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Double printing of hyaluronic acid/poly(glycidol) hybrid hydrogels with poly(epsilon-caprolactone) for MSC chondrogenesis

机译:用Poly(ε-己内酯)的透明质酸/聚(甘草醇)杂种水凝胶的双印刷用于MSC软骨发生

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This study investigates the use of allyl-functionalized poly(glycidol)s (P(AGE-co-G)) as a cytocompatible cross-linker for thiol-functionalized hyaluronic acid (HA-SH) and the optimization of this hybrid hydrogel as bioink for 3D bioprinting. The chemical cross-linking of gels with 10 wt.% overall polymer concentration was achieved by a UV-induced radical thiol-ene coupling between the thiol and allyl groups. The addition of unmodified high molecular weight HA(1.36 MDa) enabled the rheology to be tuned for extrusion-based bioprinting. The incorporation of additional HA resulted in hydrogels with a lower Young's modulus and a higher swelling ratio, especially in the first 24 h, but a comparable equilibrium swelling for all gels after 24 h. Embedding of human and equine mesenchymal stem cells (MSCs) in the gels and subsequent in vitro culture showed promising chondrogenic differentiation after 21 d for cells from both origins. Moreover, cells could be printed with these gels, and embedded hMSCs showed good cell survival for at least 21 d in culture. To achieve mechanically stable and robust constructs for the envisioned application in articular cartilage, the formulations were adjusted for double printing with thermoplastic poly(epsilon-caprolactone) (PCL).
机译:本研究研究了烯丙基官能化的聚(甘草)(P(Age-Co-G))作为硫醇官能化透明质酸(HA-SH)的细胞相容的交联剂,以及该杂交水凝胶作为生物链的优化用于3D BioPlinting。用10重量%的凝胶的化学交联通过硫醇和烯丙基之间的UV诱导的自由基硫醇烯来实现%总体聚合物浓度。添加未改性的高分子量HA(1.36MDA)使能够调谐的流变学基于挤出的生物印刷。额外的HA掺入,导致杨氏模量较低的水凝胶和更高的溶胀比,特别是在前24小时中,但24小时后所有凝胶的相当平衡肿胀。在凝胶中嵌入人和标牌的间充质干细胞(MSCs)和随后的体外培养物在两次起源中的细胞中出现有希望的软骨内分化。此外,可以用这些凝胶印刷细胞,并且嵌入的HMSCs在培养中至少表现出良好的细胞存活率。为了在关节软骨中实现设想的施用机械稳定和稳健的构建体,调节配方,用于用热塑性聚(ε-己内酯)(PCL)进行双重印刷。

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