Unique Fiber Morphologies from Emulsion Electrospinning—A Case Study of Poly(ε-caprolactone) and Its Applications

IF 3.2 Q3 CHEMISTRY, PHYSICAL Colloids and Interfaces Pub Date : 2023-02-27 DOI:10.3390/colloids7010019
Sagnik Ghosh, Anilkumar Yadav, Pramod M. Gurave, R. Srivastava
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引用次数: 2

Abstract

The importance of electrospinning to produce biomimicking micro- and nano-fibrous matrices is realized by many who work in the area of fibers. Based on the solubility of the materials to be spun, organic solvents are typically utilized. The toxicity of the utilized organic solvent could be extremely important for various applications, including tissue engineering, biomedical, agricultural, etc. In addition, the high viscosities of such polymer solutions limit the use of high polymer concentrations and lower down productivity along with the limitations of obtaining desired fiber morphology. This emphasizes the need for a method that would allay worries about safety, toxicity, and environmental issues along with the limitations of using concentrated polymer solutions. To mitigate these issues, the use of emulsions as precursors for electrospinning has recently gained significant attention. Presence of dispersed and continuous phase in emulsion provides an easy route to incorporate sensitive bioactive functional moieties within the core-sheath fibers which otherwise could only be hardly achieved using cumbersome coaxial electrospinning process in solution or melt based approaches. This review presents a detailed understanding of emulsion behavior during electrospinning along with the role of various constituents and process parameters during fiber formation. Though many polymers have been studied for emulsion electrospinning, poly(ε-caprolactone) (PCL) is one of the most studied polymers for this technique. Therefore, electrospinning of PCL based emulsions is highlighted as unique case-study, to provide a detailed theoretical understanding, discussion of experimental results along with their suitable biomedical applications.
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乳液静电纺丝独特的纤维形态——以聚ε-己内酯为例及其应用
许多从事纤维领域工作的人认识到静电纺丝在生产仿生微米和纳米纤维基质方面的重要性。基于待纺丝材料的溶解度,通常使用有机溶剂。所使用的有机溶剂的毒性对于各种应用可能是极其重要的,包括组织工程、生物医学、农业等。此外,这种聚合物溶液的高粘度限制了高聚合物浓度的使用,降低了生产率,同时也限制了获得所需纤维形态。这强调了需要一种方法来减轻对安全、毒性和环境问题的担忧,以及使用浓缩聚合物溶液的局限性。为了缓解这些问题,使用乳液作为静电纺丝的前体最近受到了极大的关注。乳液中分散和连续相的存在为在芯鞘纤维中引入敏感的生物活性功能部分提供了一种简单的途径,否则,在溶液或基于熔体的方法中使用繁琐的同轴静电纺丝工艺很难实现这一点。这篇综述详细了解了静电纺丝过程中乳液的行为,以及各种成分和工艺参数在纤维形成过程中的作用。尽管已经研究了许多聚合物用于乳液静电纺丝,但聚ε-己内酯(PCL)是该技术研究最多的聚合物之一。因此,PCL基乳液的静电纺丝是一个独特的案例研究,以提供详细的理论理解、实验结果的讨论及其合适的生物医学应用。
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来源期刊
Colloids and Interfaces
Colloids and Interfaces CHEMISTRY, PHYSICAL-
CiteScore
3.90
自引率
4.20%
发文量
64
审稿时长
10 weeks
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