Bocková Markéta, Pashchenko Aleksei, Stuchlíková Simona, Kalábová Hana, Divín Radek, Novotný Petr, Kestlerová Andrea, Jelen Karel, Kubový Petr, Firment Peter, Fedačko Ján, Jarošíková Taťána, Rulc Jiří, Rosina Jozef, Nečas Alois, Amler Evžen, Hoch Jiří
Second Faculty of Medicine, Charles University, 15000 Prague, Czech Republic.
University Centre for Energy Efficient Buildings, Czech Technical University in Prague, Trinecka 1024, 27343 Bustehrad, Czech Republic.
Gels. 2022 Mar 4;8(3):158. doi: 10.3390/gels8030158.
Dead space after rectal resection in colorectal surgery is an area with a high risk of complications. In this study, our goal was to develop a novel 3D implant based on composite hydrogels enriched with fractionalized nanofibers. We employed, as a novel approach in abdominal surgery, the application of agarose gels functionalized with fractionalized nanofibers on pieces dozens of microns large with a well-preserved nano-substructure. This retained excellent cell accommodation and proliferation, while nanofiber structures in separated islets allowed cells a free migration throughout the gel. We found these low-concentrated fractionalized nanofibers to be a good tool for structural and biomechanical optimization of the 3D hydrogel implants. In addition, this nano-structuralized system can serve as a convenient drug delivery system for a controlled release of encapsulated bioactive substances from the nanofiber core. Thus, we present novel 3D nanofiber-based gels for controlled release, with a possibility to modify both their biomechanical properties and drug release intended for 3D lesions healing after a rectal extirpation, hysterectomy, or pelvic exenteration.
结直肠手术中直肠切除术后的死腔是一个并发症风险较高的区域。在本研究中,我们的目标是开发一种基于富含分级纳米纤维的复合水凝胶的新型三维植入物。作为腹部手术中的一种新方法,我们将用分级纳米纤维功能化的琼脂糖凝胶应用于几十微米大小且纳米亚结构保存完好的碎片上。这保留了优异的细胞容纳和增殖能力,而分离胰岛中的纳米纤维结构使细胞能够在凝胶中自由迁移。我们发现这些低浓度的分级纳米纤维是三维水凝胶植入物结构和生物力学优化的良好工具。此外,这种纳米结构化系统可作为一种方便的药物递送系统,用于从纳米纤维核心控制释放封装的生物活性物质。因此,我们提出了用于控释的新型三维纳米纤维基凝胶,有可能改变其生物力学性能以及用于直肠切除、子宫切除或盆腔清扫术后三维损伤愈合的药物释放。