Biophysical Insights into Drug Discovery: Leveraging Phase Transitions and Protein Behavior for Therapeutic Innovation

Afam Uzorka, David Kibirige, David Makumbi
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Abstract

In the search for novel treatments for various diseases, the nexus of biophysics and drug discovery represents a dynamic and transformational paradigm. A new age in pharmaceutical research has begun thanks to biophysics and its thorough grasp of the structural and physical characteristics of biological molecules. This study explores how advances in biophysical approaches, including allosteric modulation, intrinsically disordered proteins (IDPs), and protein phase transitions, have transformed the drug development process. Protein phase transitions, supported by the biophysical principles, have provided crucial insights into disorders like ALS and Alzheimer’s, opening up new avenues for therapeutic intervention. Targeting IDPs and their role in liquid–liquid phase separation has produced creative approaches to diseases that were formerly thought to be resistant to therapy. In order to reduce the complexity of complicated diseases, the concept of allosteric modulation, made possible by biophysical understanding, offers a precise and selective approach to medication creation. This review highlights the significant influence of biophysics on the development of therapeutics and the discovery of new drugs. Biophysics is advancing the discipline toward the creation of more precise, efficient, and tailored medications by illuminating the biophysical properties of proteins, the complexities of phase transitions, and the dynamics of drug interactions. Biophysical insights are poised to alter healthcare by bringing together several fields and sustained innovation, giving people dealing with a variety of ailments fresh hope.
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药物发现的生物物理洞察:利用相变和蛋白质行为促进治疗创新
在寻找治疗各种疾病的新方法的过程中,生物物理学与药物发现之间的联系代表了一种动态的、变革性的模式。得益于生物物理学及其对生物分子结构和物理特性的透彻把握,药物研究的新时代已经来临。本研究探讨了生物物理方法(包括异位调节、固有无序蛋白(IDPs)和蛋白质相变)的进步如何改变了药物开发过程。在生物物理原理的支持下,蛋白质相变提供了对渐冻症和阿尔茨海默氏症等疾病的重要见解,为治疗干预开辟了新途径。以 IDPs 及其在液-液相分离中的作用为靶点,创造性地解决了以前认为难以治疗的疾病。为了降低复杂疾病的复杂性,通过生物物理理解而实现的异构调节概念为创造药物提供了一种精确而有选择性的方法。这篇综述强调了生物物理学对治疗方法开发和新药发现的重大影响。生物物理学通过揭示蛋白质的生物物理特性、相变的复杂性和药物相互作用的动态,正在推动该学科朝着创造更精确、更高效和更有针对性的药物的方向发展。生物物理的洞察力将汇集多个领域并持续创新,给人们带来新的希望,从而改变医疗保健。
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