山东大学学报 (医学版) ›› 2021, Vol. 59 ›› Issue (11): 35-40.doi: 10.6040/j.issn.1671-7554.0.2021.0791
曾睿1,2,胡欣婷1,2,云晓雅1,2,田筝1,2,李青1,刘杰1,张娅1,2,王欣1,2
ZENG Rui1,2, HU Xinting1,2, YUN Xiaoya1,2, TIAN Zheng1,2, LI Qing1, LIU Jie1, ZHANG Ya1,2, WANG Xin1,2
摘要: 目的 探讨荧光原位杂交技术(FISH)在慢性淋巴细胞白血病(CLL)诊断与预后评估中的应用,指导CLL患者的精准个体化诊疗。 方法 对2014年1月至2021年1月收治的197例CLL患者采用 RB1(13q14.1)、D13S25(13q14.3)、p53(17p13.1)、ATM(11q22.3)及CSP12(+12)5组基因探针进行FISH检测,对其中62例进行染色体核型分析、75例进行免疫球蛋白重链可变区(IGHV)突变状态检测,分析FISH检测细胞遗传学改变在CLL中的临床意义。 结果 197例初诊CLL患者分子遗传学标志物异常总检出率为56.4%(111/197),其中D13S25(13q14.3)占63.1%(70/111)、RB1(13q14.1)占43.2%(48/111)、p53(17p13.1)占29.7%(33/111)、ATM(11q22.3)占22.5%(25/111)、CSP12(+12)占13.5%(15/111)。同时伴有2种染色体异常患者占34.2%(38/111),其中RB1与D13S25双阳性患者占25.2%(28/111)。同时伴有3种及3种以上染色体异常患者占16.2%(18/111)。相比于CLL患者的染色体核型分析结果,FISH 检测阳性率相对较高(P<0.001)。另外,FISH检测结果与CLL国际预后指数(CLL-IPI)有关。FISH检测阳性CLL患者中CLL-IPI评分为高危/极高危的比例高于FISH检测阴性患者(P=0.009)。FISH-p53阳性CLL患者的CLL-IPI评分均为高危/极高危(P<0.001)。FISH阳性患者中IGHV基因突变者占78%,未突变者占22%。 结论 FISH技术是一种敏感的CLL分子遗传学检测手段,对CLL患者的预后评估和治疗均有重要的指导意义。
中图分类号:
[1] 中华医学会血液学分会, 中国抗癌协会血液肿瘤专业委员会. 中国慢性淋巴细胞白血病/小淋巴细胞淋巴瘤的诊断与治疗指南(2015年版)[J]. 中华血液学杂志, 2015, 36(10): 809-813. [2] 中华医学会血液学分会白血病淋巴瘤学组, 中国抗癌协会血液肿瘤专业委员会中国慢性淋巴细胞白血病工作组. 中国慢性淋巴细胞白血病/小淋巴细胞淋巴瘤的诊断与治疗指南(2018年版)[J]. 中华血液学杂志, 2018, 39(5): 353-358. [3] Yun XY, Zhang Y, Wang X. Recent progress of prognostic biomarkers and risk scoring systems in chronic lymphocytic leukemia [J]. Biomark Res, 2020, 8: 40. doi: 10.1186/s40364-020-00222-3. eCollection 2020. [4] Yang S, Varghese AM, Sood N, et al. Ethnic and geographic diversity of chronic lymphocytic leukaemia [J]. Leukemia, 2021, 35(2): 433-439. [5] Yang S, Gale RP, Shi H, et al. Is there an epidemic of chronic lymphocytic leukemia(CLL)in China [J]. Leuk Res, 2018, 73:16-20. doi: 10.1016/j.leukres.2018.08.011. [6] Pérez-Carretero C, González-Gascón-Y-Marín I, Rodríguez-Vicente AE, et al. The evolving landscape of chronic lymphocytic leukemia on diagnosis, prognosis and treatment [J]. Diagnostics(Basel), 2021, 11(5): 853. doi: 10.3390/diagnostics11050853. [7] Suzuki R. Molecular pathogenesis and treatment of chronic lymphocytic leukemia [J]. Rinsho Ketsueki,2021, 62(8):1085-1093. [8] Delgado J, Nadeu F, Colomer D, et al. Chronic lymphocytic leukemia: from molecular pathogenesis to novel therapeutic strategies [J]. Haematologica, 2020, 105(9): 2205-2217. doi: 10.3324/haematol.2019.236000. [9] 荆源, 林樉, 王芳婷, 等. 荧光原位杂交技术检测43例慢性淋巴细胞白血病患者基因异常[J]. 中国实验血液学杂志, 2018, 26(4): 1038-1043. [10] 张海英, 杨艳丽, 赵强, 等. 荧光原位杂交技术检测慢性淋巴细胞白血病分子遗传学异常[J]. 中国实验血液学杂志, 2020, 28(5): 1474-1479. [11] Baliakas P, Jeromin S, Iskas M, et al. Cytogenetic complexity in chronic lymphocytic leukemia: definitions, associations, and clinical impact [J]. Blood, 2019, 133(11): 1205-1216. [12] Leeksma AC, Baliakas P, Moysiadis T, et al. Genomic arrays identify high-risk chronic lymphocytic leukemia with genomic complexity: a multicenter study [J]. Haematologica, 2021, 106(1): 87-97. [13] Tari K, Shamsi Z, Reza Ghafari H, et al. The role of the genetic abnormalities, epigenetic and microRNA in the prognosis of chronic lymphocytic leukemia [J]. Exp Oncol, 2018, 40(4): 261-267. [14] Stefaniuk P, Onyszczuk J, Szymczyk A, et al. Therapeutic options for patients with TP53 deficient chronic lymphocytic leukemia: narrative review [J]. Cancer Manag Res, 2021, 13: 1459-1476. doi: 10.2147/CMAR.S283903. [15] Yuan YY, Zhu HY, Wu JZ, et al. The percentage of cells with 17p deletion and the size of 17p deletion subclones show prognostic significance in chronic lymphocytic leukemia [J]. Genes Chromosomes Cancer, 2019, 58(1): 43-51. [16] 王婷玉, 易树华, 王轶, 等. 氟达拉滨和环磷酰胺联合利妥昔单抗(FCR方案)一线治疗慢性淋巴细胞白血病43例临床分析[J]. 中华血液学杂志, 2021, 42(7): 543-548. [17] Chauzeix J, Pastoret C, Donaty L, et al. A reduced panel of eight genes(ATM, SF3B1, NOTCH1, BIRC3, XPO1, MYD88, TNFAIP3, and TP53)as an estimator of the tumor mutational burden in chronic lymphocytic leukemia [J]. Int J Lab Hematol, 2021, 43(4): 683-692. [18] Zou YX, Tang HN, Zhang J, et al. Low prevalence and independent prognostic role of del(11q)in Chinese patients with chronic lymphocytic leukemia [J]. Transl Oncol, 2021, 14(10): 101176. doi: 10.1016/j.tranon.2021.101176. [19] Aitken MJL, Lee HJ, Post SM, et al. Emerging treatment options for patients with p53-pathway-deficient CLL [J]. Ther Adv Hematol, 2019, 10: 2040620719891356. doi: 10.1177/2040620719891356. [20] Bagacean C, Tempescul A, Ternant D, et al. 17p deletion strongly influences rituximab elimination in chronic lymphocytic leukemia [J]. J Immunother Cancer, 2019, 7(1):22. doi: 10.1186/s40425-019-0509-0. [21] Horna P, Pearce KE, Ketterling RP, et al. Recurrent chromosomal abnormalities in tissues involved by chronic lymphocytic leukemia/small lymphocytic lymphoma [J]. Am J Clin Pathol, 2021, aqab128. doi: 10.1093/ajcp/aqab128. [22] Srinivasan VK, Naseem S, Varma N, et al. Genomic alterations in chronic lymphocytic leukemia and their correlation with clinico-hematological parameters and disease progression [J]. Blood Res, 2020, 55(3): 131-138. [23] 吕瑞, 李增军, 李姮, 等. FISH检测12号染色体三体阳性慢性淋巴细胞白血病70例临床分析[J]. 中华血液学杂志, 2018, 39(5): 387-391. [24] Tsagiopoulou M, Chapaprieta V, Duran-Ferrer M, et al. Chronic lymphocytic leukemias with trisomy 12 show a distinct DNA methylation profile linked to altered chromatin activation [J]. Haematologica, 2020, 105(12): 2864-2867. [25] Wang Y, Achenbach SJ, Rabe KG, et al. Cause of death in patients with newly diagnosed chronic lymphocytic leukemia(CLL)stratified by the CLL-International Prognostic Index [J]. Blood Cancer J, 2021, 11(8): 140. doi: 10.1038/s41408-021-00532-1. [26] Skórka K, Chojnacki M, Masternak M, et al. The predominant prognostic significance of NOTCH1 Mutation Defined by Emulsion PCR in Chronic Lymphocytic Leukemia [J]. Cancer Manag Res, 2021, 13: 3663-3674. doi: 10.2147/CMAR.S302245. eCollection 2021. [27] Shetty D, Jain H, Rohil Y, et al. Role of cytogenetic abnormalities detected by fluorescence in situ hybridization as a prognostic marker: Pathogenesis & clinical course in patients with B-chronic lymphocytic leukaemia [J]. Indian J Med Res, 2021, 153(4): 475-483. [28] Rozovski U, Keating MJ, Estrov Z. Why is the immunoglobulin heavy chain gene mutation status a prognostic Indicator in chronic lymphocytic leukemia [J]. Acta Haematol, 2018, 140(1):51-54. [29] Bagnara D, Tang C, Brown JR, et al. Post-transformation IGHV-IGHD-IGHJ mutations in chronic lymphocytic leukemia B cells: implications for mutational mechanisms and impact on clinical course [J]. Front Oncol, 2021, 11: 640731. doi: 10.3389/fonc.2021.640731. eCollection 2021. [30] Basabaeen AA, Abdelgader EA, BaHashwan OS, et al. Combined analysis of ZAP-70 and CD38 expression in sudanese patients with B-cell chronic lymphocytic leukemia [J]. BMC Res Notes, 2019, 12(1): 282. doi: 10.1186/s13104-019-4319-8. [31] Hu B, Patel KP, Chen HC, et al. Association of gene mutations with time-to-first treatment in 384 treatment-naive chronic lymphocytic leukaemia patients [J]. Br J Haematol, 2019, 187(3): 307-318. [32] Monti P, Lionetti M, De Luca G, et al. Time to first treatment and P53 dysfunction in chronic lymphocytic leukaemia: results of the O-CLL1 study in early stage patients [J]. Sci Rep, 2020, 10(1):18427. doi: 10.1038/s41598-020-75364-3. |
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