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相关概念视频

Drug Elimination by Renal Route: Tubular Secretion01:15

Drug Elimination by Renal Route: Tubular Secretion

Once the process of glomerular filtration is completed, blood carrying unfiltered drug molecules traverses through efferent arterioles and makes its way into the peritubular capillaries in the proximal tubule. A variety of carriers play a pivotal role in actively secreting drugs from these peritubular capillaries into the tubular fluid. The organic anion transporter transfers acidic drugs, against an electrochemical gradient, from the peritubular capillaries into the renal tubule cells and...
Cellular Membranes and Drug Transport01:24

Cellular Membranes and Drug Transport

Drugs must traverse multiple biological barriers, such as multi-layered skin, single-layered intestinal epithelium, and the plasma membrane, to reach their target sites within the body. The plasma membrane, a highly structured composite of phospholipids, carbohydrates, and proteins, is the cell's protective boundary, facilitating selective substance exchange.
Phospholipids arrange themselves into a bilayer, with hydrophilic heads oriented outward and hydrophobic tails facing inward.
Pore Transport and Ion-Pair Transport01:17

Pore Transport and Ion-Pair Transport

Pore transport and ion-pair formation are critical mechanisms for the absorption and distribution of drugs in the body.
Pore transport, also known as convective transport, is a process where small molecules like urea, water, and sugars rapidly cross cell membranes as though there were channels or pores in the membrane. Although direct microscopic evidence is limited  but the concept of pores or channels is widely accepted based on physiological evidence. Despite the lack of direct microscopic...
Carrier-Mediated Transport01:06

Carrier-Mediated Transport

Carrier-mediated transport is a pivotal process in drug absorption, particularly for lipid-insoluble drugs, and encompasses facilitated diffusion and active transport. Facilitated diffusion allows drugs to move along their concentration gradient without energy expenditure, while active transport utilizes ATP to drive drug movement against this gradient.
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
Hepatic Drug Clearance: Role of Transporters01:14

Hepatic Drug Clearance: Role of Transporters

In the liver and bile canaliculi, influx and efflux transporters modification can influence intrinsic clearance. Transporters play a significant role in moving drugs within liver cells. Elaborate models, such as the Biopharmaceutical Classification System (BCS), are essential to relate transporters to drug disposition. This system categorizes drugs into four classes based on solubility and permeability, providing insights into elimination routes and the effects of transporters following oral...
Pharmacogenetics of Drug Transporters: P-Glycoprotein and Solute Carrier Transporters01:16

Pharmacogenetics of Drug Transporters: P-Glycoprotein and Solute Carrier Transporters

The pharmacogenetics of drug transporters is increasingly recognized as a critical factor influencing interindividual variability in drug absorption, distribution, and elimination. These membrane-bound proteins regulate drugs' movement across cellular barriers by actively pumping them out (efflux) or facilitating their uptake (influx). Among the major transporter families, ATP-binding cassette (ABC) and solute carrier (SLC) transporters play particularly prominent roles. Genetic polymorphisms...

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相关实验视频

Updated: May 12, 2026

Expression, Detergent Solubilization, and Purification of a Membrane Transporter, the MexB Multidrug Resistance Protein
10:43

Expression, Detergent Solubilization, and Purification of a Membrane Transporter, the MexB Multidrug Resistance Protein

Published on: December 3, 2010

人类多药耐药性P-糖蛋白的药物输送和化物通道功能的分离.

D R Gill1, S C Hyde, C F Higgins

  • 1Imperial Cancer Research Fund Laboratories, Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, England.

Cell
|October 2, 1992
PubMed
概括

人类P-糖蛋白有两个不同的功能:药物运输和化物通道活动. 这些功能可以通过突变来分开,这表明这个重要的蛋白质具有不同的功能状态.

科学领域:

  • 生物化学 生物化学
  • 分子生物学分子生物学
  • 细胞生理学 细胞生理学

背景情况:

  • P-glycoprotein (P-gp) 是人类多种药物耐药性的关键载体,积极地从细胞中抽出细胞毒药物.
  • P-gp表达也与体积激活的化物通道有关,这表明它可能具有双重作用.

研究的目的:

  • 为了研究P-糖蛋白的药物运输和化通道功能之间的关系.
  • 要确定这两种活动是否代表蛋白质的不同功能状态.

主要方法:

  • 对ATP水解 (用于药物运输) 与ATP结合 (用于通道激活) 的比较分析.
  • 在不同强度条件下 (低强度) 评估P-gp功能.
  • 核酸结合域的局部定向突变发生,以分离运输和通道活动.

主要成果:

  • 药物运输需要ATP水解,而通道激活只需要ATP结合.
  • 对于传输和通道活动,P-gp表现出不同的功能状态,根据音调性可相互转换.
  • 便携式药物抑制了通道激活,但没有预先激活的通道功能.
  • 核酸结合域中的突变成功地分离了运输和通道功能.

结论:

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A Proteoliposome-Based Efflux Assay to Determine Single-molecule Properties of Cl- Channels and Transporters
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A Proteoliposome-Based Efflux Assay to Determine Single-molecule Properties of Cl- Channels and Transporters

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Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
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Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis

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Last Updated: May 12, 2026

Expression, Detergent Solubilization, and Purification of a Membrane Transporter, the MexB Multidrug Resistance Protein
10:43

Expression, Detergent Solubilization, and Purification of a Membrane Transporter, the MexB Multidrug Resistance Protein

Published on: December 3, 2010

A Proteoliposome-Based Efflux Assay to Determine Single-molecule Properties of Cl- Channels and Transporters
07:47

A Proteoliposome-Based Efflux Assay to Determine Single-molecule Properties of Cl- Channels and Transporters

Published on: April 20, 2015

Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis
09:44

Small-Scale Plasma Membrane Preparation for the Analysis of Candida albicans Cdr1-mGFPHis

Published on: June 13, 2021

  • P-糖蛋白是双功能性,具有药物运输和化物通道活动,由不同的功能状态介导.
  • 了解这些单独的功能对设计新型化疗药物有影响.
  • 对P-gp双功能性的洞察力可以为相关蛋白质的研究提供信息,例如囊性纤维化转膜导电调节器 (CFTR).