Green Electrospun Nanofibers for Biomedicine and Biotechnology

Elyor Berdimurodov, Omar Dagdag, Khasan Berdimuradov, Wan Nik Wan Mohd Norsani, Ilyos Eliboev, Mansur Ashirov, Sherzod Niyozkulov, Muslum Demir, Chinmurot Yodgorov, Nizomiddin Aliev
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Abstract

Green electrospinning harnesses the potential of renewable biomaterials to craft biodegradable nanofiber structures, expanding their utility across a spectrum of applications. In this comprehensive review, we summarize the production, characterization and application of electrospun cellulose, collagen, gelatin and other biopolymer nanofibers in tissue engineering, drug delivery, biosensing, environmental remediation, agriculture and synthetic biology. These applications span diverse fields, including tissue engineering, drug delivery, biosensing, environmental remediation, agriculture, and synthetic biology. In the realm of tissue engineering, nanofibers emerge as key players, adept at mimicking the intricacies of the extracellular matrix. These fibers serve as scaffolds and vascular grafts, showcasing their potential to regenerate and repair tissues. Moreover, they facilitate controlled drug and gene delivery, ensuring sustained therapeutic levels essential for optimized wound healing and cancer treatment. Biosensing platforms, another prominent arena, leverage nanofibers by immobilizing enzymes and antibodies onto their surfaces. This enables precise glucose monitoring, pathogen detection, and immunodiagnostics. In the environmental sector, these fibers prove invaluable, purifying water through efficient adsorption and filtration, while also serving as potent air filtration agents against pollutants and pathogens. Agricultural applications see the deployment of nanofibers in controlled release fertilizers and pesticides, enhancing crop management, and extending antimicrobial food packaging coatings to prolong shelf life. In the realm of synthetic biology, these fibers play a pivotal role by encapsulating cells and facilitating bacteria-mediated prodrug activation strategies. Across this multifaceted landscape, nanofibers offer tunable topographies and surface functionalities that tightly regulate cellular behavior and molecular interactions. Importantly, their biodegradable nature aligns with sustainability goals, positioning them as promising alternatives to synthetic polymer-based technologies. As research and development continue to refine and expand the capabilities of green electrospun nanofibers, their versatility promises to advance numerous applications in the realms of biomedicine and biotechnology, contributing to a more sustainable and environmentally conscious future.
生物医学和生物技术用绿色静电纺纳米纤维
绿色静电纺丝利用了可再生生物材料的潜力来制造可生物降解的纳米纤维结构,扩大了它们在一系列应用中的效用。本文综述了电纺纤维素、胶原蛋白、明胶等生物高分子纳米纤维的制备、表征及其在组织工程、药物输送、生物传感、环境修复、农业和合成生物学等领域的应用。这些应用跨越多个领域,包括组织工程、药物输送、生物传感、环境修复、农业和合成生物学。在组织工程领域,纳米纤维成为关键的参与者,擅长模仿复杂的细胞外基质。这些纤维用作支架和血管移植物,显示出它们再生和修复组织的潜力。此外,它们有助于控制药物和基因的传递,确保持续的治疗水平,这对优化伤口愈合和癌症治疗至关重要。生物传感平台是另一个突出的领域,它通过将酶和抗体固定在纳米纤维表面来利用纳米纤维。这使得精确的血糖监测,病原体检测和免疫诊断。在环境领域,这些纤维被证明是无价的,通过有效的吸附和过滤来净化水,同时也可以作为对抗污染物和病原体的有效空气过滤剂。农业应用看到纳米纤维在控释肥料和农药中的应用,加强作物管理,延长抗菌食品包装涂层以延长保质期。在合成生物学领域,这些纤维通过包裹细胞和促进细菌介导的前药激活策略发挥关键作用。在这个多面景观中,纳米纤维提供了可调的地形和表面功能,严格调节细胞行为和分子相互作用。重要的是,它们的可生物降解特性符合可持续发展目标,使它们成为合成聚合物技术的有前途的替代品。随着研究和开发的不断完善和扩大绿色静电纺纳米纤维的能力,其多功能性有望推进生物医学和生物技术领域的众多应用,为更可持续和更环保的未来做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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