National Hemophilia Center, Thrombosis & Hemostasis Institute, Sheba Medical Center, Ramat Gan 52621, Israel.
Amalia Biron Research Institute of Thrombosis & Hemostasis, Faculty of Medical & Health Sciences, Tel Aviv University, Tel Aviv 6997801, Israel.
Int J Mol Sci. 2024 Sep 26;25(19):10336. doi: 10.3390/ijms251910336.
Severe protein C deficiency (SPCD) is a rare inherited thrombotic disease associated with high morbidity and mortality. In the current study, we established a viable murine model of SPCD, enabling preclinical gene therapy studies. By creating SPCD mice with severe hemophilia A (PROC/F8), the multi-month survival of SPCD mice enabled the exploration of recombinant adeno-associated viral vector-PC (rAAV8-PC) gene therapy (GT). rAAV8- PC (10 vg/kg of AAV8-PC) was injected via the tail vein into 6-8-week-old PROC/F8 mice. Their plasma PC antigen levels (median of 714 ng/mL, range 166-2488 ng/mL) and activity (303.5 ± 59%) significantly increased to the normal range after GT compared to untreated control animals. PC's presence in the liver after GT was also confirmed by immunofluorescence staining. Our translational research results provide the first proof of concept that an infusion of rAAV8-PC increases PC antigen and activity in mice and may contribute to future GT in SPCD. Further basic research of SPCD mice with prolonged survival due to the rebalancing of this disorder using severe hemophilia A may provide essential data regarding PC's contribution to specific tissues' development, local PC generation, and its regulation in inflammatory conditions.
严重蛋白 C 缺乏症(SPCD)是一种罕见的遗传性血栓性疾病,与高发病率和死亡率相关。在本研究中,我们建立了一种可行的 SPCD 小鼠模型,能够进行临床前基因治疗研究。通过创建严重血友病 A(PROC/F8)的 SPCD 小鼠,SPCD 小鼠的多器官存活使我们能够探索重组腺相关病毒载体-PC(rAAV8-PC)基因治疗(GT)。通过尾静脉将 rAAV8-PC(10 vg/kg 的 AAV8-PC)注射到 6-8 周龄 PROC/F8 小鼠体内。与未治疗的对照组相比,GT 后其血浆 PC 抗原水平(中位数为 714ng/mL,范围为 166-2488ng/mL)和活性(303.5±59%)显著增加至正常范围。GT 后通过免疫荧光染色也证实了 PC 在肝脏中的存在。我们的转化研究结果首次证明,rAAV8-PC 的输注可增加小鼠的 PC 抗原和活性,并可能为未来 SPCD 的 GT 提供依据。由于使用严重血友病 A 重新平衡这种疾病,具有延长生存时间的 SPCD 小鼠的进一步基础研究可能会提供有关 PC 对特定组织发育、局部 PC 生成及其在炎症条件下的调节的重要数据。