Back to search

Both adenosine A1- and A2-receptors are required to stimulate microglial proliferation.

Data up to Jan 2025

Published1996
Citations140
References36

Total Citations Per Year

Abstract

References (36)

ADENOSINE REGULATES VIA TWO DIFFERENT TYPES OF RECEPTORS, THE ACCUMULATION OF CYCLIC AMP IN CULTURED BRAIN CELLS

1979 • 1,370 citations

Cytotoxicity of microglia

1993 • 1,042 citations

Functional plasticity of microglia: A review

1988 • 931 citations

Ras-dependent activation of MAP kinase pathway mediated by G-protein βγ subunits

1994 • 814 citations

Molecular cloning and characterization of an adenosine receptor: the A3 adenosine receptor.

1992 • 649 citations

Isozyme-selective stimulation of phospholipase C-β2 by G protein βγ-subunits

1992 • 630 citations

The Physiological Role of Adenosine In The Central Nervous System

1985 • 628 citations

Neuroprotective role of adenosine in cerebral ischaemia

1992 • 450 citations

Regulation of purified subtypes of phosphatidylinositol-specific phospholipase C beta by G protein alpha and beta gamma subunits

1993 • 444 citations

Macrophages and the Nervous System

1991 • 429 citations

Adenosine and the concept of ‘retaliatory metabolites’

1984 • 422 citations

Purine levels in the intact rat brain. Studies with an implanted perfused hollow fibre

1982 • 390 citations

Sequential protein kinase reactions controlling cell growth and differentiation

1994 • 342 citations

Colony-stimulating factors as promoters of ameboid microglia

1988 • 323 citations

Adenosine and Brain Ischemia

1995 • 298 citations

Adenosine inhibits the accumulation of cyclic AMP in cultured brain cells

1978 • 251 citations

Growth control of cultured microglia

1992 • 250 citations

Lipopolysaccharide-free conditions in primary astrocyte cultures allow growth and isolation of microglial cells

1989 • 217 citations

Activation of phospholipase C via adenosine receptors provides synergistic signals for secretion in antigen-stimulated RBL-2H3 cells. Evidence for a novel adenosine receptor.

1990 • 190 citations

Interleukin 3 as a trophic factor for central cholinergic neurons in vitro and in vivo

1990 • 184 citations

THE ROLE OF CYCLIC AMP IN CELL PROLIFERATION: A CRITICAL ASSESSMENT OF THE EVIDENCE

1983 • 165 citations

Levels of adenosine and adenine nucleotides in slices of rat hippocampus

1984 • 160 citations

Stimulation by thyrotropin and cyclic AMP of the proliferation of quiescent canine thyroid cells cultured in a defined medium containing insulin

1983 • 150 citations

Inhibition of [3H] glutamate release from rat hippocam pal slices by L‐phenylisopropyladenosine

1985 • 144 citations

ATP and its metabolite adenosine act synergistically to mobilize intracellular calcium via the formation of inositol 1,4,5-trisphosphate in a smooth muscle cell line.

1992 • 132 citations

Adenosine: the brain's natural anticonvulsant?

1986 • 106 citations

Calcium, cyclic AMP and protein kinase C ? partners in mitogenesis

1987 • 86 citations

Microglial mitogens are produced in the developing and injured mammalian brain.

1991 • 85 citations

Role of intracellular Mg2+ in the activation of muscarinic K+ channel in cardiac atrial cell membrane

1986 • 77 citations

Purinergic stimulation of cell division and differentiation: Mechanisms and pharmacological implications

1992 • 77 citations

Mechanisms leading to adenosine-stimulated proliferation of microvascular endothelial cells

1990 • 75 citations

Characterization and transduction mechanisms of purinoceptors in activated rat microglia

1994 • 59 citations

Indications for P2-purinoceptor subtypes in guinea pig smooth muscle

1988 • 54 citations

ATP and A1 adenosine receptor agonists mobilize intracellular calcium and activate K+ and Cl- currents in normal and cystic fibrosis airway epithelial cells.

1993 • 54 citations

A possible role for cyclic AMP in the initiation of DNA synthesis by isoproterenol‐activated parotid gland cells

1980 • 50 citations

Coupling of a transfected human brain A1 adenosine receptor in CHO‐K1 cells to calcium mobilisation via a pertussis toxin‐sensitive mechanism

1994 • 44 citations

Cited By (0)

Loading...
Both adenosine A1- and A2-receptors are required to stimulate microglial proliferation. (1996) – PubMed | Metascience Observatory Explorer