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Cannabidiol-Mediated Sequestration of Alzheimer’s Amyloid-β Peptides in ADDL Oligomers
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作者 Yang Li Fengyuan Zhang +4 位作者 Caroline E. Herron Ivonne Rosales Alejandro Heredia Nicolae-Viorel Buchete brian j. rodriguez 《American Journal of Molecular Biology》 CAS 2023年第2期113-126,共14页
Cannabidiol (CBD), one of the most studied phytocannabinoids, is non-psychotropic and can induce protective effects on the central nervous system against acute and chronic brain injury. Interestingly, CBD inhibits pro... Cannabidiol (CBD), one of the most studied phytocannabinoids, is non-psychotropic and can induce protective effects on the central nervous system against acute and chronic brain injury. Interestingly, CBD inhibits processes relating to amyloid beta (Aβ)-induced neurotoxicity in mouse models of Alzheimer’s disease, though the detailed molecular mechanism underlying the CBD neurotoxicity modulation is not fully understood. In this study, using atomic force microscopy, we find that CBD promotes the aggregation of Aβ peptides, enhancing the formation of Aβ oligomers, also known as Aβ-derived diffusible ligands (ADDLs). The CBD-mediated sequestration of Aβ monomers in soluble ADDLs could reduce neurotoxicity. This study highlights a possible role of CBD in modulating the formation of ADDL aggregates and provides insight into potentially neuroprotective properties of CBD in Alzheimer’s disease. 展开更多
关键词 CANNABIDIOL AMYLOID Alzheimer’s Amyloid-β Peptides Aβ-Derived Diffusible Ligands Atomic Force Microscopy Amyloid Peptide Sequestration
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Self-Assembly of Amyloid-Beta and Its Piezoelectric Properties
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作者 Ivonne Rosales Laura Salazar +4 位作者 Daniel Luna Alicia Negrón Igor Bdikin brian j. rodriguez Alejandro Heredia 《American Journal of Molecular Biology》 2021年第1期1-14,共14页
Investigating amyloid nanofibril self-assembly, with an emphasis on the electromechanical property of amyloid peptides, namely, piezoelectricity, may have several important implications: 1) the self-assembly process c... Investigating amyloid nanofibril self-assembly, with an emphasis on the electromechanical property of amyloid peptides, namely, piezoelectricity, may have several important implications: 1) the self-assembly process can hinder the biological stability and give rise to the formation of amyloid structures associated with neurodegenerative diseases;2) investigations in this field may lead to an improved understanding of high-performance, functional biological nanomaterials, 3) new technologies could be established based on peptide self-assembly and the resultant functional properties, e.g., in the creation of a piezoelectric device formed with vertical diphenylalanine peptide tubes as a piezoelectric biosensor, and 4) new knowledge can be generated about neurodegenerative disorders, potentially yielding new therapies. Therefore, in this review, we will present the current investigations associated with self-assembly of amyloid-beta, the mechanisms that generate new structures, as well as theoretical calculations exploring the functionality of the structures under physiological pressure and electric field. 展开更多
关键词 AMYLOID Neurodegenerative Disorders SELF-ASSEMBLY PIEZOELECTRICITY
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