基于细胞的药物输送系统:用于向治疗的创新药物输送器
Shynggys Sergazy1, Kulzhan Berikkhanova1,2, Alexandr Gulyayev1
1National Laboratory Astana, Nazarbayev University, Astana 010000, Kazakhstan.
International journal of molecular sciences
|September 13, 2025
概括
基于细胞的药物递送系统显示出改善向和生物相容性的前景. 混合微机器人和人工细胞工程的未来研究旨在克服临床翻译的挑战.
科学领域:
- 生物医学工程 生物医学工程
- 纳米技术 纳米技术
- 药理学 药理学是指药理学的学科.
背景情况:
- 基于细胞的药物递送系统利用自然细胞的特性来改善治疗结果.
- 各种细胞类型,包括红细胞,白细胞,血小板,干细胞和精子,被探索为药物载体.
- 混合微机器人和覆盖膜的纳米载体代表了新的生物混合平台.
研究的目的:
- 提供基于细胞的药物递送系统近期进展的综合分析.
- 专注于这些系统的设计,药理动力学,细胞相互作用和治疗潜力.
- 突出新兴的生物混合平台,如混合微机器人和膜涂层纳米载体.
主要方法:
- 关于基于细胞的药物输送的最新科学文献的审查.
- 设计原则,药物动力学概况和细胞相互作用的分析.
- 评估治疗应用和临床翻译挑战.
主要成果:
- 在利用多种细胞类型用于药物输送方面取得了显著进展.
- 鉴定混合微机器人和膜涂层纳米载体作为有前途的生物混合平台.
- 持续的挑战包括免疫清除,膜完整性,组织透和制造.
结论:
- 基于细胞的系统为改善药物向,生物可用性和生物相容性提供了潜力.
- 克服局限性对于临床翻译至关重要.
- 未来的方向,如CAR细胞组合和人工细胞工程,对各种治疗领域具有重大前景.
相关概念视频
Cellular Membranes and Drug Transport
1.4K
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.
1.4K
Targeted Cancer Therapies
8.6K
The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against...
There are several types of targeted therapies against...
8.6K
Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport
1.6K
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...
1.6K
Carrier-Mediated Transport
1.2K
Carrier-mediated transport is a pivotal process in drug absorption, particularly for lipid-insoluble drugs, and encompasses facilitated diffusion and active transport. Facilitated diffusion allows drugs to move along their concentration gradient without energy expenditure, while active transport utilizes ATP to drive drug movement against this gradient.
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
Active transport involves two types of membrane-spanning transporters: uptake and efflux. Uptake transporters are expressed in the small...
1.2K
Drug Delivery: Overview
730
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...
730
Targets for Drug Action: Overview
10.1K
Drugs target macromolecules to modify ongoing cellular processes. Primary drug targets include receptors, ion channels, transporters, and enzymes.
Receptors are either membrane-spanning or intracellular proteins, which upon binding a ligand, get activated and transmit the signal downstream to elicit a response. Drugs bind receptors, either mimicking the action of endogenous ligands or blocking the receptor activity to bring about a modified response. Nearly 35% of approved drugs target the G...
Receptors are either membrane-spanning or intracellular proteins, which upon binding a ligand, get activated and transmit the signal downstream to elicit a response. Drugs bind receptors, either mimicking the action of endogenous ligands or blocking the receptor activity to bring about a modified response. Nearly 35% of approved drugs target the G...
10.1K


