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热触发水凝胶注射入牛椎间盘组织外植体诱导间充质干细胞分化并恢复力学功能。

Thermally triggered hydrogel injection into bovine intervertebral disc tissue explants induces differentiation of mesenchymal stem cells and restores mechanical function.

机构信息

Biomolecular Sciences Research Centre, Sheffield Hallam University, S1 1WB, UK.

Faculty of Science & Engineering, Manchester Metropolitan University, M1 5GD, UK.

出版信息

Acta Biomater. 2017 May;54:212-226. doi: 10.1016/j.actbio.2017.03.010. Epub 2017 Mar 8.

Abstract

UNLABELLED

We previously reported a synthetic Laponite® crosslinked pNIPAM-co-DMAc (L-pNIPAM-co-DMAc) hydrogel which promotes differentiation of mesenchymal stem cells (MSCs) to nucleus pulposus (NP) cells without additional growth factors. The clinical success of this hydrogel is dependent on: integration with surrounding tissue; the capacity to restore mechanical function; as well as supporting the viability and differentiation of delivered MSCs. Bovine NP tissue explants were injected with media (control), human MSCs (hMSCs) alone, acellular L-pNIPAM-co-DMAc hydrogel or hMSCs incorporated within the L-pNIPAM-co-DMAc hydrogel and maintained at 5% O for 6weeks. Viability of native NP cells and delivered MSCs was maintained. Furthermore hMSCs delivered via the L-pNIPAM-co-DMAc hydrogel differentiated and produced NP matrix components: aggrecan, collagen type II and chondroitin sulphate, with integration of the hydrogel with native NP tissue. In addition L-pNIPAM-co-DMAc hydrogel injected into collagenase digested bovine discs filled micro and macro fissures, were maintained within the disc during loading and restored IVD stiffness. The mechanical support of the L-pNIPAM-co-DMAc hydrogel, to restore disc height, could provide immediate symptomatic pain relief, whilst the delivery of MSCs over time regenerates the NP extracellular matrix; thus the L-pNIPAM-co-DMAc hydrogel could provide a combined cellular and mechanical repair approach.

STATEMENT OF SIGNIFICANCE

Low back pain (LBP) is associated with degeneration of the intervertebral disc (IVD). We have previously described development of a jelly delivery system (hydrogel). This has the potential to deliver adult stem cells to the centre of the IVD, known as the nucleus pulposus (NP). Here, we have demonstrated that adult stem cells can be safely injected into the NP using small bore needles, reducing damage to the disc. Following injection the hydrogel integrates with surrounding NP tissue, promotes differentiation of stem cells towards disc cells and restores IVD mechanical function. The hydrogel could be used to restore mechanical function to the IVD and deliver cells to promote regeneration of the disc as a minimally invasive treatment for LBP.

摘要

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我们之前曾报道过一种合成的 Laponite®交联 pNIPAM-co-DMAc(L-pNIPAM-co-DMAc)水凝胶,它可以在没有额外生长因子的情况下促进间充质干细胞(MSCs)向髓核(NP)细胞分化。这种水凝胶的临床成功取决于:与周围组织的整合;恢复机械功能的能力;以及支持输送的 MSCs 的存活和分化。将牛 NP 组织外植体注入培养基(对照)、单独的人 MSCs(hMSCs)、无细胞 L-pNIPAM-co-DMAc 水凝胶或包含在 L-pNIPAM-co-DMAc 水凝胶中的 hMSCs,并在 5%O 下维持 6 周。天然 NP 细胞和输送的 MSCs 的活力得以维持。此外,通过 L-pNIPAM-co-DMAc 水凝胶输送的 hMSCs 分化并产生 NP 基质成分:聚集蛋白聚糖、II 型胶原和软骨素硫酸盐,与天然 NP 组织的整合。此外,注入胶原酶消化的牛椎间盘的 L-pNIPAM-co-DMAc 水凝胶填充微裂缝和宏观裂缝,在加载过程中保持在椎间盘内,并恢复 IVD 刚度。L-pNIPAM-co-DMAc 水凝胶的机械支撑,以恢复椎间盘高度,可以提供即时的症状缓解疼痛,同时随着时间的推移输送 MSCs 再生 NP 细胞外基质;因此,L-pNIPAM-co-DMAc 水凝胶可以提供一种细胞和机械修复的综合方法。

意义声明

下腰痛(LBP)与椎间盘(IVD)退变有关。我们之前描述了一种果冻输送系统(水凝胶)的开发。这有可能将成人干细胞输送到 IVD 的中心,称为髓核(NP)。在这里,我们已经证明,使用小口径针头可以将成人干细胞安全地注入 NP,从而减少对椎间盘的损伤。注射后,水凝胶与周围 NP 组织整合,促进干细胞向椎间盘细胞分化,并恢复 IVD 机械功能。该水凝胶可用于恢复 IVD 的机械功能,并输送细胞以促进椎间盘的再生,作为治疗 LBP 的一种微创治疗方法。

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