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相关概念视频

Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport01:23

Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport

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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...
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Pinocytosis00:38

Pinocytosis

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Cells use energy-requiring bulk transport mechanisms to transfer large particles or large numbers of small particles into or out of the cell. The cells envelop the particles in spherical membranes called vesicles or vacuoles. Vesicles that transport material into the cell are built from the cell membrane. These vesicles encapsulate external molecules and transport them into the cell in a process called endocytosis.
Pinocytosis ("cellular drinking") is one of three main types of...
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Introduction to Membrane Traffic01:44

Introduction to Membrane Traffic

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The ER, Golgi apparatus, endosomes, and lysosomes work in tandem to modify, sort, and package proteins and lipids. An integrated membrane trafficking network facilitates the back and forth shuttling of molecules within different organelles in the same cell or across the cell membrane.
The transport of soluble and membrane proteins is mediated by transport vesicles that collect cargo from one cellular compartment and deliver it to another by fusing with the target organelle membrane. The Rab...
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Endocytosis01:16

Endocytosis

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Eukaryotic cells acquire nutrients for growth and proliferation. Nutrients and other molecules that require degradation are internalized from the extracellular space by a process called endocytosis. The term ‘endocytosis' was first coined by Christian de Duve in 1963.
Endocytosis always begins with the plasma membrane enclosing an incoming molecule to form a transport vesicle which, in some cases, can be coated with a protein called ‘clathrin.' Endocytosed material is either...
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Delivery Pathways to the Lysosome01:36

Delivery Pathways to the Lysosome

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Eukaryotic cells use different mechanisms to eliminate toxic waste obsolete and worn-out substances. Lysosomes play a pivotal role in this, and hence, these substances are carried to the lysosome from other parts of the cell and extracellular space through different pathways. The most elaborately studied pathways to the lysosome are the endocytic pathways.
Endocytosis
In endocytosis, the cell membrane takes up macromolecules and particles from the surrounding medium. Clathrin-mediated...
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Vesicular Trasport: Endocytosis, Transcytosis and Exocytosis01:18

Vesicular Trasport: Endocytosis, Transcytosis and Exocytosis

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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...
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相关实验视频

Updated: May 14, 2025

Cell Squeezing as a Robust, Microfluidic Intracellular Delivery Platform
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通过挤压机械穿孔实现细胞内传递.

Guorui Zhang1, Rong Mu1, Yanfei Ma1,2

  • 1State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China.

Small methods
|May 13, 2025
PubMed
概括

挤压机械穿孔通过创建临时细胞膜孔提供高效的细胞内输送. 这项技术推动了细胞治疗,基因编辑和疫苗生产.

科学领域:

  • 生物技术是生物技术.
  • 细胞生物学 细胞生物学
  • 药物运输 药物运输 药物运输

背景情况:

  • 挤压机械穿孔是一种新兴的细胞内输送技术.
  • 它利用细胞的粘弹性特性来创建短暂的微孔.
  • 这些毛孔有助于各种外源物质进入细胞.

研究的目的:

  • 综合审查当前机械挤压介导细胞内输送方面的进展.
  • 探索该技术的基本原则,优势,应用和挑战.
  • 突出其在生物制造和细胞治疗中的潜力.

主要方法:

  • 关于挤压机械穿孔的当前文献的综述.
  • 对细胞变形和毛孔形成的基本原理的分析.
  • 检查细胞疗法,基因编辑和疫苗生产中的应用.

主要成果:

  • 压缩机械穿孔使核酸,抗体和药物等各种物质的高效,高通量输送成为可能.
  • 这种技术比传统的药物输送方法具有显著的优势.
  • 它为细胞内输送的挑战提供了有希望的解决方案.

结论:

关键词:
细胞变形细胞的变形.细胞内输送是细胞内输送.挤压机械孔机械粘性弹性 粘性弹性

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  • 挤压机械穿孔具有巨大的潜力,可以彻底改变药物输送和治疗模式.
  • 进一步优化和研究可以提高其在生物制造和细胞治疗中的应用.
  • 这种方法有望成为推动细胞疗法的关键技术.