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Coiled-Coil Protein Hydrogels Engineered with Minimized Fiber Diameters for Sustained Release of Doxorubicin in Triple-Negative Breast Cancer

ACS Biomater Sci Eng. 2024-04; 
Dustin Britton, Jakub Legocki, Deven Paul, Olga Katsara, Orlando Aristizabal, Neelam Pandya, Orin Mishkit, Yingxin Xiao, Matias Aristizabal, Neha Rahman, Robert Schneider, Youssef Z Wadghiri, Jin Kim Montclare
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Molecular Biology Reagents … (29) Briefly, the Q8/pQE60 plasmid, purchased from Genscript, was transformed into chemical competent M15MA E. coli cells on tryptic soy agar plates. Colonies were used to inoculate … Get A Quote

摘要

Triple-negative breast cancer (TNBC) lacks expressed protein targets, making therapy development challenging. Hydrogels offer a promising new route in this regard by improving the chemotherapeutic efficacy through increased solubility and sustained release. Moreover, subcutaneous hydrogel administration reduces patient burden by requiring less therapy and shorter treatment times. We recently established the design principles for the supramolecular assembly of single-domain coiled-coils into hydrogels. Using a modified computational design algorithm, we designed Q8, a hydrogel with rapid assembly for faster therapeutic hydrogel preparation. Q8 encapsulates and releases doxorubicin (Dox), enabling localized susta... More

关键词

computational design, drug delivery, hydrogel, protein engineering, triple negative breast cancer