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儿童获得性再生障碍性贫血的端粒长度与基因变异:韩国患者的流式荧光原位杂交研究

Telomere Length and Genetic Variations in Acquired Pediatric Aplastic Anemia: A Flow-FISH Study in Korean Patients.

作者信息

Hong Yuna, Lee Jong-Mi, Lee Chaeyeon, Na Duyeon, Jung Jin, Ahn Ari, Yoo Jae Won, Lee Jae Wook, Chung Nack-Gyun, Kim Myungshin, Kim Yonggoo

机构信息

Catholic Genetic Laboratory Center, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.

Department of Medical Sciences, Graduate School of The Catholic University of Korea, Seoul 06591, Republic of Korea.

出版信息

Diagnostics (Basel). 2025 Apr 4;15(7):931. doi: 10.3390/diagnostics15070931.

Abstract

: Aplastic anemia (AA) is a rare bone marrow failure syndrome characterized by notably short telomere length, which is associated with treatment responses. In this study, we measured telomere lengths in Korean pediatric AA patients using flow-fluorescence in situ hybridization (Flow-FISH) and explored their shortening in relation to disease characteristics, genetic conditions and patient outcomes. : We analyzed peripheral blood samples from 75 AA patients and 101 healthy controls. Telomere lengths were measured using Flow-FISH, and relative telomere length (RTL) and delta RTL assessments were conducted. Genetic evaluations included karyotyping, chromosome breakage tests and clinical exome sequencing (CES) to identify inherited bone marrow failure syndrome (IBMFS)-associated genetic variants. : Telomere lengths in AA patients were significantly lower than those of age-adjusted healthy controls. Patients receiving immunosuppressive therapy tended to have long telomeres, as indicated by high delta RTL values. Patients with genetic abnormalities, including karyotype abnormalities ( = 2) and genetic variants ( = 11) such as carrier genes of IBMFS or variants of unclear significance, showed significantly short telomere lengths. : This study reinforces the importance of telomere length as a biomarker in acquired AA. Utilizing Flow-FISH, we were able to accurately measure telomere lengths and establish confidence in this method as an appropriate laboratory test. We found significant reduction in telomere lengths in AA patients, and importantly, longer telomeres were correlated with better outcomes in immunosuppressive therapy. Additionally, our genetic analysis underscored the relevance of variants in IBMFS-associated genes to the pathophysiology of short telomeres.

摘要

再生障碍性贫血(AA)是一种罕见的骨髓衰竭综合征,其特征是端粒长度显著缩短,这与治疗反应相关。在本研究中,我们使用流式荧光原位杂交(Flow-FISH)测量了韩国儿童AA患者的端粒长度,并探讨了其缩短与疾病特征、遗传状况和患者预后的关系。

我们分析了75例AA患者和101例健康对照的外周血样本。使用Flow-FISH测量端粒长度,并进行相对端粒长度(RTL)和ΔRTL评估。基因评估包括核型分析、染色体断裂试验和临床外显子测序(CES),以鉴定遗传性骨髓衰竭综合征(IBMFS)相关的基因变异。

AA患者的端粒长度显著低于年龄匹配的健康对照。接受免疫抑制治疗的患者端粒往往较长,ΔRTL值较高表明了这一点。具有遗传异常(包括核型异常(=2)和基因变异(=11),如IBMFS的携带基因或意义不明的变异)的患者端粒长度显著缩短。

本研究强化了端粒长度作为获得性AA生物标志物的重要性。利用Flow-FISH,我们能够准确测量端粒长度,并对该方法作为一种合适的实验室检测建立信心。我们发现AA患者的端粒长度显著缩短,重要的是,较长的端粒与免疫抑制治疗的更好预后相关。此外,我们的基因分析强调了IBMFS相关基因变异与短端粒病理生理学的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e780/11988933/ff71d6bae6eb/diagnostics-15-00931-g001.jpg

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