Key Laboratory of Biotechnology and Pharmaceutical Engineering of Zhejiang Province, Wenzhou Medical College, Wenzhou, China.
Wound Repair Regen. 2011 Sep-Oct;19(5):633-44. doi: 10.1111/j.1524-475X.2011.00722.x.
Molecular modification with polyethylene glycol (PEGylation) is an effective approach to improve protein biostability, in vivo lifetime and therapeutic potency. In the present study, the recombinant human acid fibroblast growth factor (rhaFGF) was site-selectively PEGylated with 20 kDa mPEG-butyraldehyde. Mono-PEGylated rhaFGF was purified to near homogeneity by Sephadex G 25-gel filtration followed by a Heparin Sepharose TM CL-6B affinity chromatography. PEGylated rhaFGF has less effect than the native rhaFGF on the stimulation of 3T3 cell proliferation in vitro; however, its relative thermal stability at normal physiological temperature and structural stability were significantly enhanced, and its half-life time in vivo was significantly extended. Then, the physiological function of PEGylated rhaFGF on diabetic-wound healing was evaluated in type 1 diabetic Sprague Dawley rats. The results showed that, compared with the group of animal treated with native rhaFGF, the group treated with PEGylated rhaFGF exhibited better therapeutic efficacy with shorter healing time, quicker tissue collagen generation, earlier and higher transforming growth factor (TGF)-β expression, and dermal cell proliferation. In addition, in vivo analysis showed that both native and PEGylated rhaFGF were more effective in the wound healing in the diabetic group compared with the nondiabetic one. Taken together, these results suggest that PEGylation of rhaFGF could be a more effective approach to the pharmacological and therapeutic application of native rhaFGF.
聚乙二醇(PEG)分子修饰是提高蛋白质生物稳定性、体内半衰期和治疗效力的有效方法。在本研究中,重组人酸性成纤维细胞生长因子(rhaFGF)通过 20kDa mPEG-丁醛定点 PEG 化。通过 Sephadex G 25 凝胶过滤进一步纯化单 PEG 化 rhaFGF,然后通过肝素 SepharoseTM CL-6B 亲和层析达到接近均一性。与天然 rhaFGF 相比,PEG 化 rhaFGF 对体外 3T3 细胞增殖的刺激作用较小;然而,其在正常生理温度下的相对热稳定性和结构稳定性显著增强,体内半衰期显著延长。然后,在 1 型糖尿病 Sprague Dawley 大鼠中评估了 PEG 化 rhaFGF 对糖尿病创面愈合的生理功能。结果表明,与用天然 rhaFGF 处理的动物组相比,用 PEG 化 rhaFGF 处理的动物组具有更好的治疗效果,愈合时间更短,组织胶原生成更快,转化生长因子(TGF)-β表达更早、更高,真皮细胞增殖更快。此外,体内分析表明,与非糖尿病组相比,天然和 PEG 化 rhaFGF 对糖尿病组的创面愈合更有效。总之,这些结果表明,rhaFGF 的 PEG 化可能是提高天然 rhaFGF 药理学和治疗应用的更有效方法。