Loading and release of a model high-molecular-weight protein from temperature-sensitive micro-structured hydrogels

Author:

Palomino Kenia,Magaña Héctor,Meléndez-López Samuel G.,Cornejo-Bravo José M.,Serrano-Medina Aracely,Alatorre-Meda Manuel,Rodríguez-Velázquez Eustolia,Rivero Ignacio

Funder

Consejo Nacional de Ciencia y Tecnología

Publisher

Springer Science and Business Media LLC

Subject

General Materials Science

Reference21 articles.

1. R. Zaman, R.A. Islam, N. Ibnat, I. Othman, A. Zaini, C.Y. Lee, and E.H. Chowdhury: Current strategies in extending half-lives of therapeutic proteins. J. Control. Release 301, 179 (2019).

2. P.K. Deb, O. Al-Attraqchi, B. Chandrasekaran, and A. Paradkar: Basic Fundamentals of Drug Delivery. Advances in Pharmaceutical Product Development and Research. Chapter 16 - Protein/Peptide Drug Delivery Systems: Practical Considerations in Pharmaceutical Product Development (Academic Press, Boston, 2019), pp. 651. https://doi.org/10.1016/B978-0-12-817909-3.00016-9.

3. T. Vermonden, R. Censi, and W.E. Hennink: Hydrogels for protein delivery. Chem. Rev. 112, 2853 (2012).

4. M. Yu, J. Wu, J. Shi, and O.C. Farokhzad: Nanotechnology for protein delivery: overview and perspectives. J. Control. Release 240, 24 (2016).

5. Y. Lu, W. Sun, and Z. Gu: Stimuli-responsive nanomaterials for therapeutic protein delivery. J. Control. Release 194, 1 (2014).

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