The cerebral synthesis of cholesterol is mainly handled by astrocytes, which are also responsible for apoproteins’ synthesis and lipoproteins’ assembly required for the cholesterol transport in the brain parenchyma. In Alzheimer disease (AD), these processes are impaired, likely because of the astrogliosis, a process characterized by morphological and functional changes in astrocytes. Several ATP‐binding cassette transporters expressed by brain cells are involved in the formation of nascent discoidal lipoproteins, but the effect of beta‐amyloid (Aβ) assemblies on this process is not fully understood. In this study, we investigated how of Aβ1‐42‐induced astrogliosis affects the metabolism of cholesterol in vitro. We detected an impairment in the cholesterol efflux of reactive astrocytes attributable to reduced levels of ABCA1 transporters that could explain the decreased lipoproteins’ levels detected in AD patients. To approach this issue, we designed biomimetic HDLs and evaluated their performance as cholesterol acceptors. The results demonstrated the ability of apoA‐I nanodiscs to cross the blood–brain barrier in vitro and to promote the cholesterol efflux from astrocytes, making them suitable as a potential supportive treatment for AD to compensate the depletion of cerebral HDLs.

Reduced levels of ABCA1 transporter are responsible for the cholesterol efflux impairment in β‐amyloid‐induced reactive astrocytes: Potential rescue from biomimetic HDLs / G. Sierri, R. Dal Magro, B. Vergani, B.E. Leone, B. Formicola, L. Taiarol, S. Fagioli, M. Kravicz, L. Tremolizzo, L. Calabresi, F. Re. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1661-6596. - 23:1(2022 Jan), pp. 102.1-102.15. [10.3390/ijms23010102]

Reduced levels of ABCA1 transporter are responsible for the cholesterol efflux impairment in β‐amyloid‐induced reactive astrocytes: Potential rescue from biomimetic HDLs

L. Calabresi
Penultimo
;
2022

Abstract

The cerebral synthesis of cholesterol is mainly handled by astrocytes, which are also responsible for apoproteins’ synthesis and lipoproteins’ assembly required for the cholesterol transport in the brain parenchyma. In Alzheimer disease (AD), these processes are impaired, likely because of the astrogliosis, a process characterized by morphological and functional changes in astrocytes. Several ATP‐binding cassette transporters expressed by brain cells are involved in the formation of nascent discoidal lipoproteins, but the effect of beta‐amyloid (Aβ) assemblies on this process is not fully understood. In this study, we investigated how of Aβ1‐42‐induced astrogliosis affects the metabolism of cholesterol in vitro. We detected an impairment in the cholesterol efflux of reactive astrocytes attributable to reduced levels of ABCA1 transporters that could explain the decreased lipoproteins’ levels detected in AD patients. To approach this issue, we designed biomimetic HDLs and evaluated their performance as cholesterol acceptors. The results demonstrated the ability of apoA‐I nanodiscs to cross the blood–brain barrier in vitro and to promote the cholesterol efflux from astrocytes, making them suitable as a potential supportive treatment for AD to compensate the depletion of cerebral HDLs.
ABCA1; Alzheimer disease; ApoA‐I nanodiscs; Astrocytes; Brain cholesterol; HDL; Nanoparticles; ATP Binding Cassette Transporter 1; Alzheimer Disease; Amyloid beta-Peptides; Apolipoprotein A-I; Astrocytes; Biological Transport; Biomimetics; Blood-Brain Barrier; Brain; Cell Line; Cholesterol; Humans; Lipoproteins, HDL
Settore BIO/14 - Farmacologia
   tArGeting brAIn cholesterol traNSporT in Alzheimer’s Disease (AGAINST-AD)
   AGAINST-AD
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   2017PFYK27_001
gen-2022
22-dic-2021
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/917072
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