NF-kB decoy oligodeoxynucleotide preserves disc height in a rabbit anular-puncture model and reduces pain induction in a rat xenograft-radiculopathy model.

IF 3.2 3区 医学 Q3 CELL & TISSUE ENGINEERING
K Kato, K Akeda, S Miyazaki, J Yamada, C Muehleman, K Miyamoto, Y A Asanuma, K Asanuma, T Fujiwara, M E Lenz, T Nakazawa, H An, K Masuda
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引用次数: 6

Abstract

While it is known that the degenerated intervertebral disc (IVD) is one of the primary reasons for low-back pain and subsequent need for medical care, there are currently no established effective methods for direct treatment. Nuclear factor-κB (NF-κB) is a transcription factor that regulates various genes' expression, among which are inflammatory cytokines, in many tissues including the IVD. NF-κB decoy is an oligodeoxynucleotide containing the NF-κB binding site that entraps NF-κB subunits, resulting in suppression of NF-κB activity. In the present preclinical study, NF-κB decoy was injected into degenerated IVDs using the rabbit anular-puncture model. In terms of distribution, NF-κB decoy persisted in the IVDs up to at least 4 weeks after injection. The remaining amount of NF-κB decoy indicated that it fit a double-exponential-decay equation. Investigation of puncture-caused degeneration of IVDs showed that NF-κB decoy injection recovered, dose-dependently, the reduced disc height that was associated with reparative cell cloning and morphological changes, as assessed through histology. Gene expression, by quantitative real-time polymerase chain reaction (qRT-PCR), showed that NF-κB decoy attenuated inflammatory gene expression, such as that of interleukin-1 and tumor necrosis factor-α, in rabbit degenerated IVDs. NF-κB decoy also reduced the pain response as seen using the "pain sensor" nude rat xenograft-radiculopathy model. This is the first report demonstrating that NF-κB decoy suppresses the inflammatory response in degenerated IVDs and restores IVD disc height loss. Therefore, the intradiscal injection of NF-κB decoy may have the potential as an effective therapeutic strategy for discogenic pain associated with degenerated IVDs.

NF-kB诱饵寡脱氧核苷酸在兔环穿刺模型中保持椎间盘高度,在大鼠异种移植物神经根病模型中减少疼痛诱导。
虽然众所周知,椎间盘退变(IVD)是腰痛的主要原因之一,随后需要医疗护理,但目前还没有确定的有效的直接治疗方法。核因子-κB (NF-κB)是一种在包括IVD在内的许多组织中调控多种基因表达的转录因子,其中包括炎症因子。NF-κB诱饵是一种含有NF-κB结合位点的寡脱氧核苷酸,可捕获NF-κB亚基,抑制NF-κB活性。在本临床前研究中,采用兔环穿刺模型将NF-κB诱骗剂注射到退行性IVDs中。在分布方面,NF-κB诱饵在注射后至少持续4周。剩余NF-κB诱饵量符合双指数衰减方程。对IVDs穿刺性退变的研究表明,通过组织学评估,NF-κB诱饵注射可以剂量依赖性地恢复与修复性细胞克隆和形态改变相关的椎间盘高度降低。实时荧光定量聚合酶链反应(qRT-PCR)结果显示,NF-κB诱诱性降低了兔退行性ivd中白细胞介素-1、肿瘤坏死因子-α等炎性基因的表达。在“疼痛传感器”裸大鼠异种移植物神经根病模型中,NF-κB诱捕物也能减轻疼痛反应。这是首次报道NF-κB诱饵抑制退行性IVD的炎症反应并恢复IVD椎间盘高度损失。因此,椎间盘内注射NF-κB诱饵可能是一种有效的治疗与退行性ivd相关的椎间盘源性疼痛的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European cells & materials
European cells & materials 生物-材料科学:生物材料
CiteScore
6.00
自引率
6.50%
发文量
55
审稿时长
1.5 months
期刊介绍: eCM provides an interdisciplinary forum for publication of preclinical research in the musculoskeletal field (Trauma, Maxillofacial (including dental), Spine and Orthopaedics). The clinical relevance of the work must be briefly mentioned within the abstract, and in more detail in the paper. Poor abstracts which do not concisely cover the paper contents will not be sent for review. Incremental steps in research will not be entertained by eCM journal.Cross-disciplinary papers that go across our scope areas are welcomed.
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