Department of Cell Pathology, Faculty of Biotechnology, University of Wroclaw, Joliot-Curie 14a, 50-383 Wroclaw, Poland.
Department of Oncology and Division of Surgical Oncology, Wroclaw Medical University, Plac Hirszfelda 12, 53-413 Wroclaw, Poland.
Cells. 2021 Apr 9;10(4):862. doi: 10.3390/cells10040862.
Hypoxia and elevated extracellular acidification are prevalent features of solid tumors and they are often shown to facilitate cancer progression and drug resistance. In this review, we have compiled recent and most relevant research pertaining to the role of hypoxia and acidification in melanoma growth, invasiveness, and response to therapy. Melanoma represents a highly aggressive and heterogeneous type of skin cancer. Currently employed treatments, including BRAF V600E inhibitors and immune therapy, often are not effective due to a rapidly developing drug resistance. A variety of intracellular mechanisms impeding the treatment were discovered. However, the tumor microenvironment encompassing stromal and immune cells, extracellular matrix, and physicochemical conditions such as oxygen level or acidity, may also influence the therapy effectiveness. Hypoxia and acidification are able to reprogram the metabolism of melanoma cells, enhance their survival and invasiveness, as well as promote the immunosuppressive environment. For this reason, these physicochemical features of the melanoma niche and signaling pathways related to them emerge as potential therapeutic targets.
缺氧和细胞外酸化是实体瘤的普遍特征,它们常被证明有助于癌症的进展和耐药性。在这篇综述中,我们汇集了最近和最相关的研究,涉及缺氧和酸化在黑色素瘤生长、侵袭和对治疗的反应中的作用。黑色素瘤是一种高度侵袭性和异质性的皮肤癌。目前使用的治疗方法,包括 BRAF V600E 抑制剂和免疫疗法,由于耐药性的迅速发展,往往效果不佳。已经发现了许多阻碍治疗的细胞内机制。然而,包括基质和免疫细胞、细胞外基质以及氧水平或酸度等物理化学条件在内的肿瘤微环境也可能影响治疗效果。缺氧和酸化能够重新编程黑色素瘤细胞的代谢,增强其存活和侵袭性,并促进免疫抑制环境。因此,黑色素瘤生态位的这些物理化学特征以及与之相关的信号通路,成为潜在的治疗靶点。