转移体:用于局部眼部药物输送的下一代药物输送系统
Santosh Bhujbal1, Ilva D Rupenthal1, Vandana B Patravale2
1Buchanan Ocular Therapeutics Unit, Department of Ophthalmology, Aotearoa-New Zealand National Eye Centre, University of Auckland, Auckland, New Zealand.
Expert opinion on drug delivery
|April 24, 2025
概括
转移体 (TFS) 由于其独特的可变形性质,为眼部药物输送挑战提供了一个有希望的解决方案. 需要进一步的研究来优化它们的稳定性,并了解它们的透机制以临床应用.
科学领域:
- 药品制造 药品制造 药品制造
- 眼科医生 眼科 眼科
- 纳米技术纳米技术
背景情况:
- 由于眼睛的复杂解剖和生理障碍,眼部药物输送面临重大挑战.
- 转移体 (TFS),以增强通过皮肤传递而闻名,在眼部应用中有很大未开发的潜力.
研究的目的:
- 审查眼部药物输送方面的挑战.
- 突出TFS的特性,可以克服这些挑战.
- 讨论眼部药物输送的TFS最近的进展.
主要方法:
- 关于眼部药物输送挑战的综合文献综述.
- 对TFS特性,辅助剂影响和过程参数的分析.
- 评估TFS制造,表征和最近的眼部应用研究.
主要成果:
- TFS具有独特的应力反应和可变形特性,有利于眼部传递.
- 辅助剂和过程参数显著影响TFS特征.
- 最近的研究表明,TFS在眼部药物输送应用中取得了有希望的结果.
结论:
- 透视囊是眼部药物输送的有希望的载体,为提高药物透提供了潜在的潜力.
- 进一步的研究对于阐明TFS透机制和优化市场转换的稳定性和可扩展性至关重要.
相关概念视频
Drug Delivery: Miscellaneous Routes
272
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...
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...
272
Drug Delivery: Overview
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The selection of a drug's delivery route depends upon its physicochemical properties, including lipid or water solubility and ionization, as well as the therapeutic requirement, such as immediate or sustained effect. These routes can be divided into three primary categories: enteral, parenteral, and topical.
Enteral delivery involves administering drugs directly through swallowing, sublingual placement, or buccal application. Orally administered drugs predominantly navigate the...
Enteral delivery involves administering drugs directly through swallowing, sublingual placement, or buccal application. Orally administered drugs predominantly navigate the...
248
Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport
306
Drugs need to permeate cell membranes to reach their target sites after administration. Orally administered drugs must transcend intestinal epithelial membrane barriers to infiltrate the systemic circulation. Drugs with a molecular weight of less than 500 Daltons diffuse through gaps between neighboring cells, called paracellular pathways.
However, most drugs use the transcellular route, traversing directly through the cell membranes via two mechanisms: passive and active transport. Passive...
However, most drugs use the transcellular route, traversing directly through the cell membranes via two mechanisms: passive and active transport. Passive...
306
Non-Oral Extravascular Drug Absorption Routes
177
Non-oral extravascular routes, which encompass sublingual, buccal, topical, intramuscular, and inhalation methods, primarily utilize passive diffusion to transport drugs into the systemic circulation. The absorption rates and effectiveness of these routes depend on the drug's physicochemical properties, as well as the patient's anatomical and pathophysiological state.
Lipophilic drugs that are stable at salivary pH (6) and exhibit minimal binding to the oral mucosa are absorbed more...
Lipophilic drugs that are stable at salivary pH (6) and exhibit minimal binding to the oral mucosa are absorbed more...
177
Cellular Membranes and Drug Transport
232
Drugs must traverse multiple biological barriers, such as multi-layered skin, single-layered intestinal epithelium, and the plasma membrane, to reach their target sites within the body. The plasma membrane, a highly structured composite of phospholipids, carbohydrates, and proteins, is the cell's protective boundary, facilitating selective substance exchange.
Phospholipids arrange themselves into a bilayer, with hydrophilic heads oriented outward and hydrophobic tails facing inward.
Phospholipids arrange themselves into a bilayer, with hydrophilic heads oriented outward and hydrophobic tails facing inward.
232
Vesicular Trasport: Endocytosis, Transcytosis and Exocytosis
613
Vesicular transport is a cellular process that encompasses the engulfment of particles or dissolved substances by cells. It involves endocytosis, transcytosis, and exocytosis.
Endocytosis is a cellular mechanism that involves the inward folding of the cell membrane to create vesicles that capture and transport large drug molecules. This process comprises two distinct methods: pinocytosis (often referred to as "cell drinking") and phagocytosis (often referred to as "cell...
Endocytosis is a cellular mechanism that involves the inward folding of the cell membrane to create vesicles that capture and transport large drug molecules. This process comprises two distinct methods: pinocytosis (often referred to as "cell drinking") and phagocytosis (often referred to as "cell...
613


