Dispenza Clelia, Todaro Simona, Bulone Donatella, Sabatino Maria Antonietta, Ghersi Giulio, San Biagio Pier Luigi, Lo Presti Caterina
Dipartimento di Ingegneria Chimica, Gestionale, Informatica e Meccanica, Università degli Studi di Palermo, Viale delle Scienze Edificio 6, 90128 Palermo, Italy.
Dipartimento di Ingegneria Chimica, Gestionale, Informatica e Meccanica, Università degli Studi di Palermo, Viale delle Scienze Edificio 6, 90128 Palermo, Italy.
Mater Sci Eng C Mater Biol Appl. 2017 Jan 1;70(Pt 1):745-752. doi: 10.1016/j.msec.2016.09.045. Epub 2016 Sep 22.
The development of growth factors is very promising in the field of tissue regeneration but specifically designed formulations have to be developed in order to enable such new biological entities (NBEs). In particular, the range of therapeutic concentrations is usually very low compared to other active proteins and the confinement in the target site can be of crucial importance. In-situ forming scaffolds are very promising solutions for minimally invasive intervention in cartilage reconstruction and targeting of NBEs. In this work injectable, in-situ forming gels of a temperature responsive partially degalactosylated xyloglucan (Deg-XG) incorporating the growth factor FGF-18 are formulated and characterized. In particular, injectability and shear viscosity at room temperature, time-to-gel at body temperature, morphology and mechanical properties of gels are investigated. The highly hydrophobic growth factor is favorably incorporated and retained by the gel. Gels undergo a slow erosion process when immersed in PBS at 37°C that opens up their porous structure. The prolonged hydrothermal treatment leads to structural rearrangements towards tougher networks with increased dynamic shear modulus. Preliminary biological evaluations confirm absence of cytotoxicity and the ability of these scaffolds to host cells and promote their proliferation.
生长因子在组织再生领域的发展前景广阔,但必须开发专门设计的制剂,以使这些新型生物实体(NBEs)得以应用。特别是,与其他活性蛋白相比,治疗浓度范围通常非常低,且将其局限于靶位点可能至关重要。原位形成支架是软骨重建微创干预和NBEs靶向的非常有前景的解决方案。在这项工作中,制备并表征了一种可注射的、原位形成的温度响应性部分去半乳糖基化木葡聚糖(Deg-XG)凝胶,其包含生长因子FGF-18。特别研究了室温下的可注射性和剪切粘度、体温下的凝胶化时间、凝胶的形态和力学性能。高度疏水的生长因子被凝胶良好地包载和保留。当凝胶在37°C下浸入PBS中时,会经历缓慢的侵蚀过程,从而打开其多孔结构。长时间的水热处理导致结构重排,形成具有更高动态剪切模量的更坚韧网络。初步生物学评估证实这些支架无细胞毒性,且有容纳细胞并促进其增殖的能力。