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含血小板裂解液的透明质酸水凝胶可增强人牙髓细胞的增殖和分化。

Hyaluronic acid hydrogels incorporating platelet lysate enhance human pulp cell proliferation and differentiation.

机构信息

Department of Clinical and Social Dentistry, Federal University of Paraíba, João Pessoa, PB, Brazil.

Department of Orthodontics and Pediatric Dentistry, Araraquara Dental School, State of São Paulo University, Araraquara, SP, Brazil.

出版信息

J Mater Sci Mater Med. 2018 Jun 14;29(6):88. doi: 10.1007/s10856-018-6088-7.

Abstract

The restoration of dentine-pulp complex remains a challenge for dentists; nonetheless, it has been poorly addressed. An ideal system should modulate the host response, as well as enable the recruitment, proliferation and differentiation of relevant progenitor cells. Herein was proposed a photocrosslinkable hydrogel system based on hyaluronic acid (HA) and platelet lysate (PL). PL is a cocktail of growth factors (GFs) and cytokines involved in wound healing orchestration, obtained by the cryogenic processing of platelet concentrates, and was expected to provide the HA hydrogels specific biochemical cues to enhance pulp cells' recruitment, proliferation and differentiation. Stable HA hydrogels incorporating PL (HAPL) were prepared after photocrosslinking of methacrylated HA (Met-HA) previously dissolved in PL, triggered by the Ultra Violet activated photoinitiator Irgacure 2959. Both the HAPL and plain HA hydrogels were shown to be able to recruit cells from a cell monolayer of human dental pulp stem cells (hDPSCs) isolated from permanent teeth. The hDPCs were also seeded directly over the hydrogels (5 × 10 cells/hydrogel) and cultured in osteogenic conditions. Cell metabolism and DNA quantification were higher, in all time-points, for PL supplemented hydrogels (p < 0,05). Alkaline phosphatase (ALPL) activity and calcium quantification peaks were observed for the HAPL group at 21 days (p < 0,05). The gene expression for ALPL and COLIA1 was up-regulated at 21 days to HAPL, compared with HA group (p < 0,05). Within the same time point, the gene expression for RUNX2 did not differ between the groups. Overall, data demonstrated that the HA hydrogels incorporating PL increased the cellular metabolism and stimulate the mineralized matrix deposition by hDPSCs, providing clear evidence of the potential of the proposed system for the repair of damaged pulp/dentin tissue and endodontics regeneration.

摘要

牙髓复合体的修复仍然是牙医面临的挑战;尽管如此,这个问题还没有得到很好的解决。理想的系统应该调节宿主的反应,同时能够招募、增殖和分化相关的祖细胞。本文提出了一种基于透明质酸(HA)和血小板裂解液(PL)的光交联水凝胶系统。PL 是一种由血小板浓缩物低温处理得到的生长因子(GFs)和细胞因子的鸡尾酒,预计会为 HA 水凝胶提供特定的生化线索,以增强牙髓细胞的募集、增殖和分化。PL 被掺入到之前溶解在 PL 中的甲基丙烯酰化透明质酸(Met-HA)中,然后通过紫外光激活的光引发剂 Irgacure 2959 引发光交联,制备出稳定的含有 PL 的 HA 水凝胶(HAPL)。HAPL 和普通 HA 水凝胶都被证明能够从分离自恒牙的人牙髓干细胞(hDPSCs)的单层细胞中招募细胞。hDPCs 也被直接接种到水凝胶上(每个水凝胶 5×10 个细胞),并在成骨条件下培养。在所有时间点,PL 补充的水凝胶的细胞代谢和 DNA 定量都更高(p<0.05)。在 21 天时,HAPL 组观察到碱性磷酸酶(ALPL)活性和钙定量峰值(p<0.05)。与 HA 组相比,HAPL 组在第 21 天的 ALPL 和 COLIA1 基因表达上调(p<0.05)。在同一时间点,两组之间 RUNX2 的基因表达没有差异。总的来说,数据表明,PL 掺入的 HA 水凝胶增加了 hDPSCs 的细胞代谢,并刺激了矿化基质的沉积,为所提出的系统在修复受损的牙髓/牙本质组织和牙髓再生方面的潜力提供了明确的证据。

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