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Ocular application of electrospun materials for drug delivery and cellular therapies

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DRUG DISCOVERY TODAY
卷 28, 期 9, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.drudis.2023.103676

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The limitations of conventional ocular drug delivery methods have led to the development of novel drug delivery systems using electrospun fibers. These fibers have exceptional structural properties and have gained significant interest in ocular drug delivery and biomaterial applications. This review discusses the recent developments of electrospun fibers for delivering drugs, biologics, cells, growth factors, and tissue regeneration in treating ocular diseases. The review also provides insights into the selection of materials and fabrication techniques for achieving controlled drug release and cell therapy.
The constraints of delivering conventional drugs, biologics and cell-based therapeutics to target ocular sites necessitate the fabrication of novel drug delivery systems to treat diverse ocular diseases. Conventional ocular drug delivery approaches are prone to low bioavailability, poor penetration and degradation of therapeutics, including cell-based therapies, leading to the need for frequent topical applications or intraocular injections. However, owing to their exceptional structural properties, nanofibrous and microfibrous electrospun materials have gained significant interest in ocular drug delivery and biomaterial applications. This review covers the recent developments of electrospun fibers for the delivery of drugs, biologics, cells, growth factors and tissue regeneration in treating ocular diseases. The insights from this review can provide a thorough understanding of the selection of materials for the fabrication of nano- and/or micro-fibrous systems for ocular applications, with a particular interest in achieving controlled drug release and cell therapy. A detailed modality for fabricating different types of nano- and micro-fibers produced from electrospinning and factors influencing generation are also discussed.

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