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Designing electrospun fiber platforms for efficient delivery of genetic material and genome editing tools.
Puhl, Devan L; Mohanraj, Divya; Nelson, Derek W; Gilbert, Ryan J.
Affiliation
  • Puhl DL; Department of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA; Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, 1623 15th Street, Troy, NY 12180, USA. Electronic address: puhld@rpi.edu.
  • Mohanraj D; Department of Biological Sciences, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA; Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, 1623 15th Street, Troy, NY 12180, USA. Electronic address: mohand4@rpi.edu.
  • Nelson DW; Department of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA; Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, 1623 15th Street, Troy, NY 12180, USA. Electronic address: nelsod4@rpi.edu.
  • Gilbert RJ; Department of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA; Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, 1623 15th Street, Troy, NY 12180, USA. Electronic address: gilber2@rpi.edu.
Adv Drug Deliv Rev ; 183: 114161, 2022 04.
Article in En | MEDLINE | ID: mdl-35183657
ABSTRACT
Electrospun fibers are versatile biomaterial platforms with great potential to support regeneration. Electrospun fiber characteristics such as fiber diameter, degree of alignment, rate of degradation, and surface chemistry enable the creation of unique, tunable scaffolds for various drug or gene delivery applications. The delivery of genetic material and genome editing tools via viral and non-viral vectors are approaches to control cellular protein production. However, immunogenicity, off-target effects, and low delivery efficiencies slow the progression of gene delivery strategies to clinical settings. The delivery of genetic material from electrospun fibers overcomes such limitations by allowing for localized, tunable delivery of genetic material. However, the process of electrospinning is harsh, and care must be taken to retain genetic material bioactivity. This review presents an up-to-date summary of strategies to incorporate genetic material onto or within electrospun fiber platforms to improve delivery efficiency and enhance the regenerative potential of electrospun fibers for various tissue engineering applications.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nanofibers Limits: Humans Language: En Journal: Adv Drug Deliv Rev Journal subject: FARMACOLOGIA / TERAPIA POR MEDICAMENTOS Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Nanofibers Limits: Humans Language: En Journal: Adv Drug Deliv Rev Journal subject: FARMACOLOGIA / TERAPIA POR MEDICAMENTOS Year: 2022 Document type: Article