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Genetic, epigenetic, and lineage-directed mechanisms in benzene-induced malignancies and hematotoxicity targeting hematopoietic stem cells niche

机译:苯诱导的恶性肿瘤和血液毒性靶向血管生成干细胞的遗传,表观遗传和谱系导向机制

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摘要

Benzene is a known hematotoxic and leukemogenic agent with hematopoietic stem cells (HSCs) niche being the potential target. Occupational and environmental exposure to benzene has been linked to the incidences of hematological disorders and malignancies. Previous studies have shown that benzene may act via multiple modes of action targeting HSCs niche, which include induction of chromosomal and micro RNA aberrations, leading to genetic and epigenetic modification of stem cells and probable carcinogenesis. However, understanding the mechanism linking benzene to the HSCs niche dysregulation is challenging due to complexity of its microenvironment. The niche is known to comprise of cell populations accounted for HSCs and their committed progenitors of lymphoid, erythroid, and myeloid lineages. Thus, it is fundamental to address novel approaches via lineage-directed strategy to elucidate precise mechanism involved in benzene-induced toxicity targeting HSCs and progenitors of different lineages. Here, we review the key genetic and epigenetic factors that mediate hematotoxicological effects by benzene and its metabolites in targeting HSCs niche. Overall, the use of combined genetic, epigenetic, and lineage-directed strategies targeting the HSCs niche is fundamental to uncover the key mechanisms in benzene-induced hematological disorders and malignancies.
机译:苯是一种已知的血液毒性和白血病药,具有造血干细胞(HSCs)Niche是潜在的靶标。职业和环境暴露于苯的与血液学疾病和恶性肿瘤的发生相关联。以前的研究表明,苯可以通过靶向HSCS Niche的多种作用方式起作用,其包括染色体和微RNA像差的诱导,导致干细胞和可能致癌的遗传和表观遗传改性。然而,了解将苯与HSCS的机制与HSCs的机制相对于其微环境的复杂性具有挑战性。已知利基地包含占HSC的细胞群及其诱因的淋巴,红细胞和髓样谱系。因此,通过谱系导向的策略解决新颖方法是基本的,以阐明含有苯诱导的毒性的精确机制靶向不同谱系的HSC和祖细胞。在这里,我们审查了苯并毒理学作用的关键遗传和表观因子,苯并靶向HSCS Niche的代谢物。总体而言,靶向HSCS Niche的联合遗传,表观遗传和谱系导向策略的使用是揭开苯诱导的血液学疾病和恶性肿瘤的关键机制的基础。

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