening assay. RXI-231, the lead compound, was tested in normal human epithelial melanocytes and the MelanoDerm™ model, a 3D reconstituted human epidermal culture. RXI-231 was evaluated for its ability to reduce tyrosinase mRNA expression, in vitro dopachrome formation, and melanin content. Penetration of fluorescently labeled INTASYL compounds through the stratum corneum into the epidermis was tested in cultured porcine skin explants using a DermaPen® microneedle device and a proprietary mixture of penetration enhancers. RXI-231 was also tested for skin irritation in the MatTek EpiDerm™ model to determine its non-irritant profile.

Results: RXI-231 significantly reduced tyrosinase mRNA expression, dopachrome formation, and melanin content in both normal human melanocytes and the MelanoDerm model. Application of INTASYL compounds every other day visibly reduced pigmentation in the 3D epidermal cultures. Penetration studies showed efficient delivery into the epidermis, overcoming the stratum corneum barrier. RXI-231 showed no irritation, with viability above 50% in the MatTek EpiDerm model, confirming its non-irritant profile.

Conclusion: RXI-231 effectively reduced tyrosinase activity and melanin synthesis, showing promise for treating hyperpigmentation disorders. Further characterization and planned human patient testing are necessary to confirm its clinical potential patient.

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减少色素沉着的自传递RNAi化合物。
目的:黑色素合成异常导致黄褐斑、色素体等色素沉着异常,影响心理健康。RNA干扰(RNAi)利用小RNA分子通过靶向特定mRNA来抑制基因表达,沉默参与不良细胞功能的基因。本研究评估了INTASYL化合物,一种自我递送的RNAi分子,旨在靶向和减少酪氨酸酶基因表达以减少色素沉着。方法:设计36种INTASYL化合物,以靶向和降低TYR基因的表达,并进行筛选试验。先导化合物RXI-231在正常人上皮黑色素细胞和黑色素真皮(一种3D重建的人表皮培养物)模型中进行了测试。RXI-231降低酪氨酸酶mRNA表达、体外多巴胺形成和黑色素含量的能力。使用DermaPen®微针装置和专有的渗透增强剂混合物,在培养的猪皮肤外植体中测试了荧光标记的INTASYL化合物通过角质层进入表皮的渗透。RXI-231还在MatTek表皮™模型中进行了皮肤刺激性测试,以确定其无刺激性特征。结果:RXI-231显著降低正常人黑素细胞和黑素真皮模型中酪氨酸酶mRNA表达、多巴胺形成和黑色素含量。每隔一天应用INTASYL化合物可明显减少3D表皮培养中的色素沉着。渗透研究表明,有效的递送到表皮,克服角质层屏障。RXI-231无刺激性,在MatTek表皮模型中生存力超过50%,证实其无刺激性。结论:RXI-231有效降低酪氨酸酶活性和黑色素合成,有望治疗色素沉着症。进一步的表征和计划的人体患者试验是必要的,以确认其临床潜力的病人。
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来源期刊
CiteScore
2.80
自引率
4.30%
发文量
353
审稿时长
16 weeks
期刊介绍: Clinical, Cosmetic and Investigational Dermatology is an international, peer-reviewed, open access journal that focuses on the latest clinical and experimental research in all aspects of skin disease and cosmetic interventions. Normal and pathological processes in skin development and aging, their modification and treatment, as well as basic research into histology of dermal and dermal structures that provide clinical insights and potential treatment options are key topics for the journal. Patient satisfaction, preference, quality of life, compliance, persistence and their role in developing new management options to optimize outcomes for target conditions constitute major areas of interest. The journal is characterized by the rapid reporting of clinical studies, reviews and original research in skin research and skin care. All areas of dermatology will be covered; contributions will be welcomed from all clinicians and basic science researchers globally.
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