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相关概念视频

Factors Affecting Dissolution: Particle Size and Effective Surface Area01:23

Factors Affecting Dissolution: Particle Size and Effective Surface Area

798
Dissolution kinetics, an essential aspect of oral drug delivery, is significantly influenced by the drug's particle size. According to the Noyes-Whitney dissolution model, the dissolution rate correlates directly with the drug's surface area. The larger the surface area, the higher the drug's solubility in water, leading to a faster drug dissolution rate. Reducing particle size increases the effective surface area, enhancing the dissolution process. Micronization and nanosizing are...
798
Factors Influencing Drug Absorption: Pharmaceutical Parameters01:28

Factors Influencing Drug Absorption: Pharmaceutical Parameters

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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
Factors Affecting Dissolution: Drug Permeability, Stability and Stereochemistry01:20

Factors Affecting Dissolution: Drug Permeability, Stability and Stereochemistry

196
Orally administered drugs primarily enter the systemic circulation via passive diffusion through the intestinal membranes. The drug's absorption is influenced by drug stability in the gastrointestinal GI tract, membrane permeability, the surface area available for absorption, luminal drug concentration, and residence time in the lumen. Drug permeability can be enhanced by adjusting the lipophilicity, polarity, or molecular size of the drug, promoting its passive transport across intestinal...
196
Factors Influencing Drug Absorption: Drug Dissolution01:27

Factors Influencing Drug Absorption: Drug Dissolution

463
The pharmacokinetic journey of drugs from solid oral dosage forms into systemic circulation is multifaceted. It begins with disintegration, a prerequisite ensuring a solid dosage form's subdivision into minute particles. Dissolution occurs next as these granulated entities solubilize in gastrointestinal fluids. This solubilization is crucial for the succeeding stage, permeation, which describes the traversal of the drug across the intestinal membrane and its subsequent entry into the blood...
463
Biopharmaceutics and Pharmacokinetics: Overview01:28

Biopharmaceutics and Pharmacokinetics: Overview

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Understanding drugs, drug products, and their performance in pharmaceutical science is pivotal. Drugs, whether simple molecules or complex compounds, are designed to interact with the body's biological systems to diagnose, treat, or prevent diseases. Drug products include various delivery systems such as tablets, capsules, injections, and inhalers. The performance of these drug products is gauged by their ability to deliver the active ingredient to the desired site of action at the...
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Factors Influencing Drug Absorption: Physicochemical Parameters01:22

Factors Influencing Drug Absorption: Physicochemical Parameters

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The physicochemical characteristics of drugs play a crucial role in formulating stable and bioavailable drug products. The solubility of a drug, governed by the varying pH along the GI tract and its dissociation constant (pKa), is pivotal in determining its ionization state and absorption rate. Notably, weak acids and bases remain unionized and are absorbed more rapidly.
Enhanced drug absorption can be achieved by reducing particle sizes and increasing surface areas, thereby facilitating...
256

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Formulation and Characterization of Bioactive Agent Containing Nanodisks
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纳米悬浮:通过纳米化提高药物的生物可用性.

Rohit Chavhan1

  • 1Yash institute of pharmacy, Dharmapur, India.

Annales pharmaceutiques francaises
|June 30, 2024
PubMed
概括

纳米悬浮剂通过纳米化提高了难溶性药物的生物可用性. 这种制药创新提供了多功能应用,并改善了药物输送以获得更好的治疗结果.

科学领域:

  • 制药科学 制药科学
  • 药物输送系统 药物输送系统
  • 纳米技术 纳米技术

背景情况:

  • 纳米悬浮是一种关键的创新,用于提高难溶性药物的生物可用性.
  • 纳米化技术对于减少颗粒大小和提高药物溶解度至关重要.
  • 疏水性药物对传统的输送方法构成挑战,使纳米悬浮成为一种有价值的替代品.

研究的目的:

  • 探索纳米悬浮在制药创新的变革潜力.
  • 强调颗粒大小减小在药物输送中的关键作用.
  • 提供纳米悬浮技术的全面概述.

主要方法:

  • 研究了各种制备技术:高压均质化,介质,乳化-溶剂蒸发,沉和超临界流体过程.
  • 强调需要精细的规划,评估和持续的研究,以实现最佳使用.
  • 讨论了使用聚合物和表面活性剂的配方和稳定策略.

主要成果:

  • 纳米悬浮体在管理途径 (肠道,口腔,眼睛,肺部) 中表现出多功能性.
  • 它们为提高药物溶解性和生物可用性提供了一个有希望的解决方案.
  • 对特定部位的药物管理和量身定制的治疗策略的可能性.
关键词:
增强生物可用性增强生物可用性药物溶解性 药物溶解性 药物溶解性配方技术 配方技术的使用纳米化的纳米化.这是一种纳米悬浮.多功能药物输送多功能药物输送

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结论:

  • 纳米悬浮是一种克服生物可用性挑战的重要方法.
  • 谨慎的配方和稳定对于有效性和安全性至关重要.
  • 持续的研究和优化对于充分利用纳米悬浮在制药科学中的好处至关重要.