Tourné-Péteilh Corine, Barège Maeva, Lions Mathieu, Martinez Jean, Devoisselle Jean-Marie, Aubert-Pouessel Anne, Subra Gilles, Mehdi Ahmad
ICGM, Univ Montpellier, CNRS, ENSCM Montpellier France
IBMM, Univ Montpellier, CNRS, ENSCM Montpellier France.
RSC Adv. 2021 Sep 17;11(49):30887-30897. doi: 10.1039/d1ra03547a. eCollection 2021 Sep 14.
Hybrid hydrogels based on silylated polyethylene glycol, Si-PEG, were evaluated as hybrid matrices able to trap, stabilize and release bovine serum albumin (BSA) in a controlled manner. Parameters of the inorganic condensation reaction leading to a siloxane (Si-O-Si) three dimensional network were carefully investigated, in particular the temperature, the surrounding hygrometry and the Si-PEG concentration. The resulting hydrogel structural features affected the stability, swelling, and mechanical properties of the network, leading to different protein release profiles. Elongated polymer assemblies were observed, the length of which ranged from 150 nm to over 5 μm. The length could be correlated to the Si-O-Si condensation rate from 60% (hydrogels obtained at 24 °C) to about 90% (xerogels obtained at 24 °C), respectively. Consequently, the controlled release of BSA could be achieved from hours to several weeks, with respect to the fibers' length and the condensation rate. The protein stability was evaluated by means of a thermal study. The main results gave insight into the biomolecule structure preservation during polymerisation, with Δ < 0 for encapsulated BSA in any conditions, below the melting temperature (65 °C).
对基于硅烷化聚乙二醇(Si-PEG)的混合水凝胶作为能够以可控方式捕获、稳定和释放牛血清白蛋白(BSA)的混合基质进行了评估。仔细研究了导致硅氧烷(Si-O-Si)三维网络的无机缩合反应参数,特别是温度、周围湿度和Si-PEG浓度。所得水凝胶的结构特征影响了网络的稳定性、溶胀性和机械性能,导致不同的蛋白质释放曲线。观察到了细长的聚合物聚集体,其长度范围从150纳米到超过5微米。长度分别与Si-O-Si缩合率从60%(在24°C下获得的水凝胶)到约90%(在24°C下获得的干凝胶)相关。因此,根据纤维长度和缩合率,BSA的可控释放可以从数小时到数周实现。通过热研究评估了蛋白质稳定性。主要结果深入了解了聚合过程中生物分子结构的保存情况,在低于熔点温度(65°C)的任何条件下,封装的BSA的Δ<0。