» Articles » PMID: 22233753

Integrins As Receptor Targets for Neurological Disorders

Overview
Journal Pharmacol Ther
Specialty Pharmacology
Date 2012 Jan 12
PMID 22233753
Citations 79
Authors
Affiliations
Soon will be listed here.
Abstract

This review focuses on the neurobiology of integrins, pathophysiological roles of integrins in neuroplasticity and nervous system disorders, and therapeutic implications of integrins as potential drug targets and possible delivery pathways. Neuroplasticity is a central phenomenon in many neurological conditions such as seizures, trauma, and traumatic brain injury. During the course of many brain diseases, in addition to intracellular compartment changes, alterations in non-cell compartments such as extracellular matrix (ECM) are recognized as an essential process in forming and reorganizing neural connections. Integrins are heterodimeric transmembrane receptors that mediate cell-ECM and cell-cell adhesion events. Although the mechanisms of neuroplasticity remain unclear, it has been suggested that integrins undergo plasticity including clustering through interactions with ECM proteins, modulating ion channels, intracellular Ca(2+) and protein kinase signaling, and reorganization of cytoskeletal filaments. As cell surface receptors, integrins are central to the pathophysiology of many brain diseases, such as epilepsy, and are potential targets for the development of new drugs for neurological disorders.

Citing Articles

The ketone body β-hydroxybutyrate ameliorates neurodevelopmental deficits in the GABAergic system of mutants.

Giunti S, Blanco M, De Rosa M, Rayes D Elife. 2024; 13.

PMID: 39422188 PMC: 11488850. DOI: 10.7554/eLife.94520.


Connecting genomic and proteomic signatures of amyloid burden in the brain.

Puerta R, de Rojas I, Garcia-Gonzalez P, Olive C, Sotolongo-Grau O, Garcia-Sanchez A medRxiv. 2024; .

PMID: 39281766 PMC: 11398581. DOI: 10.1101/2024.09.06.24313124.


Feline coronavirus influences the biogenesis and composition of extracellular vesicles derived from CRFK cells.

Wijerathne S, Pandit R, Ipinmoroti A, Crenshaw B, Matthews Q Front Vet Sci. 2024; 11:1388438.

PMID: 39091390 PMC: 11292801. DOI: 10.3389/fvets.2024.1388438.


Obesity-induced blood-brain barrier dysfunction: phenotypes and mechanisms.

Feng Z, Fang C, Ma Y, Chang J J Neuroinflammation. 2024; 21(1):110.

PMID: 38678254 PMC: 11056074. DOI: 10.1186/s12974-024-03104-9.


Sildenafil as a Candidate Drug for Alzheimer's Disease: Real-World Patient Data Observation and Mechanistic Observations from Patient-Induced Pluripotent Stem Cell-Derived Neurons.

Gohel D, Zhang P, Gupta A, Li Y, Chiang C, Li L J Alzheimers Dis. 2024; 98(2):643-657.

PMID: 38427489 PMC: 10977448. DOI: 10.3233/JAD-231391.


References
1.
Martinez-Lemus L, Wu X, Wilson E, Hill M, Davis G, Davis M . Integrins as unique receptors for vascular control. J Vasc Res. 2003; 40(3):211-33. DOI: 10.1159/000071886. View

2.
DAngelo G, Mogford J, Davis G, Davis M, Meininger G . Integrin-mediated reduction in vascular smooth muscle [Ca2+]i induced by RGD-containing peptide. Am J Physiol. 1997; 272(4 Pt 2):H2065-70. DOI: 10.1152/ajpheart.1997.272.4.H2065. View

3.
Wu Y, Siao C, Lu W, Sung T, Frohman M, Milev P . The tissue plasminogen activator (tPA)/plasmin extracellular proteolytic system regulates seizure-induced hippocampal mossy fiber outgrowth through a proteoglycan substrate. J Cell Biol. 2000; 148(6):1295-304. PMC: 2174310. DOI: 10.1083/jcb.148.6.1295. View

4.
Perosa S, Porcionatto M, Cukiert A, Martins J, Passeroti C, Amado D . Glycosaminoglycan levels and proteoglycan expression are altered in the hippocampus of patients with mesial temporal lobe epilepsy. Brain Res Bull. 2002; 58(5):509-16. DOI: 10.1016/s0361-9230(02)00822-5. View

5.
Lal H, Guleria R, Foster D, Lu G, Watson L, Sanghi S . Integrins: novel therapeutic targets for cardiovascular diseases. Cardiovasc Hematol Agents Med Chem. 2007; 5(2):109-32. DOI: 10.2174/187152507780363223. View