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Corinne Kunzelmann

Publications and source records attributed to Corinne Kunzelmann.

4 recordsLinked to original sources

Phosphatidylserine and signal transduction: who needs whom?

The plasma membrane, long considered a simple barrier between the extracellular and intracellular compartments, is now thought to play a pivotal role in many physiological processes that regulate the communication of cells with their environment. On one hand, the plasma membrane directly participates in intracellular signaling; on the other hand, changes in membrane structure contribute to the transcellular transfer of biological information. Among the membrane constituents, phosphatidylserine is a major actor implicated in these effects. Evidence now exists for a role for phosphatidylserine redistribution in modulating the activities of several membrane proteins during signaling in nonapoptotic T lymphocytes.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Circulating cell-derived microparticles in Crohn's disease.

Procoagulant membrane microparticles can be released from activated or apoptotic cells in response to various environmental stimuli. The aim of this study was to investigate the presence of microparticles in Crohn's disease and to assess their variations after infliximab therapy. We compared the levels of circulating microparticles in 38 patients with Crohn's disease, 16 patients with ulcerative colitis, 7 patients with infectious colitis, and 17 control subjects. The evolution of microparticle levels was assessed after infliximab therapy in 13 patients with Crohn's disease. Circulating microparticle levels were elevated in patients with Crohn's disease (9.31+/-0.66 nmol/L phosphatidylserine equivalent [PS Eq]) or infectious colitis (10.71+/-0.92 nmol/L PS Eq) compared to patients with ulcerative colitis (5.75+/-0.59 nmol/L PS Eq) and control subjects (4.06+/-0.37 nmol/L PS Eq) (P = 0.001). Infliximab induced a significant diminution of the amounts of circulating microparticles, from 10.33+/-1.20 to 6.45+/-0.90 nmol/L PS Eq (P = 0.002). Generation of circulating microparticles occurs in Crohn's disease; infliximab induces significant diminution. Release of microparticles could be linked to the type of inflammatory response underlying Crohn's disease.

Adolescent↗

Membrane microparticles: two sides of the coin.

Microparticles are plasma membrane-derived vesicles shed from stimulated cells, in the broad sense of the term. Their presence is interpreted by proximal or remote cells in fundamental physiological processes including intercellular communication, hemostasis, and immunity. On the other hand, variations of their number or characteristics are frequently observed in pathophysiological situations.

Animals↗

[Plasma membrane remodelling and cell stimulation].

For a long time the plasma membrane has been considered as a simple barrier between the extracellular and intracellular milieu. Now, it is well accepted that it plays a pivotal role in many physiological processes allowing the communication of cells with their environment. On the one hand, the plasma membrane directly participates in intracellular signaling, on the other hand, changes in membrane structure contribute to the transcellular transfer of biological information. This review analyses the most recent features concerning the plasma membrane plasticity, with a special focus on the intracellular signaling pathways involved in the regulation of the loss of membrane phospholipid asymmetry during cell activation. The pathophysiologic consequences of microparticle/microvesicle shedding from membrane blebs are briefly exposed.

Blood Platelets↗