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相关概念视频

Factors Influencing Drug Absorption: Pharmaceutical Parameters01:28

Factors Influencing Drug Absorption: Pharmaceutical Parameters

129
Solid dosage forms such as tablets and capsules undergo rigorous manufacturing processes to ensure stability and effectiveness. Their dissolution and absorption properties are influenced significantly by the choice of excipients (inactive ingredients that serve various roles in the formulation), and the methodology applied during production. The manufacturing parameters, such as compression force and granulation techniques, significantly affect dissolution rates. Elevated compression forces...
129
Theories of Dissolution: The Danckwerts' Model and Interfacial Barrier Model01:09

Theories of Dissolution: The Danckwerts' Model and Interfacial Barrier Model

286
Various dissolution theories provide insight into the factors that influence the dissolution rate. Danckwerts' Model suggests that turbulence, rather than a stagnant layer, characterizes the dissolution medium at the solid-liquid interface. In this model, the agitated solvent contains macroscopic packets that move to the interface via eddy currents, facilitating the absorption and delivery of the drug to the bulk solution. The regular replenishment of solvent packets maintains the...
286
Theories of Dissolution: Diffusion Layer Model01:15

Theories of Dissolution: Diffusion Layer Model

730
Dissolution, the process by which drug particles dissolve in a solvent, is explained by the diffusion layer model, a theoretical framework that simulates the absorption of oral drugs and allows us to analyze experimental data.
This process starts with a thin layer, saturated with the drug, forming at the interface between the solid and liquid. The solute then diffuses from this layer into the main solution. The Noyes-Whitney equation suggests that the rate of dissolution relies on the diffusion...
730
Physiological Pharmacokinetic Models: Blood Flow-Limited Versus Diffusion-Limited Models00:57

Physiological Pharmacokinetic Models: Blood Flow-Limited Versus Diffusion-Limited Models

77
Physiological pharmacokinetic models, often called flow-limited or perfusion models, typically assume a swift drug distribution between tissue and venous blood, creating a rapid drug equilibrium. This premise is based on the idea that drug diffusion is extremely fast, and the cell membrane presents no barrier to drug permeation. In this scenario, where no drug binding occurs, the drug concentration in the tissue equals that of the venous blood leaving the tissue. This greatly simplifies the...
77
Three-Compartment Open Model01:06

Three-Compartment Open Model

188
The three-compartment open model is a pharmacokinetic model used to describe the distribution and elimination of drugs following extravascular administration. It comprises a central compartment representing the plasma and two peripheral compartments. The highly perfused peripheral compartment represents organs and tissues with a rich blood supply, such as the liver, kidneys, and lungs. The scarcely perfused peripheral compartment represents tissues with lower blood supply, such as adipose...
188
Model Approaches for Pharmacokinetic Data: Compartment Models01:14

Model Approaches for Pharmacokinetic Data: Compartment Models

88
Compartmental analysis is a widely adopted approach to characterizing drug pharmacokinetics. It uses compartment models that conceptualize the body as a collection of reversibly communicating compartments, each representing a group of tissues exhibiting similar drug distribution characteristics. The movement rate of the drug between these compartments is typically described by first-order kinetics.
Two primary types of compartment models are recognized: mammillary and catenary. The more...
88

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相关实验视频

Updated: Jun 22, 2025

Frugal Imaging Technique of Capillary Flow Through Three-Dimensional Polymeric Printing Powders
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一个双相流量模型模拟水透到药品片中的水.

Karthik Salish1, Prajwal Thool1, Yuri Qin2

  • 1Synthetic Molecule Pharmaceutical Sciences, Genentech, Inc., South San Francisco, CA 94080, United States.

International journal of pharmaceutics
|June 26, 2024
PubMed
概括

一个新的双相流量模型准确地模拟了水透到药物片中的情况,同时考虑了水和空气的运动. 该模型通过考虑在湿过程中毛细管压力和透率的变化来改善预测.

关键词:
达西的定律达西的定律是达西的定律.的媒介 的媒介药片分解 药片分解两个阶段的模型模型.洗燃烧方程是什么意思水的透 透水的透

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科学领域:

  • 制药科学 制药科学
  • 流体动力学 流体动力学
  • 材料科学 材料科学 材料科学

背景情况:

  • 了解水透到药物片中对于药物溶解和稳定性至关重要.
  • 现有的模型往往简化了流体相互作用,忽视了水和空气相之间的复杂相互作用.

研究的目的:

  • 引入和验证一种新的两相流量模型,用于模拟水透到药品片中的情况.
  • 将毛细管作用,相对透性和毛细管压力动态纳入模型.
  • 为了比较两相模型的性能与单相模型和实验数据.

主要方法:

  • 将达西定律与连续性原理整合在一起,以建模双相流 (水和空气).
  • 纳入了相对透率和毛细血管压力的演变作为水和的函数.
  • 通过对微晶纤维素 (MCC) 平板进行水透实验,对模型进行校准.
  • 通过FIB-SEM分析MCC粒子多孔性的验证结果.

主要成果:

  • 该模型成功预测了MCC片中的水透概况.
  • 校准结果显示MCC的平均孔径为42nm,与FIB-SEM (∼30nm) 一致.
  • 两相模型通过捕捉和度依赖的参数,显示出比单相模型更高的精度.

结论:

  • 开发的双相流量模型提供了一个更现实的模拟水透到平板电脑中的模拟.
  • 该模型能够考虑透性和毛细血管压力的动态变化,从而提高预测能力.
  • 这种方法为优化平板电脑配方和制造流程提供了巨大的潜力.