Hydrogels based on gelatin have evolved as promising multifunctional biomaterials. Gelatin is crosslinked with lysine diisocyanate ethyl ester (LDI) and the molar ratio of gelatin and LDI in the starting material mixture determines elastic properties of the resulting hydrogel. In order to investigate the clinical potential of these biopolymers, hydrogels with different ratios of gelatin and diisocyanate (3-fold (G10_LNCO3) and 8-fold (G10_LNCO8) molar excess of isocyanate groups) were subcutaneously implanted in mice (uni- or bilateral implantation). Degradation and biomaterial-tissue-interaction were investigated in vivo (MRI, optical imaging, PET) and ex vivo (autoradiography, histology, serum analysis). Multimodal imaging revealed that the number of covalent net points correlates well with degradation time, which allows for targeted modification of hydrogels based on properties of the tissue to be replaced. Importantly, the degradation time was also dependent on the number of implants per animal. Despite local mechanisms of tissue remodeling no adverse tissue responses could be observed neither locally nor systemically. Finally, this preclinical investigation in immunocompetent mice clearly demonstrated a complete restoration of the original healthy tissue.
Gelatin-based Hydrogel Degradation and Tissue Interaction in vivo: Insights from Multimodal Preclinical Imaging in Immunocompetent Nude Mice.
明胶基水凝胶在体内的降解和组织相互作用:来自免疫功能正常裸鼠的多模态临床前成像的见解
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作者:Tondera Christoph, Hauser Sandra, Krüger-Genge Anne, Jung Friedrich, Neffe Axel T, Lendlein Andreas, Klopfleisch Robert, Steinbach Jörg, Neuber Christin, Pietzsch Jens
| 期刊: | Theranostics | 影响因子: | 13.300 |
| 时间: | 2016 | 起止号: | 2016 Sep 12; 6(12):2114-2128 |
| doi: | 10.7150/thno.16614 | 研究方向: | 免疫/内分泌 |
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