Laurus Center for Gene Therapy, Department of Biological Sciences and Bioengineering and Mehta Family Centre for Engineering in Medicine and Gangwal School of Medical Sciences and Technology, Indian Institute of Technology Kanpur, Kanpur, Uttar Pradesh, India.
Department of Pathology, Autonomous State Medical College, Kanpur, Uttar Pradesh, India.
J Cell Mol Med. 2024 Jun;28(11):e18460. doi: 10.1111/jcmm.18460.
Haemophilic arthropathy (HA), a common comorbidity in haemophilic patients leads to joint pain, deformity and reduced quality of life. We have recently demonstrated that a long non-coding RNA, Neat1 as a primary regulator of matrix metalloproteinase (MMP) 3 and MMP13 activity, and its induction in the target joint has a deteriorating effect on articular cartilage. In the present study, we administered an Adeno-associated virus (AAV) 5 vector carrying an short hairpin (sh)RNA to Neat1 via intra-articular injection alone or in conjunction with systemic administration of a capsid-modified AAV8 (K31Q) vector carrying F8 gene (F8-BDD-V3) to study its impact on HA. AAV8K31Q-F8 vector administration at low dose, led to an increase in FVIII activity (16%-28%) in treated mice. We further observed a significant knockdown of Neat1 (~40 fold vs. untreated injured joint, p = 0.005) in joint tissue of treated mice and a downregulation of chondrodegenerative enzymes, MMP3, MMP13 and the inflammatory mediator- cPLA2, in mice receiving combination therapy. These data demonstrate that AAV mediated Neat1 knockdown in combination with F8 gene augmentation can potentially impact mediators of haemophilic joint disease.
血友病性关节病(HA)是血友病患者常见的合并症,可导致关节疼痛、畸形和生活质量下降。我们最近证明,长非编码 RNA Neat1 作为基质金属蛋白酶(MMP)3 和 MMP13 活性的主要调节因子,其在靶关节中的诱导对关节软骨有恶化作用。在本研究中,我们通过关节内注射单独或联合全身给予携带 F8 基因(F8-BDD-V3)的衣壳修饰的腺相关病毒 8 型(K31Q)载体(AAV8K31Q-F8)的腺相关病毒 5 载体(AAV5)转染 Neat1,以研究其对 HA 的影响。低剂量的 AAV8K31Q-F8 载体给药导致治疗小鼠的 FVIII 活性增加(16%-28%)。我们进一步观察到治疗小鼠关节组织中 Neat1 的显著敲低(与未治疗的受伤关节相比,约 40 倍,p = 0.005),以及接受联合治疗的小鼠中软骨降解酶 MMP3、MMP13 和炎症介质 cPLA2 的下调。这些数据表明,AAV 介导的 Neat1 敲低与 F8 基因增强相结合,可能会影响血友病性关节疾病的介质。