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相关概念视频

Bioavailability Enhancement: Drug Stability Enhancement and GI Retention01:05

Bioavailability Enhancement: Drug Stability Enhancement and GI Retention

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Improving a drug's stability in the gastrointestinal (GI) tract is paramount for enhancing its bioavailability and therapeutic effectiveness. Various strategies are employed to protect the drug from the harsh gastric milieu and to ensure its release and absorption at the desired site within the GI tract.Polymer coatings are one such method used to shield drugs from the stomach's acidic environment. By preventing premature drug release, these coatings improve the bioavailability of unstable...
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Modified-Release Drug Delivery Systems: Influencing Factors01:20

Modified-Release Drug Delivery Systems: Influencing Factors

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Modified-release drug delivery systems are designed to optimize the therapeutic effect of drugs by minimizing side effects, reducing the dosage required, and controlling drug release to align with pharmacokinetic and pharmacodynamic needs. The system depends on two key factors: the drug's release from the formulation and its movement through the body to the target site. Unlike conventional dosage forms, where absorption is the limiting step, the rate of drug release is the key determinant in...
215
Modified-Release Drug Delivery Systems: Drug Release Characteristics01:22

Modified-Release Drug Delivery Systems: Drug Release Characteristics

263
Drug release from modified-release dosage forms is designed to achieve specific therapeutic effects by controlling the rate and extent of drug release. The classification of these drug release systems is based on key pharmacokinetic assumptions: drug disposition follows first-order kinetics, drug release is the rate-limiting step in absorption, and the released drug is rapidly and completely absorbed.There are four major models of drug release patterns. The first model is the slow zero-order...
263
Modified-Release Drug Delivery Systems: Classification01:23

Modified-Release Drug Delivery Systems: Classification

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Modified-release drug delivery systems improve drug efficacy and minimize side effects by controlling the rate and location of drug release. These systems fall into three categories: rate-programmed, stimuli-activated, and site-targeted.Rate-programmed systems release drugs at a predetermined rate, maintaining consistent therapeutic levels and reducing fluctuations that could lead to toxicity or subtherapeutic effects. These systems use polymeric matrices, reservoir-based designs, or osmotic...
318
Oral Drug Delivery Systems: Continuous-Release Systems01:26

Oral Drug Delivery Systems: Continuous-Release Systems

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Continuous-release drug delivery systems offer a strategic approach to maintaining therapeutic drug levels over extended periods following oral administration. By modulating the release rate of active pharmaceutical ingredients, these systems minimize fluctuations in plasma concentrations, which enhances clinical efficacy and reduces the need for frequent dosing. Such characteristics make them particularly advantageous in managing chronic diseases where patient adherence and stable drug...
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Oral Drug Delivery Systems: Delayed-Release Systems01:11

Oral Drug Delivery Systems: Delayed-Release Systems

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Delayed-release drug delivery systems are specialized pharmaceutical formulations designed to postpone the release of active compounds until the drug reaches a specific region of the gastrointestinal (GI) tract, typically the intestine. These systems are essential for drugs that may cause gastric irritation, are unstable in acidic environments, or need to exert therapeutic effects locally in the intestinal or colonic regions.The core feature of delayed-release systems is the use of enteric...
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富可丁的创新控制释放系统:研究进展和应用

Shiyan Wang1, Mengran Guo1, Zhaohui Jin1

  • 1Department of Pharmacy, West China Hospital, Sichuan University, Chengdu 610041, China.

Pharmaceutics
|July 30, 2025
PubMed
概括

海洋胡卜素富可桑丁显示有前途,但面临生物可用性挑战. 控制释放纳米技术,包括生物启发系统,通过提高输送和疗效,正在增强其制药和营养药的应用.

科学领域:

  • 海洋生物技术 海洋生物技术
  • 胡卜素的化学成分
  • 药物输送系统是药物输送系统.

背景情况:

  • 富可丁是一种来自藻类的海洋胡卜素,具有潜在的药物和营养药物用途.
  • 它的不和结构导致不稳定性,溶解性差,生物可用性低,限制了应用.
  • 控制释放纳米技术正在探索克服这些局限性.

研究的目的:

  • 审查富可桑丁的生物活性和控制释放系统的最新进展.
  • 为了突出纳米技术解决fucoxanthin的配方挑战.
  • 讨论新兴的生物灵感传递系统,以增强福可桑丁的应用.

主要方法:

  • 系统审查关于富可桑和控制释放系统的科学文献.
  • 分析各种配方:乳液,纳米颗粒,纳米纤维,纳米结构脂质载体.
  • 评估生物灵感系统,如细胞外囊泡和细胞膜衍生系统.

主要成果:

  • 使用天然/合成材料的控制释放系统可以改善富可桑的配方.
  • 生物灵感系统提供卓越的封装,免疫相容性和屏障透.
  • 输送系统可以提高生物安全性,生物可用性,生物活性保护和治疗性能.
关键词:
生物可用性 生物可用性控制释放系统的控制释放系统细胞外囊泡中的细胞外囊泡.富可桑丁是一种富可桑丁.水溶性较差,水溶性较差.

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结论:

  • 先进的受控释放和生物灵感系统对于克服富可桑的局限性至关重要.
  • 这些创新释放了富可桑在药物开发和食补充剂方面的潜力.
  • 在工程交付平台上的进一步研究将优化富可桑的治疗价值.