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Self-complementary adeno-associated virus serotype 6 mediated knockdown of ADAMTS4 induces long-term and effective enhancement of aggrecan in degenerative human nucleus pulposus cells: A new therapeutic approach for intervertebral disc disorders

机译:自我补充腺相关病毒血清型6介导的ADAMTS4敲低诱导退化性人髓核细胞中聚集蛋白聚糖的长期和有效增强:椎间盘疾病的新治疗方法

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摘要

Inhibition of intervertebral disc (IVD) degeneration, which is often accompanied by painful inflammatory and immunopathological processes, is challenging. Current IVD gene therapeutic approaches are based on adenoviral gene delivery systems, which are limited by immune reactions to their viral proteins. Their applications in IVDs near to sensitive neural structure could provoke toxicity and immunological side-effects with neurological deficits. Self-complementary adeno-associated virus (scAAV) vectors, which do not express any viral gene and are not linked with any known disease in humans, are attractive therapeutic gene delivery vectors in degenerative IVDs. However, scAAV-based silencing of catabolic or inflammatory factor has not yet been investigated in human IVD cells. Therefore, we used scAAV6, the most suitable serotype for transduction of human nucleus pulposus (NP) cells, to knockdown the major catabolic gene (ADAMTS4) of IVD degeneration. IVD degeneration grades were determined by preoperative magnetic resonance imaging. Lumbar NP tissues of degeneration grade III were removed from 12 patients by nucleotomy. NP cells were isolated and cultured with low-glucose. Titre of recombinant scAAV6 vectors targeting ADAMTS4, transduction efficiencies, transduction units, cell viabilities and expression levels of target genes were analysed using quantitative PCR, fluorescence microscopy, fluorescence-activated cell sorting, 3-(4,5-dimethylthiazolyl-2)-2,5-diphenyltetrazolium bromide assays, quantitative reverse transcription PCR, western blot and enzyme-linked immunosorbent assays during 48 days of post-transduction. Transduction efficiencies between 98.2% and 37.4% and transduction units between 611 and 245 TU/cell were verified during 48 days of post-transduction (p<0.001). scAAV6-mediated knockdown of ADAMTS4 with maximum 87.7% and minimum 40.1% was confirmed on day 8 and 48 with enhanced the level of aggrecan 48.5% and 30.2% respectively (p<0.001). scAAV6-mediated knockdown of ADAMTS4 showed no impact on cell viability and expression levels of other inflammatory catabolic proteins. Thus, our results are promising and may help to design long-term and less immunogenic gene therapeutic approaches in IVD disorders, which usually need prolonged therapeutic period between weeks and months.
机译:抑制椎间盘(IVD)变性通常伴随痛苦的炎症和免疫病理过程,具有挑战性。当前的IVD基因治疗方法基于腺病毒基因递送系统,其受到对其病毒蛋白的免疫反应的限制。它们在接近敏感神经结构的体外诊断中的应用可能会引起毒性和具有神经功能缺陷的免疫学副作用。不表达任何病毒基因并且不与人类任何已知疾病相关的自互补腺伴随病毒(scAAV)载体是变性IVD中有吸引力的治疗性基因传递载体。但是,尚未在人类IVD细胞中研究基于scAA​​V的分解代谢或炎症因子沉默。因此,我们使用了scAAV6(最适合转导人髓核(NP)细胞的血清型)来敲除IVD变性的主要分解代谢基因(ADAMTS4)。 IVD变性等级通过术前磁共振成像确定。通过核仁切除术从12例患者中去除了变性为III级的腰部NP组织。分离NP细胞,并用低葡萄糖培养。使用定量PCR,荧光显微镜,荧光激活细胞分选,3-(4,5-二甲基噻唑基-2)-2分析靶向ADAMTS4的重组scAAV6载体的滴度,转导效率,转导单位,细胞活力和靶基因的表达水平转导后48天内进行溴化,5-二苯基四唑溴化物测定,定量逆转录PCR,蛋白质印迹和酶联免疫吸附测定。在转导后的48天内,验证了98.2%至37.4%的转导效率以及611至245 TU /细胞的转导单位(p <0.001)。在第8天和第48天证实了scAAV6介导的ADAMTS4的敲低,最高为87.7%,最低为40.1%,聚集蛋白聚糖的水平分别提高了48.5%和30.2%(p <0.001)。 scAAV6介导的ADAMTS4的敲低对细胞活力和其他炎症分解代谢蛋白的表达水平没有影响。因此,我们的结果是有希望的,并且可能有助于设计IVD疾病的长期且免疫原性较低的基因治疗方法,这些方法通常需要在数周至数月之间延长治疗时间。

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