OSUMMER系:一系列与C57BL/6同源的紫外加速nras突变小鼠黑色素瘤细胞系

IF 3.9 3区 医学 Q2 CELL BIOLOGY Pigment Cell & Melanoma Research Pub Date : 2023-06-21 DOI:10.1111/pcmr.13107
Brandon M. Murphy, Daelin M. Jensen, Tiffany E. Arnold, Renan Aguilar-Valenzuela, Jase Hughes, Valentina Posada, Kimberly T. Nguyen, Vi T. Chu, Kenneth Y. Tsai, Craig J. Burd, Christin E. Burd
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引用次数: 0

摘要

越来越多的癌症亚型采用一线免疫疗法治疗。然而,克服原发性和获得性耐药性的方法仍然有限。临床前小鼠模型常用于研究耐药机制、新药物组合和给药方法;然而,大多数这些模型缺乏在人类肿瘤中观察到的遗传多样性和突变模式。在这里,我们描述了一系列13个C57BL/6J黑色素瘤细胞系,以解决该领域的这一空白。俄亥俄州立大学moffitt黑色素瘤暴露于辐射(OSUMMER)细胞系来源于表达内源性,黑色素细胞特异性和临床相关的Nras驱动突变(Q61R, Q61K或Q61L)的小鼠。将这些动物暴露于单一、非燃烧剂量的紫外线B会加速自发黑色素瘤的发生,其突变模式类似于人类疾病。此外,体内辐照选择了有效的肿瘤抗原,这可以阻止同基因细胞转移的生长。每个OSUMMER细胞系都具有不同的体外生长特性、曲美替尼敏感性、突变特征和预测抗原性。对OSUMMER同种异体移植物的分析显示,预测的强抗原性与肿瘤生长不良之间存在相关性。这些数据表明,OSUMMER细胞系将成为模拟人类黑色素瘤对靶向和免疫治疗的异质反应的有价值的工具。
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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The OSUMMER lines: A series of ultraviolet-accelerated NRAS-mutant mouse melanoma cell lines syngeneic to C57BL/6

An increasing number of cancer subtypes are treated with front-line immunotherapy. However, approaches to overcome primary and acquired resistance remain limited. Preclinical mouse models are often used to investigate resistance mechanisms, novel drug combinations, and delivery methods; yet most of these models lack the genetic diversity and mutational patterns observed in human tumors. Here we describe a series of 13 C57BL/6J melanoma cell lines to address this gap in the field. The Ohio State University-Moffitt Melanoma Exposed to Radiation (OSUMMER) cell lines are derived from mice expressing endogenous, melanocyte-specific, and clinically relevant Nras driver mutations (Q61R, Q61K, or Q61L). Exposure of these animals to a single, non-burning dose of ultraviolet B accelerates the onset of spontaneous melanomas with mutational patterns akin to human disease. Furthermore, in vivo irradiation selects against potent tumor antigens, which could prevent the outgrowth of syngeneic cell transfers. Each OSUMMER cell line possesses distinct in vitro growth properties, trametinib sensitivity, mutational signatures, and predicted antigenicity. Analysis of OSUMMER allografts shows a correlation between strong, predicted antigenicity and poor tumor outgrowth. These data suggest that the OSUMMER lines will be a valuable tool for modeling the heterogeneous responses of human melanomas to targeted and immune-based therapies.

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来源期刊
Pigment Cell & Melanoma Research
Pigment Cell & Melanoma Research 医学-皮肤病学
CiteScore
8.90
自引率
2.30%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Pigment Cell & Melanoma Researchpublishes manuscripts on all aspects of pigment cells including development, cell and molecular biology, genetics, diseases of pigment cells including melanoma. Papers that provide insights into the causes and progression of melanoma including the process of metastasis and invasion, proliferation, senescence, apoptosis or gene regulation are especially welcome, as are papers that use the melanocyte system to answer questions of general biological relevance. Papers that are purely descriptive or make only minor advances to our knowledge of pigment cells or melanoma in particular are not suitable for this journal. Keywords Pigment Cell & Melanoma Research, cell biology, melatonin, biochemistry, chemistry, comparative biology, dermatology, developmental biology, genetics, hormones, intracellular signalling, melanoma, molecular biology, ocular and extracutaneous melanin, pharmacology, photobiology, physics, pigmentary disorders
期刊最新文献
The Lipid Droplet Protein DHRS3 Is a Regulator of Melanoma Cell State. UVA Irradiation Promotes Melanoma Cell Proliferation Mediated by OPN3 Independently of ROS Production. Issue Information Bay 11-7082, an NF-κB Inhibitor, Prevents Post-Inflammatory Hyperpigmentation Through Inhibition of Inflammation and Melanogenesis. Low-Dose Baricitinib Plus Narrow-Band Ultraviolet B for the Treatment of Progressive Non-Segmental Vitiligo: A Prospective, Controlled, Open-Label Study.
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