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相关概念视频

Drug Discovery: Overview01:26

Drug Discovery: Overview

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Drug discovery is a multifaceted process involving extensive screening, testing, and optimization of lead compounds to identify potential new drugs for therapeutic use. It combines several approaches, including screening large numbers of natural products, chemical modification of known active molecules, identification of new drug targets, and rational design based on biological mechanisms and drug-receptor structure. These approaches are carried out in both academic research laboratories and...
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Structure-Activity Relationships and Drug Design01:28

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Drug design is a dynamic field that involves discovering and developing new medications based on specific biological targets. This process heavily relies on structure-activity relationships (SAR) and quantitative structure-activity relationships (QSAR) to guide the design and optimization of efficient drugs.
SAR studies the intricate relationship between a drug's chemical structure and biological activity. It focuses on understanding how modifications to a drug's structure can influence...
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Protein-Drug Binding: Determination Methods01:22

Protein-Drug Binding: Determination Methods

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Determining protein-drug binding can be achieved through indirect and direct methods, each providing valuable insights into the interaction between proteins and drugs.
Indirect methods involve isolating the bound drug from its free form in biological samples such as blood, serum, or plasma. These techniques aim to measure the percentage of drugs bound to proteins. Equilibrium dialysis is a commonly used method where the free drug concentration at equilibrium is measured by separating the bound...
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Protein Networks02:26

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An organism can have thousands of different proteins, and these proteins must cooperate to ensure the health of an organism. Proteins bind to other proteins and form complexes to carry out their functions. Many proteins interact with multiple other proteins creating a complex network of protein interactions.
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Protein-protein Interfaces02:04

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Many proteins form complexes to carry out their functions, making protein-protein interactions (PPIs) essential for an organism's survival. Most PPIs are stabilized by numerous weak noncovalent chemical forces. The physical shape of the interfaces determines the way two proteins interact. Many globular proteins have closely-matching shapes on their surfaces, which form a large number of weak bonds. Additionally, many PPIs occur between two helices or between a surface cleft and a...
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Targets for Drug Action: Overview01:26

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Drugs target macromolecules to modify ongoing cellular processes. Primary drug targets include receptors, ion channels, transporters, and enzymes.
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相关实验视频

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Nano-Differential Scanning Fluorimetry for Screening in Fragment-based Lead Discovery
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基于网络的方法及其在药物发现中的应用.

Zhuohang Yu1, Zengrui Wu1, Ze Wang1

  • 1Shanghai Frontiers Science Center of Optogenetic Techniques for Cell Metabolism, Shanghai Key Laboratory of New Drug Design, School of Pharmacy, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

Journal of chemical information and modeling
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PubMed
概括

基于网络的方法为药物发现提供了一个整体的方法,超越了传统的单一目标模型. 这些强大的工具通过分析复杂的生物网络来加快新疗法的识别.

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Biosensor-based High Throughput Biopanning and Bioinformatics Analysis Strategy for the Global Validation of Drug-protein Interactions
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NMR-Based Fragment Screening in a Minimum Sample but Maximum Automation Mode
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科学领域:

  • 系统生物学 系统生物学
  • 网络药理学 网络药理学
  • 计算机化药物发现.

背景情况:

  • 传统的药物发现遵循"一种药物 → 一种标 → 一种疾病"的模式,这往往是低效的.
  • 系统生物学和网络药理学使人们能够转向"多药物 → 多目标 → 多疾病"的方法.
  • 基于网络的方法与生物系统的整体性质保持一致.

研究的目的:

  • 在药物发现中引入基于网络的方法.
  • 为了突出其应用和挑战.
  • 为研究人员提供资源.

主要方法:

  • 介绍网络概念和数据源.
  • 传统网络方法的概述.
  • 讨论药物发现中的实际应用.

主要成果:

  • 基于网络的方法适用于目标预测,虚拟查和预测药物效应.
  • 这些方法有助于阐明分子作用机制.
  • 为实际使用提供了代表性Web服务器.

结论:

  • 基于网络的方法代表了药物发现中的强大范式转变.
  • 它们提供了加速新疗法识别和开发的工具.
  • 应对当前的挑战将进一步提高它们的实用性.