Department of Urology, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai, 200233, People's Republic of China. Shanghai Eastern Institute of Urologic Reconstruction, Shanghai, 200233, People's Republic of China.
Biomed Mater. 2018 Oct 25;14(1):015002. doi: 10.1088/1748-605X/aae5e2.
To evaluate the effects of urethral regeneration with prevascularized bladder acellular matrix hydrogel (BAMH)/silk fibroin (SF) composite scaffolds in a rabbit model.
BAMH/SF and collagen Type I hydrogel/SF (CH/SF) scaffolds were prepared and the structure of the scaffolds was assessed using scanning electron microscopy. BAMH/SF, CH/SF and SF scaffolds were incubated in the omentum of male rabbits for two weeks and then harvested for repairing autologous urethral defects. Histological analysis of the incubated scaffolds was performed to evaluate the neovascularization capacity, and the outcomes of urethroplasty were evaluated at one and three months post-operatively.
The composited scaffolds were composed of a highly porous BAMH or CH buttressed by compact SF outer layer. The histological analysis of the incubated BAMH/SF revealed a signifcant increase of the neovascularization among three groups after a two-week incubation. At three months, the urethra maintained wide caliber in the BAMH/SF group. Strictures were found in the CH/SF and SF groups. Histologically, at one month, intact and multilayer epithelium occurred in the BAMH/SF group, and one layer epithelium was found in the CH/SF and SF groups. However, there was similar epithelial regeneration in BAMH/SF and CH/SF groups at three months (p > 0.05). Comparisons of smooth muscle content and vessel density among the SF, CH/SF and BAMH/SF revealed a significant increase at each time point (p < 0.05).
Our results demonstrate that incubated BAMH/SF promote neovascularization, and prevascularized BAMH/SF promote the regeneration of the urethral epithelium and smooth muscle, which indicates its potential for urethral reconstruction.
评估带血管化膀胱去细胞基质水凝胶(BAMH)/丝素(SF)复合支架在兔模型中尿道再生的效果。
制备 BAMH/SF 和胶原 I 水凝胶/SF(CH/SF)支架,并通过扫描电子显微镜评估支架的结构。将 BAMH/SF、CH/SF 和 SF 支架孵育在雄性兔的大网膜中两周,然后用于修复自体尿道缺损。对孵育的支架进行组织学分析,以评估新生血管能力,并在术后 1 个月和 3 个月评估尿道成形术的结果。
复合支架由高度多孔的 BAMH 或 CH 组成,由致密的 SF 外层支撑。孵育 2 周后,BAMH/SF 孵育的组织学分析显示三组之间新生血管明显增加。3 个月时,BAMH/SF 组尿道保持宽口径。CH/SF 和 SF 组发现狭窄。组织学上,在 BAMH/SF 组中,1 个月时出现完整的多层上皮,而在 CH/SF 和 SF 组中发现单层上皮。然而,在 3 个月时,BAMH/SF 和 CH/SF 组的上皮再生相似(p>0.05)。SF、CH/SF 和 BAMH/SF 之间平滑肌含量和血管密度的比较显示每个时间点均有显著增加(p<0.05)。
我们的结果表明,孵育的 BAMH/SF 促进新生血管形成,带血管化的 BAMH/SF 促进尿道上皮和平滑肌的再生,这表明其在尿道重建中的潜力。