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Review Biomarker research. 2024 Sep 4;12(1):99. doi: 10.1186/s40364-024-00618-5 Q111.52024

Gene therapy for polygenic or complex diseases

多基因或复杂疾病的基因治疗 翻译改进

Tingting Wu  1  2, Yu Hu  3  4, Liang V Tang  5  6

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作者单位

  • 1 Institute of Hematology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
  • 2 Key Laboratory of Biological Targeted Therapies of the Chinese Ministry of Education, Wuhan, China.
  • 3 Institute of Hematology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China. dr_huyu@126.com.
  • 4 Key Laboratory of Biological Targeted Therapies of the Chinese Ministry of Education, Wuhan, China. dr_huyu@126.com.
  • 5 Institute of Hematology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China. lancet.tang@qq.com.
  • 6 Key Laboratory of Biological Targeted Therapies of the Chinese Ministry of Education, Wuhan, China. lancet.tang@qq.com.
  • DOI: 10.1186/s40364-024-00618-5 PMID: 39232780

    摘要 中英对照阅读

    Gene therapy utilizes nucleic acid drugs to treat diseases, encompassing gene supplementation, gene replacement, gene silencing, and gene editing. It represents a distinct therapeutic approach from traditional medications and introduces novel strategies for genetic disorders. Over the past two decades, significant advancements have been made in the field of gene therapy, leading to the approval of various gene therapy drugs. Gene therapy was initially employed for treating genetic diseases and cancers, particularly monogenic conditions classified as orphan diseases due to their low prevalence rates; however, polygenic or complex diseases exhibit higher incidence rates within populations. Extensive research on the etiology of polygenic diseases has unveiled new therapeutic targets that offer fresh opportunities for their treatment. Building upon the progress achieved in gene therapy for monogenic diseases and cancers, extending its application to polygenic or complex diseases would enable targeting a broader range of patient populations. This review aims to discuss the strategies of gene therapy, methods of gene editing (mainly CRISPR-CAS9), and carriers utilized in gene therapy, and highlight the applications of gene therapy in polygenic or complex diseases focused on applications that have either entered clinical stages or are currently undergoing clinical trials.

    Keywords: CRISPR-CAS9; Complex diseases; Gene therapy; Polygenic diseases.

    Keywords:gene therapy; polygenic diseases; complex diseases

    基因治疗利用核酸药物来治疗疾病,包括基因补充、基因替换、基因沉默和基因编辑。它代表了与传统药物不同的治疗方法,并为遗传性疾病引入了新的策略。在过去二十年中,基因治疗领域取得了重大进展,导致多种基因治疗药物获得批准。最初,基因治疗被用于治疗遗传病和癌症,尤其是那些由于低发病率而被认为是孤儿疾病的单基因疾病;然而,多基因或复杂疾病在人群中的发病率较高。对多基因疾病病因的研究揭示了新的治疗靶点,为这些疾病的治疗提供了新的机会。在此基础上,将单基因疾病和癌症的基因治疗方法扩展到多基因或复杂疾病的应用中,可以针对更广泛的患者群体进行治疗。本文旨在讨论基因治疗的策略、基因编辑方法(主要是CRISPR-CAS9)以及在基因治疗中使用的载体,并突出基因治疗在多基因或复杂疾病中的应用,重点关注已进入临床阶段或正在接受临床试验的应用。

    关键词: CRISPR-CAS9;复杂疾病;基因治疗;多基因疾病。

    © 2024. The Author(s).

    关键词:基因治疗; 多基因疾病; 复杂疾病

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    期刊名:Biomarker research

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    ISSN:N/A

    e-ISSN:2050-7771

    IF/分区:11.5/Q1

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