针对 LMAN1-MCFD2 复合物的 RNAi 可促进小鼠的抗凝血功能。

IF 2.3 3区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Journal of Thrombosis and Thrombolysis Pub Date : 2024-12-01 Epub Date: 2024-09-02 DOI:10.1007/s11239-024-03034-6
Siqian Ma, Boyan Liu, Hong Du, Fei Yang, Jingjing Han, Xinqi Huang, Minyang Zhang, Shundong Ji, Miao Jiang
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引用次数: 0

摘要

凝血因子 V(FV)和因子 VIII(FVIII)联合缺乏症是一种罕见的出血性疾病,由凝集素甘露糖结合 1(LMAN1)或多重凝血因子缺乏症 2(MCFD2)基因变异引起。通过抑制 LMAN1-MCFD2 复合物来降低 FVIII 水平可能成为一种新的抗凝方法。我们的目标是通过针对 LMAN1 和 MCFD2 的 RNA 干扰(RNAi)找到一种新的抗凝治疗方法。我们根据 NCBI 中的 LMAN1 或 MCFD2 转录本设计了小鼠和人类之间具有交叉同源性的 siRNA 序列,并用双荧光素酶报告实验进行了筛选。最佳的 siRNA 经化学修饰后与三个 N-乙酰半乳糖胺分子(GalNAc-siRNA)共轭,可促进其向肝脏的靶向递送。通过 RT-qPCR 和免疫印迹检测了 LMAN1 和 MCFD2 在细胞系或小鼠中的表达。对于使用 siRNA 的小鼠,我们通过测量 APTT 和 FVIII 因子的活性来评估其凝血功能。给药后,siRNA GalNAc-LMAN1 和 GalNAc-MCFD2 对 LMAN1 和 MCFD2 的抑制作用有效且持久。注射 3 毫克/千克 GalNAc-LMAN1 7 天后,LMAN1 mRNA 水平下降至 19.97% ± 3.78%。注射 3mg/kg GalNAc-MCFD2 后,MCFD2 mRNA 水平降至 32.22% ± 13.14%。重复给药后,APTT 延长,FVIII 活性显著降低。小鼠尾部出血试验显示,治疗组的出血量与对照组相比没有明显增加。我们的研究证实,以 LMAN1-MCFD2 复合物为靶点的 RNAi 治疗是有效的,可被视为抗凝药物的一种可行选择。然而,在嗜血栓小鼠模型中,其益处和潜在的出血风险还有待评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

RNAi targeting LMAN1-MCFD2 complex promotes anticoagulation in mice.

RNAi targeting LMAN1-MCFD2 complex promotes anticoagulation in mice.

Combined deficiency of coagulation factor V (FV) and factor VIII (FVIII) is a rare bleeding disease caused by variants in either lectin mannose binding 1 (LMAN1) or multiple coagulation factor deficiency 2 (MCFD2) gene. Reducing the level of FVIII by inhibiting the LMAN1-MCFD2 complex may become a new anticoagulant approach. We aimed to find a new therapeutic option for anticoagulation by RNA interference (RNAi) targeting LMAN1 and MCFD2. siRNA sequences with cross-homology between mice and humans were designed based on LMAN1 or MCFD2 transcripts in NCBI and were screened with the Dual-Luciferase reporter assay. The optimal siRNAs were chemically modified and conjugated with three N-acetylgalactosamine molecules (GalNAc-siRNA), promoting their targeted delivery to the liver. The expression of LMAN1 and MCFD2 in cell lines or mice was examined by RT-qPCR and western blotting. For the mice administered with siRNA, we assessed their coagulation function by measuring APTT and the activity of FVIII factor. After administration, siRNAs GalNAc-LMAN1 and GalNAc-MCFD2 demonstrated effective and persistent LMAN1 and MCFD2 inhibition. 7 days after injection of 3mg/kg GalNAc-LMAN1, the LMAN1 mRNA levels reduced to 19.97% ± 3.78%. MCFD2 mRNA levels reduced to 32.22% ± 13.14% with injection of 3mg/kg GalNAc-MCFD2. After repeated administration, APTT was prolonged and the FVIII activity was remarkably decreased. The tail bleeding test of mice showed that the amount of bleeding in the treated group did not significantly increase compared with the control group. Our study confirms that therapy with RNAi targeting LMAN1-MCFD2 complex is effective and can be considered a viable option for anticoagulation drugs. However, the benefits and potential risk of bleeding in thrombophilic mice model needs to be evaluated.

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来源期刊
CiteScore
9.20
自引率
0.00%
发文量
112
审稿时长
4-8 weeks
期刊介绍: The Journal of Thrombosis and Thrombolysis is a long-awaited resource for contemporary cardiologists, hematologists, vascular medicine specialists and clinician-scientists actively involved in treatment decisions and clinical investigation of thrombotic disorders involving the cardiovascular and cerebrovascular systems. The principal focus of the Journal centers on the pathobiology of thrombosis and vascular disorders and the use of anticoagulants, platelet antagonists, cell-based therapies and interventions in scientific investigation, clinical-translational research and patient care. The Journal will publish original work which emphasizes the interface between fundamental scientific principles and clinical investigation, stimulating an interdisciplinary and scholarly dialogue in thrombosis and vascular science. Published works will also define platforms for translational research, drug development, clinical trials and patient-directed applications. The Journal of Thrombosis and Thrombolysis'' integrated format will expand the reader''s knowledge base and provide important insights for both the investigation and direct clinical application of the most rapidly growing fields in medicine-thrombosis and vascular science.
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