Nawaz Hafiz Awais, Schröck Kathleen, Schmid Maximilian, Krieghoff Jan, Maqsood Iram, Kascholke Christian, Kohn-Polster Caroline, Schulz-Siegmund Michaela, Hacker Michael C
Institute of Pharmacy, Pharmaceutical Technology, Leipzig University, Eilenburger Straße 15 a, 04317 Leipzig, Germany and Institute of Pharmaceutical Sciences (IPS), University of Veterinary & Animal Sciences (UVAS), Abdul Qadir Jillani road, Lahore, Pakistan.
Institute of Pharmacy, Pharmaceutical Technology, Leipzig University, Eilenburger Straße 15 a, 04317 Leipzig, Germany.
J Mater Chem B. 2021 Mar 11;9(9):2295-2307. doi: 10.1039/d0tb02861d.
Injectable gelatine-based hydrogels are valuable tools for drug and cell delivery due to their extracellular matrix-like properties that can be adjusted by the degree of cross-linking. We have established anhydride-containing oligomers for the cross-linking of gelatine via anhydride-amine-conjugation. So far, this conversion required conditions not compatible with cell encapsulation or in vivo injection. In order to overcome this limitation, we developed an array of quarter-oligomers varying in comonomer composition and contents of reactive anhydride units reactive towards amine groups under physiological conditions. The oligomers were of low molecular weight (Mn < 5 kDa) with a high degree of chemically intact anhydrides. Chemical comonomer composition was determined by 1H-NMR. Dissolutions experiments confirmed improved hydrophilicity of the synthesized oligomers over our established compositions. Injectable formulations are described utilizing cytocompatible concentrations of constituent materials and proton-scavenging base. Degree of cross-linking and stiffness of injectable hydrogels were controlled by composition. The gels hold promise as injectable drug or cell carrier and as bioink.
基于明胶的可注射水凝胶是用于药物和细胞递送的重要工具,因为它们具有类似细胞外基质的特性,可通过交联程度进行调节。我们已经建立了含酸酐的低聚物,用于通过酸酐-胺共轭交联明胶。到目前为止,这种转化所需的条件与细胞封装或体内注射不兼容。为了克服这一限制,我们开发了一系列四聚体低聚物,它们在共聚单体组成和在生理条件下对胺基具有反应性的反应性酸酐单元含量方面有所不同。这些低聚物分子量低(Mn < 5 kDa),具有高度化学完整的酸酐。化学共聚单体组成通过1H-NMR测定。溶解实验证实,合成的低聚物比我们已建立的组合物具有更好的亲水性。描述了使用细胞相容性浓度的组成材料和质子清除碱的可注射制剂。可注射水凝胶的交联程度和硬度由组成控制。这些凝胶有望作为可注射药物或细胞载体以及生物墨水。