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Injectable, Hyaluronic Acid-Based Scaffolds with Macroporous Architecture for Gene Delivery.

Cell Mol Bioeng. 2019; 
Ehsanipour A, Nguyen T, Aboufadel T, Sathialingam M, Cox P, Xiao W, Walthers CM, Seidlits SK,,,,.
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Peptide Synthesis … Cysteine-terminated RGD peptide (GCGYGRGDSPG, GenScript Biotech) was conjugated PEG-VS by reaction at room temperature for 1 h prior to gel formation to provide sites for cell adhesion5 For swelling and mechanical characterization studies, l-cysteine (Sigma Aldrich … Get A Quote

摘要

Biomaterials can provide localized reservoirs for controlled release of therapeutic biomolecules and drugs for applications in tissue engineering and regenerative medicine. As carriers of gene-based therapies, biomaterial scaffolds can improve efficiency and delivery-site localization of transgene expression. Controlled delivery of gene therapy vectors from scaffolds requires cell-scale macropores to facilitate rapid host cell infiltration. Recently, advanced methods have been developed to form injectable scaffolds containing cell-scale macropores. However, relative efficacy of in vivo gene delivery from scaffolds formulated using these general approaches has not been previously investigated. Using two of these... More

关键词

Gene therapy; Injectable scaffold; Lentivirus; Tissue engineering
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