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相关概念视频

Drug Administration and Therapy Phases: Overview01:26

Drug Administration and Therapy Phases: Overview

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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...
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Pharmaceutical Equivalents01:26

Pharmaceutical Equivalents

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As defined by regulatory standards, pharmaceutical equivalents require generic drug products to have identical dosage forms and chemically identical active pharmaceutical ingredients (APIs). They must adhere to compendial or applicable standards for potency, content uniformity, disintegration times, and dissolution rates. In the case of modified-release dosage forms, variations in drug content are permissible as long as the delivered amount remains consistent with the innovator drug product.
182
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...
403
Biopharmaceutical Factors Influencing Drug Product Design: Overview01:22

Biopharmaceutical Factors Influencing Drug Product Design: Overview

233
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...
233
Pharmaceutical Alternatives: Polymorphic Form-Related and Particle Size-Related Therapeutic Nonequivalence01:27

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

151
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,...
151
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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相关实验视频

Updated: Jan 16, 2026

Author Spotlight: Microbial Control and Monitoring Strategies for Cleanroom Environments and Cellular Therapies
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Author Spotlight: Microbial Control and Monitoring Strategies for Cleanroom Environments and Cellular Therapies

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制药公司的热点地区

Robert F Service

    Science (New York, N.Y.)
    |October 2, 2025
    PubMed
    概括

    新的放射疗法为抗癌提供了更精确的方法. 这些先进的治疗方法旨在提高疗效并尽量减少健康组织的损伤.

    科学领域:

    • 癌症学
    • 辐射瘤学
    • 医学物理

    背景情况:

    • 癌症仍然是全世界主要的死亡原因.
    • 由于周围健康组织受损, 常规辐射疗法可能会产生显著的副作用.
    • 需要更有效,更有针对性的癌症治疗方法.

    研究的目的:

    • 介绍和讨论新一代的放射治疗技术.
    • 突出这些先进方法的潜在目标癌症治疗.
    • 探索相对于现有治疗策略的优势.

    主要方法:

    • 对目前放射性瘤学的进展进行回顾.
    • 分析新型放射治疗输送系统和技术.
    • 讨论新兴的治疗规划和成像技术.

    主要成果:

    • 新一代放射疗法在瘤向方面表现出更高的精度.
    • 这些先进的方法显示出改善治疗比率的潜力.
    • 早期的数据表明毒性降低,患者的治疗结果更好.

    结论:

    • 进步的放射治疗是癌症治疗的重要一步.

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  • 这些有针对性的方法有望更有效地控制癌症并减少副作用.
  • 预计进一步的研究和临床实施将彻底改变瘤护理.