[1]
Jo, Y. K.; Lee, D. Biopolymer microparticles prepared by microfluidics for biomedical applications. Small (Weinheim an der Bergstrasse, Germany), 2020, 16(9), e1903736.
[3]
Pattanashetti, N.A.; Heggannavar, G.B.; Kariduraganavar, M.Y. In smart biopolymers and their biomedical applications. International Conference on Sustainable and Intelligent Manufacturing (RESIM), Leiria, PORTUGAL Dec 14-17, 2016, pp. 263-279.
[5]
Gopinath, V.; Kamath, S. M.; Priyadarshini, S.; Chik, Z.; Alarfaj, A. A.; Hirad, A. H. Multifunctional applications of natural polysaccharide starch and cellulose: An update on recent advances. Biomed. Pharmacother., 2022, 146, 112492.
[10]
Kratz, F. Albumin as a drug carrier: Design of prodrugs, drug conjugates and nanoparticles. J. Control. Release, 2008, 132(3), 171-83.
[25]
Lei, C.; Liu, X. R.; Chen, Q. B.; Li, Y.; Zhou, J. L.; Zhou, L. Y.; Zou, T. Hyaluronic acid and albumin based nanoparticles for drug delivery. J. Control. Release, 2021, 331, 416-433.
[48]
Vindin, H.; Mithieux, S. M.; Weiss, A. S. Elastin architecture. Matrix Biol., 2019, 84, 4-16.
[52]
Jao, D.; Xue, Y.; Medina, J.; Hu, X. Protein-based drug-delivery materials. Materials, 2017, 10(5), 517.
[54]
Liu, W.; Dreher, M. R.; Furgeson, D. Y.; Peixoto, K. V.; Yuan, H.; Zalutsky, M. R.; Chilkoti, A. Tumor accumulation, degradation and pharmacokinetics of elastin-like polypeptides in nude mice. J. Control. Release, 2006, 116(2), 170-8.
[59]
Kelly, G.; Milligan, J. J.; Mastria, E. M.; Kim, S.; Zelenetz, S. R.; Dobbins, J.; Cai, L. Y.; Li, X.; Nair, S. K.; Chilkoti, A. Intratumoral delivery of brachytherapy and immunotherapy by a thermally triggered polypeptide depot. J. Control. Release, 2022, 343, 267-276.
[60]
Kang, H. J.; Kumar, S.; D'Elia, A.; Dash, B.; Nanda, V.; Hsia, H. C.; Yarmush, M. L.; Berthiaume, F. Self-assembled elastin-like polypeptide fusion protein coacervates as competitive inhibitors of advanced glycation end-products enhance diabetic wound healing. J. Control. Release, 2021, 333, 176-187.
[67]
Roldo, M.; Hornof, M.; Caliceti, P.; Bernkop-Schnürch, A. Mucoadhesive thiolated chitosans as platforms for oral controlled drug delivery: synthesis and in vitro evaluation. Eur. J. Pharm. Biopharm., 2004, 57(1), 115-21.
[69]
Zhang, L.; Zhang, N. Advances of chitosan and its derivatives in drug delivery systems. Chin. J. New Drugs Clin. Remedies, 2014, 33(1), 9-14.
[111]
Chen, K.; Zhang, Y.; Zhu, L.; Chu, H.; Shao, X.; Asakiya, C.; Huang, K.; Xu, W. Insights into nucleic acid-based self-assembling nanocarriers for targeted drug delivery and controlled drug release. J. Control. Release, 2022, 341, 869-891.
[161]
Pawar, A.; Thakkar, S.; Misra, M. A bird's eye view of nanoparticles prepared by electrospraying: Advancements in drug delivery field. J. Control. Release, 2018, 286, 179-200.
[168]
Hu, C.; Zhang, F.; Long, L.; Kong, Q.; Luo, R.; Wang, Y. Dual-responsive injectable hydrogels encapsulating drug-loaded micelles for on-demand antimicrobial activity and accelerated wound healing. J. Control. Release, 2020, 324, 204-217.
[172]
Zayed, G. M.; Rasoul, S. A.; Ibrahim, M. A.; Saddik, M. S.; Alshora, D. H. In vitro and in vivo characterization of domperidone-loaded fast dissolving buccal films. Saudi Pharm. J., 2020, 28(3), 266-273.
[175]
Stie, M. B.; Kalouta, K.; Vetri, V.; Foderà, V. Protein materials as sustainable non- and minimally invasive strategies for biomedical applications. J. Control. Release, 2022, 344, 12-25.
[204]
Song, P.; Lu, Z.; Jiang, T.; Han, W.; Chen, X.; Zhao, X. Chitosan coated pH/redox-responsive hyaluronic acid micelles for enhanced tumor targeted co-delivery of doxorubicin and siPD-L1. Int. J. Biol. Macromol., 2022, 222(Pt A), 1078-1091.