LaBNUS - Biomaterials and Nanotechnology Laboratory, i(bs)(2) - intelligent biosensing and biomolecule stabilization research group, University of Sorocaba, Sorocaba, SP, Brazil; CEB - Centre of Biological Engineering, University of Minho, Braga, Portugal.
LaBNUS - Biomaterials and Nanotechnology Laboratory, i(bs)(2) - intelligent biosensing and biomolecule stabilization research group, University of Sorocaba, Sorocaba, SP, Brazil.
Adv Drug Deliv Rev. 2015 Oct 1;93:25-41. doi: 10.1016/j.addr.2014.10.005. Epub 2014 Oct 12.
Within the context of biomedicine and pharmaceutical sciences, the issue of (therapeutic) protein stabilization assumes particular relevance. Stabilization of protein and protein-like molecules translates into preservation of both structure and functionality during storage and/or targeting, and such stabilization is mostly attained through establishment of a thermodynamic equilibrium with the (micro)environment. The basic thermodynamic principles that govern protein structural transitions and the interactions of the protein molecule with its (micro)environment are, therefore, tackled in a systematic fashion. Highlights are given to the major classes of (bio)therapeutic molecules, viz. enzymes, recombinant proteins, (macro)peptides, (monoclonal) antibodies and bacteriophages. Modification of the microenvironment of the biomolecule via multipoint covalent attachment onto a solid surface followed by hydrophilic polymer co-immobilization, or physical containment within nanocarriers, are some of the (latest) strategies discussed aiming at full structural and functional stabilization of said biomolecules.
在生物医药和药物科学领域,(治疗)蛋白质稳定化的问题显得尤为重要。蛋白质和类蛋白质分子的稳定化意味着在储存和/或靶向过程中保持其结构和功能,这种稳定化主要是通过与(微)环境建立热力学平衡来实现的。因此,以系统的方式处理控制蛋白质结构转变和蛋白质分子与其(微)环境相互作用的基本热力学原理。重点介绍主要类别的(生物)治疗分子,即酶、重组蛋白、(大)肽、(单克隆)抗体和噬菌体。通过多点共价附着在固体表面上修饰生物分子的微环境,然后进行亲水聚合物共固定化,或在纳米载体中进行物理包封,是讨论的旨在实现上述生物分子完全结构和功能稳定化的一些(最新)策略。