细胞外囊泡和脂蛋白相互作用
Raluca E Ghebosu1, Jenifer Pendiuk Goncalves1, Joy Wolfram1,2,3
1Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia.
Nano letters
|December 20, 2023
概括
细胞外囊泡和脂蛋白形成功能复合体,影响健康和疾病. 对这些相互作用的进一步研究对于开发新的诊断和治疗方法至关重要.
科学领域:
- 生物化学 生物化学
- 纳米医学是一种纳米医学.
- 细胞生物学 细胞生物学
背景情况:
- 细胞外囊泡 (EVs) 和脂蛋白是生物系统中基于脂质的关键纳米粒子.
- 越来越多的EV和脂蛋白被认为可以相互作用并形成功能复合体.
- 这些复合物存在于人类的生物流体和疾病模型中,包括癌症和C型肝炎.
研究的目的:
- 审查关于细胞外囊泡和脂蛋白之间的接口的当前知识.
- 探索 EV-脂蛋白复合体的潜在机制和功能相关性.
- 突出这一领域需要进一步研究的需要.
主要方法:
- 关于EV-脂蛋白相互作用的现有研究的文献综述.
- 关于纳米粒子-脂质体相互作用的知识综合.
- 在健康捐赠者和体外疾病模型中对观察结果的分析.
主要成果:
- EVs和脂蛋白可以相互作用,形成影响生物身份的复合体.
- 脂蛋白成分可以构成EVs的生物分子冠状.
- 在各种生理和病理条件下观察到的复合体.
结论:
- EV-脂蛋白复合体的机制和功能意义需要进一步研究.
- 了解EV-脂蛋白接口对于潜在的治疗和诊断进步至关重要.
- 迫切需要进行研究,以充分阐明这些复杂物在人类健康和疾病中的作用.
相关概念视频
Receptor-mediated Endocytosis
104.5K
Overview
104.5K
COP Coated Vesicles
7.8K
Membrane-enclosed structures called vesicles transport proteins and lipids across the cell. The vesicles derive their cargo from the plasma membrane, Golgi, ER, or endosome. Coated vesicles are spherical, protein-coated carriers with a 50–100 nm diameter that mediate bidirectional transport between the ER and the Golgi. The distribution of proteins between the ER and Golgi complex is dynamic and is maintained by different coated vesicles. Their formation is driven by the assembly of...
7.8K
Intralumenal Vesicles and Multivesicular Bodies
3.5K
Intraluminal vesicles (ILVs) are small vesicles 50-80 nm in diameter formed during the maturation of early endosomes. A specialized endosome containing numerous ILVs is called a multivesicular body (MVB). ILVs contain internalized molecules such as antigens, nucleic acids, proteins, and metabolites. Some of these molecules are released from the MVBs inside exosomes and are transported to other cells. Other MVBs contain molecules that are retained in the ILVs and are later degraded within the...
3.5K
Clathrin Coated Vesicles
7.0K
Clathrin-coated vesicles use endocytosis to transport receptors and lysosomal hydrolases from the Golgi to the lysosome in the late secretory pathway. Clathrin-mediated endocytosis was the first described endocytic process, and Clathrin-coated vesicles remain one of the most well-studied transport vesicles. The molecular machinery that generates clathrin-coated vesicles comprises over 50 proteins that precisely coordinate vesicle formation. Cell surface receptors concentrated in indented sites...
7.0K
Overview of Exosomes
2.7K
Exosomes are stable, lipid bilayer-enclosed vesicles capable of crossing biological barriers. They can carry a wide range of molecules required for intercellular communication. Once exosomes are released from the cell where they originated, they enter a recipient cell through various pathways such as fusion, receptor-mediated endocytosis, macropinocytosis, and phagocytosis.
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
2.7K
Vesicular Tubular Clusters
2.5K
After budding out from the ER membrane, some COPII vesicles lose their coat and fuse with one another to form larger vesicles and interconnected tubules called vesicular tubular clusters or VTCs. These clusters constitute a compartment at the ER-Golgi interface known as ERGIC (Endoplasmic Reticulum Golgi Intermediate Compartment). The ERGIC is a mobile membrane-bound cargo transport system that sorts proteins secreted from ER and delivers them to the Golgi.
With the help of motor proteins such...
With the help of motor proteins such...
2.5K


