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相关概念视频

Drug Delivery: Enteral Route01:18

Drug Delivery: Enteral Route

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The enteral drug administration involves three primary routes: oral, sublingual, and buccal. Oral ingestion is the most prevalent, safe, economical, and convenient method for drug administration. However, it has certain drawbacks, including limited absorption due to the drug's low water solubility or poor membrane permeability, possible emesis from GI mucosa irritation, destruction of drugs by digestive enzymes or low gastric pH, and irregular absorption along with food or other drugs.
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Drug Delivery: Parenteral Route01:29

Drug Delivery: Parenteral Route

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The parenteral route is a critical method of drug administration. It delivers compounds directly into the systemic circulation and bypasses the gastrointestinal tract. This approach is particularly advantageous for drugs that exhibit poor absorption or instability when administered orally.
There are three primary parenteral routes: intravenous (IV), intramuscular (IM), and subcutaneous (SC). The IV route introduces the drug directly into the bloodstream, ensuring immediate action. The IM route...
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Modified-Release Drug Delivery Systems: Rate-Programmed II01:19

Modified-Release Drug Delivery Systems: Rate-Programmed II

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Rate-programmed drug delivery systems release drugs in a controlled manner to maintain therapeutic levels. Three main designs include reservoir, matrix, and hybrid systems.Reservoir systems consist of a drug core enclosed within a membrane that controls drug release. In non-swelling reservoir systems, polymers like ethyl cellulose or polymethacrylates are used. These do not hydrate in aqueous media and control release through membrane thickness, porosity, or insolubility. This type includes...
137
Modified-Release Drug Delivery Systems: Rate-Programmed I01:22

Modified-Release Drug Delivery Systems: Rate-Programmed I

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Rate-programmed drug delivery systems (DDS) are designed to release drugs at specific, controlled rates to maintain consistent therapeutic levels. These systems are categorized based on their release mechanisms, including dissolution-controlled DDS, diffusion-controlled DDS, and combined dissolution-diffusion-controlled DDS.In dissolution-controlled DDS, the release rate depends on the slow dissolution of the drug itself or the surrounding matrix. Drugs with inherently slow dissolution rates,...
172
Modified-Release Drug Delivery Systems: Site-Targeted01:24

Modified-Release Drug Delivery Systems: Site-Targeted

164
Site-targeted drug delivery systems enhance therapeutic efficacy while minimizing systemic toxicity and treatment costs. Unlike conventional methods, these systems ensure precise drug delivery, improving bioavailability and reducing side effects. Targeted drug delivery is classified into three levels. First-order targeting directs drugs to the capillary beds of specific organs or tissues. Second-order targets specific cell types, such as tumor cells, using receptor-mediated interactions.
164
Intrauterine Drug Delivery Systems01:21

Intrauterine Drug Delivery Systems

168
Controlled-release systems for intravaginal and intrauterine drug delivery have been developed primarily for the administration of contraceptive steroid hormones. These delivery routes circumvent first-pass hepatic metabolism, thereby enhancing bioavailability and allowing for reduced systemic dosages compared to oral administration. Such approaches contribute to improved therapeutic efficacy and patient compliance, particularly in long-term contraceptive regimens.Intravaginal Drug Delivery...
168

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Delivery of Antibodies into the Murine Brain via Convection-enhanced Delivery
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中的药物可以提供精确的药物

Yuhao Xie1, Zhe-Sheng Chen1

  • 1Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, St. John's University, Queens, NY, USA.

Science (New York, N.Y.)
|June 26, 2025
PubMed
概括

该技术利用肠道细菌激活治疗炎症性肠病 (IBD) 的特定药物. 这种有针对性的方法旨在提高IBD患者的治疗效率并减少副作用.

科学领域:

  • 微生物学
  • 药理学
  • 胃肠病学

背景情况:

  • 炎症性肠病 (IBD) 包括克罗恩病和性结肠炎,其特征是慢性肠道炎症.
  • 目前的IBD疗法往往缺乏特异性,导致全身副作用和有效性有限.
  • 针对性药物供应仍然是管理IBD的一个重大挑战.

研究的目的:

  • 介绍和评估一种新型药物输送系统.
  • 证明肠道细菌能够在炎症的肠道环境中激活治疗剂.
  • 评估GlycoCaging在改善IBD治疗中的潜力.

主要方法:

  • 开发用于细菌酶分裂的GlycoCaging前药物.
  • 使用了体外和体内肠道炎症模型.
  • 分析药物释放动力和对细菌激活的治疗疗效.

主要成果:

  • 葡萄糖结合前药物被特定的肠道细菌有效地分裂.
  • 活性化药物在IBD模型中表现出局部抗炎作用.
  • 与传统药物管理相比,该系统显示了更好的治疗结果.

结论:

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  • 在肠道中向药物激活的有希望的策略.
  • 这种细菌介导的方法为IBD治疗提供了潜在的新途径.
  • 需要进一步的研究,以将GlycoCaging转化为炎症性肠病的临床应用.