Peng Ribo, Qin Gang, Li Xiabin, Lv Hongbin, Qian Zhiyong, Yu Ling
Department of Ophthalmology.
Department of Otorhinolaryngology.
Med Hypothesis Discov Innov Ophthalmol. 2014 Spring;3(1):3-8.
Currently, filtration surgery has been considered as the most effective therapy for glaucoma; however, the scar formation in the surgical area may often lead to failure to the procedure. An implanted drug delivery system may provide localized and sustained release of a drug over an extended period. Poly (ethylene glycol)-poly (ε-caprolactone)-poly (ethylene glycol) (PEG-PCL-PEG, PECE) hydrogel has been successfully synthesized and determined as thermosensitive and biocompatible. In order to overcome the limitations of common local ophthalmic medications, we investigated the function of a self-assembled PECE hydrogel as an intracameral injection-implanted drug carrier to inhibit the formation of postoperative scarring. Following bevacizumal-loaded hydrogel intracameral injection into rabbit eyes, the status of the bleb and filtration fistula formed following the filtering surgery were examined through pathologic evaluation. Due to the sustained release of bevacizumab from the hydrogel, neovascularization and scar formation were inhibited; moreover, there were no corneal abnormalities and other ocular tissue damage found in the rabbits. This suggests that the PECE hydrogel may be considered as the novel biomaterial with potential as a sustained release system in glaucoma filtering surgery. Further studies require in shedding the light on the subject.
目前,滤过手术被认为是治疗青光眼最有效的方法;然而,手术区域的瘢痕形成常常会导致手术失败。植入式给药系统可以在较长时间内实现药物的局部和持续释放。聚(乙二醇)-聚(ε-己内酯)-聚(乙二醇)(PEG-PCL-PEG,PECE)水凝胶已成功合成,并被确定为热敏性和生物相容性良好。为了克服普通局部眼科药物的局限性,我们研究了自组装PECE水凝胶作为前房注射植入药物载体抑制术后瘢痕形成的功能。将载有贝伐单抗的水凝胶前房注射到兔眼中后,通过病理评估检查滤过手术后形成的滤过泡和滤过瘘的状况。由于水凝胶中贝伐单抗的持续释放,新生血管形成和瘢痕形成受到抑制;此外,在兔子中未发现角膜异常和其他眼组织损伤。这表明PECE水凝胶可被视为在青光眼滤过手术中具有作为缓释系统潜力的新型生物材料。需要进一步的研究来阐明这一主题。