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相关概念视频

Inhaled Medications01:23

Inhaled Medications

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Inhaled medications are crucial for managing chronic obstructive pulmonary disease (COPD) and asthma. They are essential for effective treatment and control, ensuring optimal respiratory health and well-being. Inhaled medication delivers drugs directly to the lungs, providing a rapid onset of action and reducing systemic side effects compared to oral or injectable medications. Three primary types of inhalation devices are used to administer these medications: nebulizers, metered-dose inhalers...
396
Drug Delivery: Miscellaneous Routes01:22

Drug Delivery: Miscellaneous Routes

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Drug delivery methods like oral inhalation, nasal sprays, transdermal patches, eye drops, intravitreal injection,  and rectal administration provide localized effects with reduced toxicity.
Oral inhalation and nasal sprays swiftly transfer drugs across the respiratory epithelium's mucosal layer. Inhaled glucocorticoids and bronchodilators directly target lung conditions such as asthma, while fluticasone nasal spray mitigates allergic rhinitis.
Transdermal patches transport drugs...
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Additional Routes of Drug Administration01:18

Additional Routes of Drug Administration

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Choosing the appropriate route of drug administration is significantly influenced by two key factors: the therapeutic objectives and the inherent properties of the drug being used.
Administering drugs via inhalation allows for the direct delivery of gaseous, volatile substances or droplets to different parts of the respiratory tract. One of the advantages of the inhalation route is the rapid absorption of drugs into the circulatory system, which is possible because of the large surface area of...
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Inhalational Anesthetics: Overview01:20

Inhalational Anesthetics: Overview

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Inhalation anesthetics are drugs that induce general anesthesia upon inhalation. They work by increasing the sensitivity of GABAA receptors or inhibiting NMDA receptors, leading to a decrease in central nervous system activity. The depth of anesthesia can be rapidly adjusted by changing the concentration of the inhaled gas. Some common examples of inhalational anesthetics include volatile liquids like isoflurane, desflurane, sevoflurane and gases like xenon and nitrous oxide. Isoflurane, a...
525
Factors Affecting Dissolution: Particle Size and Effective Surface Area01:23

Factors Affecting Dissolution: Particle Size and Effective Surface Area

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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...
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Asthma-IV: Diagnostic and Management01:30

Asthma-IV: Diagnostic and Management

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The diagnosis and management of asthma are comprehensive, encompassing clinical assessments, lung function tests, and pharmacological interventions. Here's an overview:
Clinical Assessment for Asthma:
This is the first step in diagnosing and managing asthma. It includes:
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相关实验视频

Updated: Sep 15, 2025

Dry Powder and Nebulized Aerosol Inhalation of Pharmaceuticals Delivered to Mice Using a Nose-only Exposure System
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[可吸入纳米配方的进展]

Yinjia Luo1, Xiao Yue2, Ziyu Zhao2,3

  • 1College of Pharmacy, Jinan University, Guangzhou 510632, China. 18200598488@163.com.

Zhejiang da xue xue bao. Yi xue ban = Journal of Zhejiang University. Medical sciences
|July 16, 2025
PubMed
概括

可吸入的纳米配方可增强药物输送到肺部. 本综述探讨了用于治疗呼吸系统疾病的四种纳米配方的挑战和策略.

关键词:
控制药物释放材料 控制药物释放材料吸入的制剂 吸入的制剂纳米制剂的纳米配方呼吸道疾病 呼吸道疾病审查 审查 审查 审查

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科学领域:

  • 纳米技术 纳米技术
  • 制药科学 制药科学
  • 呼吸系统医学 呼吸系统医学

背景情况:

  • 纳米药物输送系统提供了诸如高表面积和可修改性等优势.
  • 吸入式纳米配方可实现精确的肺药物输送,改善呼吸道疾病的生物可用性和疗效.

研究的目的:

  • 审查目前用于呼吸道疾病的可吸入纳米配方.
  • 确定纳米药物输送与吸入系统整合的挑战和建议策略.

主要方法:

  • 关于四种类型的可吸入纳米配方的现有文献的审查.
  • 分析稳定性,加工和交付效率方面的挑战.
  • 讨论每个配方类型的优化策略.

主要成果:

  • 吸入液体制剂面临着气溶稳定性问题,通过优化而得到改善.
  • 压力计量剂量吸入器需要新的推进剂来保持纳米药物稳定性.
  • 干粉吸入器需要策略来增强肺部输送和纳米粒子完整性.
  • 软雾吸入器由于温和的原子化而保持纳米药物的完整性,显示出有希望的结果.

结论:

  • 软雾吸入器非常适合用于肺部纳米药物输送.
  • 解决稳定性和交付方面的挑战对于推进可吸入纳米配方至关重要.
  • 本综述为未来开发有效的可吸入纳米配方提供参考资料.