Albumins as Extracellular Protein Nanoparticles Collaborate with Plasma Ions to Control Biological Osmotic Pressure.
albumin
biological OP
electrochemical and osmotic re-equilibrium
intermediate filament tension
protein nanoparticle-ion interplay
Journal
International journal of nanomedicine
ISSN: 1178-2013
Titre abrégé: Int J Nanomedicine
Pays: New Zealand
ID NLM: 101263847
Informations de publication
Date de publication:
2022
2022
Historique:
received:
23
07
2022
accepted:
03
10
2022
entrez:
14
10
2022
pubmed:
15
10
2022
medline:
18
10
2022
Statut:
epublish
Résumé
Plasma albumins as protein nanoparticles (PNs) exert essential functions in the control of biological osmotic pressure (OP), being involved in regulating water metabolism, cell morphology and cell tension. Understanding how plasma albumins and different electrolytes co-determine biological OP effects is crucial for correct interpretation of hemodynamic disorders, and practical treatment of hypo/hyper-proteinemia. Optical measurement based on intermediate filament (IF) tension probe was used for real-time evaluation of transmembrane osmotic effects in live cells. Ion fluorescent probes were employed to evaluate intracellular ion levels, and a current clamp was used to measure membrane potential, thus exploring association of electrochemical and osmotic effects. Albumins are involved in regulation of intracellular osmolarity by a quantitative relationship. Extracellular PNs can alter membrane potentials by adsorbing counterions, induce production of intracellular PNs and further control the opening of ion channels and ion flow, contributing to electrochemical and osmotic re-equilibrium. Furthermore, various ions interplay with extracellular PNs, showing different osmotic effects: increased levels of calcium ions result in a hypotonic effect, whereas potassium ions induce hyper-osmolarity. Extracellular PNs and Ca
Identifiants
pubmed: 36238535
doi: 10.2147/IJN.S383530
pii: 383530
pmc: PMC9553280
doi:
Substances chimiques
Albumins
0
Fluorescent Dyes
0
Ion Channels
0
Ions
0
Potassium
RWP5GA015D
Calcium
SY7Q814VUP
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Pagination
4743-4756Informations de copyright
© 2022 Zheng et al.
Déclaration de conflit d'intérêts
Dr Jun Guo reports a patent 2021103033666 issued to Nanjing University of Chinese Medicine. The author reports no other conflicts of interest in this work.
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