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相关概念视频

Drug Administration and Therapy Phases: Overview01:26

Drug Administration and Therapy Phases: Overview

Drugs, the chemical agents used in diagnosing, treating, or preventing diseases, undergo a four-phase process of development: pharmaceutic, pharmacokinetics, pharmacodynamics, and therapeutic.
The pharmaceutical phase focuses on leveraging the physicochemical properties of the drug to design and manufacture an effective product. Variants include orally administered tablets or capsules, topical creams or ointments, and parenteral-delivery solutions or emulsions.
The pharmacokinetic phase...
Biopharmaceutical Factors Influencing Drug Product Design: Overview01:22

Biopharmaceutical Factors Influencing Drug Product Design: Overview

Rational drug product design integrates knowledge of the drug’s physicochemical properties, formulation components, manufacturing techniques, and intended route of administration. Each factor influences the drug’s performance, including how it is released, absorbed, and eliminated in the body.The physicochemical properties of a drug—such as solubility, stability, and particle size—affect its compatibility with excipients and the choice of dosage form. Excipients, though pharmacologically...
In Vitro Drug Release Testing: Overview, Development and Validation01:10

In Vitro Drug Release Testing: Overview, Development and Validation

In vitro dissolution and drug release tests assess how quickly and how much of a drug is released from its dosage form into an aqueous medium under standardized laboratory conditions. These tests are essential tools in pharmaceutical development and quality assurance, offering insight into the drug's performance before clinical use.During formulation development, dissolution testing identifies incomplete or inconsistent drug release issues. It also supports decisions on selecting the optimal...
Drug Dissolution: Requirements and Profile Comparison01:14

Drug Dissolution: Requirements and Profile Comparison

The acceptance criteria for dissolution profile data are anchored in Q values, representing the percentage of drug dissolved within a specified period. This assessment unfolds in three stages:First Stage: The test passes if all six drug dosage units are equal to or greater than Q plus 5%; otherwise, the sample proceeds to the second stage.Second Stage: The average of twelve units must be equal to or greater than Q, with no unit falling below Q - 15% to pass; if not, it progresses to the final...
Pharmaceutical Alternatives: Excipients and Impurities-Related Therapeutic Nonequivalence01:19

Pharmaceutical Alternatives: Excipients and Impurities-Related Therapeutic Nonequivalence

Pharmaceutical products contain more than just the active drug; they also contain various excipients such as binders, solubilizers, stabilizers, preservatives, and other elements. In some cases, impurities or contaminants might be present. Traditionally, quality control in pharmaceuticals has primarily focused on the analysis of the active drug, often overlooking the impact of these additional components. The recent issue with heparin contamination by over-sulfated chondroitin sulfate, a...
Pharmaceutical Alternatives: Polymorphic Form-Related and Particle Size-Related Therapeutic Nonequivalence01:27

Pharmaceutical Alternatives: Polymorphic Form-Related and Particle Size-Related Therapeutic Nonequivalence

Changes in polymorphic forms can significantly influence the bioavailability of poorly soluble drugs. Although the FDA defines pharmaceutical equivalence based on having the same active ingredient, dosage form, and route of administration, it does not automatically disqualify products with different polymorphic forms. This means two products with different polymorphs can still be deemed pharmaceutically equivalent. However, polymorphic differences can affect properties like wettability,...

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相关实验视频

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Process Optimization using High Throughput Automated Micro-Bioreactors in Chinese Hamster Ovary Cell Cultivation
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制药技术中的特征评论

Silviya Petrova Zustiak1, Era Jain2

  • 1Department of Biomedical Engineering, Saint Louis University, St. Louis, MO 60103, USA.

Pharmaceuticals (Basel, Switzerland)
|October 28, 2023
PubMed
概括

这个特别号强调了制药技术的进步. 它涵盖了创新和新兴趋势,塑造了药物开发和交付的未来.

科学领域:

  • 制药技术 制药技术 制药技术
  • 药物开发 药物开发
  • 生物技术是生物技术.

背景情况:

  • 制药技术领域正在迅速发展.
  • 持续创新对于解决未满足的医疗需求至关重要.
  • 新兴技术为药物配方和输送提供了新的可能性.

研究的目的:

  • 展示制药技术的尖端研究和发展.
  • 为最近的进展提供全面的概述.
  • 促进制药科学界内的讨论和合作.

主要方法:

  • 这本特别期刊有复习文章.
  • 专家作者总结了主要的发现和趋势.
  • 内容是精心策划的,以涵盖制药技术的各个领域.

主要成果:

  • 在纳米技术,控制释放系统和生物制药等领域取得了重大进展.
  • 新的制造技术正在提高效率和质量.
  • 数字化和人工智能正在改变药物发现和开发.

结论:

  • 制药技术领域是充满活力和创新的.

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  • 这些进展有望提高治疗效率和患者的治疗结果.
  • 持续的研发对于未来的突破是必不可少的.