2015
DOI: 10.1016/j.actbio.2015.06.021
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Poly-γ-glutamic acid microneedles with a supporting structure design as a potential tool for transdermal delivery of insulin

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Cited by 119 publications
(55 citation statements)
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“…The biocompatible materials and the fabrication method lend the polymer MNs themselves to be safe, inexpensive, and easy for mass production. In recent years, various biodegradable polymers have been used in the development of solid MNs and applied to the pretreatment of the skin, such as polystyrene, 27 polyvinyl pyrrolidone, 28 polycarbonate, 29 photoresist (SU-8) resin 30 and so on. There have been made a progress in enhancing drug delivery with solid MNs for skin pretreatment.…”
Section: Introductionmentioning
confidence: 99%
“…The biocompatible materials and the fabrication method lend the polymer MNs themselves to be safe, inexpensive, and easy for mass production. In recent years, various biodegradable polymers have been used in the development of solid MNs and applied to the pretreatment of the skin, such as polystyrene, 27 polyvinyl pyrrolidone, 28 polycarbonate, 29 photoresist (SU-8) resin 30 and so on. There have been made a progress in enhancing drug delivery with solid MNs for skin pretreatment.…”
Section: Introductionmentioning
confidence: 99%
“…Данные микроиглы ис-пользуют в качестве депо для инкапсуляции ЛВ. После аппликации такой системы на кожу концы игл обламываются и служат имплантируемыми ре-зервуарами для контролированного высвобожде-ния ЛВ в процессе биодеградации полимерных ос-колков [76]. Недостатком такой системы являются трудности с дозированием ЛВ.…”
Section: использование микроигл для усиления чрескожного переносаunclassified
“…[26] Polymeric microneedles are the current research hotspot in transdermal drug delivery due to unique advantages such as easy and inexpensive fabrication process, excellent biocompatibility, and high drug loading amount. [27][28][29] More importantly, polymeric microneedles could be fabricated by a plethora of polymeric materials with different degradation/swelling profiles, and biological/physical stimuli-responsive properties, which increase the tunability of designing microneedles with controllable drug release profile for versatile biomedical applications. In this review, we attempt to discuss recent advances in the development of polymer microneedles for transdermal drug delivery and biological fluid monitoring and diagnosis.…”
Section: Introductionmentioning
confidence: 99%