[New concepts in multiple myeloma by returning to cytogenetics].

Taku Tsukamoto
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Abstract

Multiple myeloma (MM) is characterized by genomic instability, which causes multiple genetic and chromosomal alterations and leads to disease progression and therapeutic resistance. Overlapping mechanisms, including defective genome repair machinery such as the loss of TP53 activity, as well as chromosomal segregation error represented by the abnormality of mitotic checkpoint kinases such as BUB1, cell cycle dysregulation, and tumor environment, cause structural and numerical chromosomal abnormalities. Cytogenetic abnormalities are important prognostic factors, and they are also linked to the use of proteasome inhibitors, immunomodulatory drugs, monoclonal antibodies, and the BCL2 inhibitor venetoclax. We developed new diagnostic modalities for chromosomal analysis to improve the sensitivity and convenience of chromosomal diagnosis. The immunophenotyped-suspension-multiplex (ISM)-fluorescence in situ hybridization (FISH) can use imaging flow to examine three IGH-related chromosomal translocations at the same time. We also created a new FISH method called amplified FISH (amFISH) to detect microdeletion involving narrow chromosomal regions (approximately<100 kb), such as the microdeletions of 1p32 (CDKN2C) or of 14q32 (TRAF3), by using a fluorescent antibody to amplify the signals of small probes. Even in the era of clinical sequencing, these convenient modalities may hasten the cytogenetics-oriented therapeutic approach for MM.

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[从细胞遗传学角度探讨多发性骨髓瘤的新概念]。
多发性骨髓瘤(MM)的特点是基因组不稳定,导致多种遗传和染色体改变,并导致疾病进展和治疗耐药性。重叠机制,包括有缺陷的基因组修复机制,如TP53活性的丧失,以及以有丝分裂检查点激酶(如BUB1)异常、细胞周期失调和肿瘤环境为代表的染色体分离错误,导致染色体结构和数量异常。细胞遗传学异常是重要的预后因素,它们也与蛋白酶体抑制剂、免疫调节药物、单克隆抗体和BCL2抑制剂venetoclax的使用有关。我们开发了新的染色体分析诊断方法,以提高染色体诊断的敏感性和便利性。免疫表型-悬浮-多重(ISM)-荧光原位杂交(FISH)可以利用成像流同时检测3个与igh相关的染色体易位。我们还创建了一种新的FISH方法,称为扩增FISH (amFISH),用于检测涉及狭窄染色体区域的微缺失
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