G.I.R. BIOFORGE, Universidad de Valladolid, Centro I+D, Universidad de Valladolid, Paseo de Belén 11, 47011 Valladolid, Spain.
G.I.R. BIOFORGE, Universidad de Valladolid, Centro I+D, Universidad de Valladolid, Paseo de Belén 11, 47011 Valladolid, Spain.
Acta Biomater. 2014 Jun;10(6):2495-505. doi: 10.1016/j.actbio.2014.02.006. Epub 2014 Feb 12.
Elastin-like recombinamer catalyst-free click gels (ELR-CFCGs) have been prepared and characterized by modifying both a structural ELR (VKVx24) and a biofunctionalized ELR-bearing RGD cell-adhesion sequence (HRGD6) to bear the reactive groups needed to form hydrogels via a click reaction. Prior to formation of the ELR-CFCGs, azide-bearing and cyclooctyne-modified ELRs were also synthesized. Subsequent covalent crosslinking was based on the reaction between these azide and cyclooctyne groups, which takes place under physiological conditions and without the need for a catalyst. The correlation among SEM micrographs, porosity, swelling ratio, and rheological measurements have been carried out. The storage and loss moduli at 1Hz are in the range 1-10kPa and 100-1000Pa, respectively. The linear dependence of |G∗| on f(½) and the peak value of tan δ were considered to be consistent with a poroelastic mechanism dominating the frequency range 0.3-70Hz. The discrete relaxation spectrum was obtained from stress relaxation measurements (t>5s). The good fit of the relaxation modulus to decrease exponential functions suggests that an intrinsic viscoelastic mechanism dominates the transients. Several recombinamer concentrations and temperatures were tested to obtain gels with fully tuneable properties that could find applications in the biomedical field.
弹性蛋白样重组体无催化剂点击凝胶(ELR-CFCGs)通过修饰具有结构的 ELR(VKVx24)和具有生物功能化的 ELR 结合的 RGD 细胞黏附序列(HRGD6),使其具有通过点击反应形成水凝胶所需的反应性基团。在形成 ELR-CFCGs 之前,还合成了带有叠氮基团和环辛炔修饰的 ELR。随后的共价交联基于这些叠氮基团和环辛炔基团之间的反应,该反应在生理条件下发生,无需催化剂。已经进行了 SEM 显微照片、孔隙率、溶胀比和流变学测量之间的相关性研究。在 1Hz 时的存储和损耗模量分别在 1-10kPa 和 100-1000Pa 的范围内。|G*|与 f(½)的线性关系和 tan δ的峰值被认为与主导频率范围 0.3-70Hz 的多孔弹性机制一致。从应力松弛测量(t>5s)获得了离散松弛谱。松弛模量与指数函数的良好拟合表明,固有粘弹性机制主导瞬变过程。测试了几种重组体浓度和温度,以获得具有完全可调性能的凝胶,这些凝胶可在生物医学领域找到应用。