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纳米纤维的表面功能化:面向先进生物医学应用的多方面方法。

Surface Functionalization of Nanofibers: The Multifaceted Approach for Advanced Biomedical Applications.

作者信息

Kulkarni Deepak, Musale Shubham, Panzade Prabhakar, Paiva-Santos Ana Cláudia, Sonwane Pratiksha, Madibone Monika, Choundhe Puja, Giram Prabhanjan, Cavalu Simona

机构信息

Department of Pharmaceutics, Srinath College of Pharmacy, Bajajnagar, Aurangabad 431136, India.

Formulation and Development Department, Aculife Healthcare Pvt. Ltd., Sachana, Ahmedabad 382150, India.

出版信息

Nanomaterials (Basel). 2022 Nov 4;12(21):3899. doi: 10.3390/nano12213899.

Abstract

Nanocarriers are gaining significant importance in the modern era of drug delivery. Nanofiber technology is one of the prime paradigms in nanotechnology for various biomedical and theranostic applications. Nanofibers obtained after successful electrospinning subjected to surface functionalized for drug delivery, biomedical, tissue engineering, biosensing, cell imaging and wound dressing application. Surface functionalization entirely changes physicochemical and biological properties of nanofibers. In physicochemical properties, wettability, melting point, glass transition temperature, and initial decomposition temperature significantly change offer several advantageous for nanofibers. Similarly, biological properties include cell adhesion, biocompatibility, and proliferation, also changes by functionalization of nanofibers. Various natural and synthetic materials polymers, metals, carbon materials, functional groups, proteins, and peptides, are currently used for surface modification of nanofibers. Various research studies across the globe demonstrated the usefulness of surface functionalized nanofibers in tissue engineering, wound healing, skin cancers, melanoma, and disease diagnosis. The delivery of drug through surface functionalized nanofibers results in improved permeation and bioavailability of drug which is important for better targeting of disease and therapeutic efficacy. This review provides a comprehensive insight about various techniques of surface functionalization of nanofibers along with its biomedical applications, toxicity assessment and global patent scenario.

摘要

在现代药物递送领域,纳米载体正变得愈发重要。纳米纤维技术是纳米技术中用于各种生物医学和治疗诊断应用的主要范例之一。成功进行静电纺丝后获得的纳米纤维会进行表面功能化处理,以用于药物递送、生物医学、组织工程、生物传感、细胞成像和伤口敷料应用。表面功能化完全改变了纳米纤维的物理化学和生物学特性。在物理化学特性方面,润湿性、熔点、玻璃化转变温度和初始分解温度显著变化,为纳米纤维带来了诸多优势。同样,生物学特性包括细胞黏附、生物相容性和增殖能力,也会因纳米纤维的功能化而改变。目前,各种天然和合成材料,如聚合物、金属、碳材料、官能团、蛋白质和肽,都被用于纳米纤维的表面改性。全球范围内的各种研究表明了表面功能化纳米纤维在组织工程、伤口愈合、皮肤癌、黑色素瘤和疾病诊断中的实用性。通过表面功能化纳米纤维递送药物可提高药物的渗透性和生物利用度,这对于更好地靶向疾病和提高治疗效果至关重要。本综述全面深入地介绍了纳米纤维表面功能化的各种技术及其生物医学应用、毒性评估和全球专利情况。

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