AbstractThe thymic microenvironment is under intrinsic and extrinsic control circuits by several elements including hormones, neuropeptides, lymphokines, innervation and cell contact. P2 purinergic receptors have been described in a number of cells including macrophages, thymocytes, and other cells of the immune-inflammatory system. Here, we use the whole-cell patch-clamp technique and dye permeabilization assays to investigate the presence of ionic channels and purinergic receptors in one microenvironmental thymic component, namely the phagocytic cell of the thymic reticulum. At holding potentials ranging from −30 to −60 mV, applications of extracellular ATP in the vicinity of the cell membrane induce a transient and fast-activating inward...
It has been proposed that extracellular ATP (ATPo) may function as a cytotoxic molecule in Ca(2+)-in...
Purinergic signaling plays a key role in a variety of physiological functions, including regulation ...
Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judge...
AbstractExtracellular ATP4− can bind to P2Z purinergic receptors inducing depolarization and cytopla...
The effects of extracellular nucleosides and nucleotides on many organs and systems have been recogn...
We have investigated responses of human monocyte/macrophage cells to extracellular ATP (ATPe). Fresh...
Extracellular ATP (ATPo) elicits a robust change in the concentration of intracellular Ca2+ ([Ca2+]i...
Abstract This review article provides a historical perspective on the role of purinergic signalling ...
Purine receptors are located on immune and somatic cells of animal and human organisms. Summation of...
The effects of oxidized ATP (oATP) on responses triggered by extracellular adenosine 5'-triphosphate...
AbstractWe investigated the physiology and function of P2Y receptors expressed in human dendritic ce...
Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judge...
Immune cells express plasma membrane receptors for extracellular nucleotides. Both G protein-linked ...
Extracellular ATP and related nucleotides promote a wide range of pathophysiological responses via a...
We investigated the presence of P2 receptors (P2Rs) in human thyrocytes and their possible involveme...
It has been proposed that extracellular ATP (ATPo) may function as a cytotoxic molecule in Ca(2+)-in...
Purinergic signaling plays a key role in a variety of physiological functions, including regulation ...
Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judge...
AbstractExtracellular ATP4− can bind to P2Z purinergic receptors inducing depolarization and cytopla...
The effects of extracellular nucleosides and nucleotides on many organs and systems have been recogn...
We have investigated responses of human monocyte/macrophage cells to extracellular ATP (ATPe). Fresh...
Extracellular ATP (ATPo) elicits a robust change in the concentration of intracellular Ca2+ ([Ca2+]i...
Abstract This review article provides a historical perspective on the role of purinergic signalling ...
Purine receptors are located on immune and somatic cells of animal and human organisms. Summation of...
The effects of oxidized ATP (oATP) on responses triggered by extracellular adenosine 5'-triphosphate...
AbstractWe investigated the physiology and function of P2Y receptors expressed in human dendritic ce...
Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judge...
Immune cells express plasma membrane receptors for extracellular nucleotides. Both G protein-linked ...
Extracellular ATP and related nucleotides promote a wide range of pathophysiological responses via a...
We investigated the presence of P2 receptors (P2Rs) in human thyrocytes and their possible involveme...
It has been proposed that extracellular ATP (ATPo) may function as a cytotoxic molecule in Ca(2+)-in...
Purinergic signaling plays a key role in a variety of physiological functions, including regulation ...
Extracellular ATP (ATPo) caused a concentration-dependent lysis of mouse thymocytes. Lysis, as judge...