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פותח על ידי קלירמאש פתרונות בע"מ -
Hydropic anthelmintics against parasitic nematodes
Year:
2020
Source of publication :
PLoS Pathogens
Authors :
רג'סקראן, סטיש קומאר
;
.
Volume :
16
Co-Authors:

Jintae Lee - School of Chemical Engineering, Yeungnam University, Gyeongsan, Republic of Korea

Facilitators :
From page:
0
To page:
0
(
Total pages:
1
)
Abstract:

Hydrodynamic forces that typically act in healthy cells maintain fluid osmoregulation by balancing hydrostatic and oncotic pressures. The sodium–potassium pump has a fundamental role in the maintenance of cellular osmoregulation [2]. Functionally, the sodium–potassium pump is regulated by Na+/K+ adenosine triphosphate (ATP)ase, a ubiquitous enzyme that continually uses ATP by pumping 3 Na+ ions out of and importing 2 K+ ions into cells. When a constant sodium gradient is upheld, water molecules cross the plasma membrane by passive diffusion, maintaining dynamic homeostasis.

Note:
Related Files :
Anthelmintics
cell death
Nematode Infections
Nematodes
Parasitic nematodes
Vacuoles
עוד תגיות
תוכן קשור
More details
DOI :
https://doi.org/10.1371/journal.ppat.1008202
Article number:
0
Affiliations:
Database:
גוגל סקולר
Publication Type:
מאמר
;
.
Language:
אנגלית
Editors' remarks:
ID:
46064
Last updated date:
02/03/2022 17:27
Creation date:
06/02/2020 16:23
Scientific Publication
Hydropic anthelmintics against parasitic nematodes
16

Jintae Lee - School of Chemical Engineering, Yeungnam University, Gyeongsan, Republic of Korea

Hydropic anthelmintics against parasitic nematodes

Hydrodynamic forces that typically act in healthy cells maintain fluid osmoregulation by balancing hydrostatic and oncotic pressures. The sodium–potassium pump has a fundamental role in the maintenance of cellular osmoregulation [2]. Functionally, the sodium–potassium pump is regulated by Na+/K+ adenosine triphosphate (ATP)ase, a ubiquitous enzyme that continually uses ATP by pumping 3 Na+ ions out of and importing 2 K+ ions into cells. When a constant sodium gradient is upheld, water molecules cross the plasma membrane by passive diffusion, maintaining dynamic homeostasis.

Scientific Publication
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