Skip to main content
BrainCited

[Mechanism of Leakage in Phosphatidylserine-Containing Membranes by Melittin].

R Wang, M-Y Shi, B-B Ma, J Sheng
Other Molekuliarnaia biologiia 2022
PubMed DOI
<\/script>\n
`; }, get iframeSnippet() { const domain = 'braincited.com'; const params = 'pmid\u003D36475492'; return ``; }, get activeSnippet() { return this.method === 'script' ? this.scriptSnippet : this.iframeSnippet; }, copySnippet() { navigator.clipboard.writeText(this.activeSnippet).then(() => { this.copied = true; setTimeout(() => { this.copied = false; }, 2000); }); } }" @keydown.escape.window="open = false" @click.outside="open = false">

Embed This Widget

Style



      
      
    

Widget powered by . Free, no account required.

Study Design

Loại nghiên cứu
In Vitro
Đối tượng nghiên cứu
None
Can thiệp
[Mechanism of Leakage in Phosphatidylserine-Containing Membranes by Melittin]. None
Đối chứng
None
Kết quả chính
None
Xu hướng hiệu quả
Mixed
Nguy cơ sai lệch
Unclear

Abstract

Phosphatidylserine (PS) is an important apoptotic-cell surface signal that exists in bacterial and cancer cells. The mechanism by which melittin interacts with the PS membrane remains unclear. Here, we revealed this mechanism by using a dual-channel fluorescence microscope to observe the concentration-dependent process of pore formation in giant unilamellar vesicles (GUVs) that were exposed to melittin solution. We found that unsaturated PS membranes differed significantly from saturated PS membranes in different phases. This study provides a reference for research and development of anticancer drugs.

Tóm lược

It was found that unsaturated PS membranes differed significantly from saturated PS membranes in different phases, which provides a reference for research and development of anticancer drugs.

Used In Evidence Reviews

Similar Papers