局部GZ21T在uvb诱导的皮肤癌变模型中抑制光化性角化病的生长

Zachary A. Bordeaux , Justin Choi , Gabriella Braun , Cole Davis , Melika Marani , Kevin Lee , Christeen Samuel , Jackson Adams , Reed Windom , Anthony Pollizzi , Anusha Kambala , Hannah Cornman , Sriya V. Reddy , Weiying Lu , Olusola O. Oladipo , Martin P. Alphonse , Cameron E. West , Shawn G. Kwatra , Madan M. Kwatra
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引用次数: 0

摘要

光化性角化病(AKs)是由于日晒损伤而发生的恶性前表皮内肿瘤。AKs通常会复发,高达16%会恶性转化为皮肤鳞状细胞癌。需要新的治疗方法来减少AKs的数量和表面积,并防止恶性转化为皮肤鳞状细胞癌。我们最近发现,由姜黄素、哈拉胺和异香兰素组成的抗癌剂GZ17-6.02可以抑制H297的生长。T细胞。本研究评估了GZ17-6.02外用制剂GZ21T对暴露于UVR的SKH1小鼠产生的AK小鼠模型的疗效。GZ21T局部处理小鼠可通过降低病变数(P = 0.012)和肿瘤面积(P = 0.002)抑制AKs的生长。GZ21T还通过减少更可能代表皮肤鳞状细胞癌的病变的计数(P = 0.047)和表面积(P = 0.049)来抑制AKs向皮肤鳞状细胞癌的进展。RNA测序和蛋白质组学分析显示,GZ21T抑制MAPK (P = 0.025)、磷酸肌肽3-激酶-蛋白激酶B (P = 0.04)、HIF-1α (P = 0.016)、Wnt (P = 0.025)、胰岛素(P = 0.018)和ERBB (P = 0.016)信号通路。GZ21T还上调自噬促进蛋白AMPK,同时抑制PD-L1、谷氨酰胺酶、pAkt1 S473和eEF2K等蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Topical GZ21T Inhibits the Growth of Actinic Keratoses in a UVB-Induced Model of Skin Carcinogenesis

Actinic keratoses (AKs) are premalignant intraepidermal neoplasms that occur as a result of cumulative sun damage. AKs commonly relapse, and up to 16% undergo malignant transformation into cutaneous squamous cell carcinoma. There is a need for novel therapies that reduce the quantity and surface area of AKs as well as prevent malignant transformation to cutaneous squamous cell carcinomas. We recently showed that GZ17-6.02, an anticancer agent composed of curcumin, haramine, and isovanillin, inhibited the growth of H297.T cells. This study evaluated the efficacy of a topical formulation of GZ17-6.02, known as GZ21T, in a murine model of AK generated by exposing SKH1 mice to UVR. Treatment of mice with topical GZ21T inhibited the growth of AKs by decreasing both lesion count (P = 0.012) and surface area occupied by tumor (P = 0.002). GZ21T also suppressed the progression of AKs to cutaneous squamous cell carcinoma by decreasing the count (P = 0.047) and surface area (P = 0.049) of lesions more likely to represent cutaneous squamous cell carcinoma. RNA sequencing and proteomic analyses revealed that GZ21T suppressed several pathways, including MAPK (P = 0.025), phosphoinositide 3-kinase–protein kinase B (P = 0.04), HIF-1α (P = 0.016), Wnt (P = 0.025), insulin (P = 0.018), and ERBB (P = 0.016) signaling. GZ21T also upregulated the autophagy-promoting protein AMPK while suppressing proteins such as PD-L1, glutaminase, pAkt1 S473, and eEF2K.

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