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M A Pipeleers-Marichal

Publications and source records attributed to M A Pipeleers-Marichal.

9 recordsLinked to original sources

Acute generalized exanthematous pustulosis induced by paracetamol. A case with severe hemodynamic disturbances.

We report on a 28-year-old Bangladesh man with acute generalized exanthematous pustulosis, induced by paracetamol. The patient presented with an erythematous and pustular eruption after taking 1 tablet of paracetamol for a sore throat. After intravenous administration of propacetamol hydrochloride (which is a prodrug of paracetamol), the rash became worse, showing a toxic epidermal necrolysis-like appearance and the patient suffered from severe hemodynamic disturbances. After discontinuation of propacetamol hydrochloride, the eruption cleared within 2 days. Prick testing performed in the patient revealed a positive reaction for propacetamol hydrochloride.

Acetaminophen↗

Presence of pancreatic hormones in islet cells with MHC-class II antigen expression.

In the normal rat pancreas, only few islet cells express MHC-class II antigens. Their nature and function has not yet been elucidated. We report a method for the purification of Ia-positive islet cells by fluorescence-activated cell sorting. The isolated mononuclear cells appear of nonendocrine origin but contain vacuoles with partially digested secretory vesicles. Both insulin- and glucagon-immunoreactive granules were identified in these vacuoles of varying size and composition. It is suggested that at least part of the rat islet cells with class II antigen expression can exhibit phagocytotic properties leading to the uptake of fragments from damaged endocrine cells. This functional characteristic may implicate this particular islet cell type in the pathology of the endocrine pancreas in type I diabetes.

Animals↗

A method for the purification of single A, B and D cells and for the isolation of coupled cells from isolated rat islets.

A method has been developed for the purification of single A, B and D cells and for the isolation of coupled islet cells. Isolated rat islets were dissociated by repeated pipetting in the presence of trypsin and ethylene glycol bis (beta-aminoethyl ether) N,N' tetra-acetic acid (EGTA), and then filtered through nylon and Percoll; the cell preparation consisted of 70% single and 30% coupled cells. Sizing of the cells led to the recognition of a small-islet cell population (35%; cell volume 200-600 micrometer 3) composed of A and D cells, and a large-islet cell population (65%; cell volume 600-1500 micrometer 3) identified as B cells. Differences in sedimentation velocity formed the basis for the islet cell separation by counterflow elutriation. Single islet cells eluted prior to coupled cells and were distributed over A and D cell-enriched fractions I and II (65% A, 25% B, 10% D) and the B cell-enriched fraction III (93% B). The slightly different densities of A (d = 1.068), B (d = 1.065) and D (d = 1.070) cells allowed a subsequent purification by density gradient centrifugation resulting in a final 10- to 30-fold enrichment in either A, B or D cells. Most coupled islet cells were recovered in fraction IV, occurred mainly as doublets and were composed of 90% B cells and 7% D cells; the multiple pseudopods, which characterize isolated D cells, might contribute to the coupling tendency of the D cells. It is concluded that the purified A, B and D cell fractions and the coupled islet cell preparations offer a direct approach to the study of individual islet cell types and their intercellular communication.

Animals↗

A sensitive method for measuring polymerized and depolymerized forms of tubulin in tissues.

A rapid method for measuring polymerized and depolymerized forms of tubulin in tissues has been developed. The procedure consists of homogenization and centrifugation of the tissue in a microtubule-stabilizing solution and depolymerization of the precipitated microtubules; polymerized and depolymerized forms of tubulin are quantitated by a colchicine-binding assay. The validity of the technique was assessed by electron microscopy and recovery studies with labeled and unlabeled preparations of polymerized and depolymerized forms of rat brain tubulin. The sensitivity of this technique allows quantitation of tubulin in 150 micrograms of tissue, wet weight. The method demonstrated that both the polymerized and depolymerized forms of tubulin were present in rat liver cells, and that in the fed state 31.3 +/-0.7% of the total tubulin pool was in the polymerized form.

Animals↗

Physiological regulation of total tubulin and polymerized tubulin in tissues.

Polymerized and depolymerized forms of tubulin were measured in rat and mouse liver, rat islets, human lymphocytes, and platelets. The percent of the total tubulin present in the polymerized form varied from 30.3 +/- 1.5% in the liver of the fed rat to 89.2 +/- 0.2% in human platelets. Fasting decreased the total tubulin and to a greater extent the polymerized form of tubulin in both rat and mouse liver. Glucose feeding increased the polymerized tubulin without affecting the total tubulin content in rat liver. Phytohemagglutinin-stimulated lymphocytes exhibited at least a three-fold increase in total tubulin (expressed in terms of DNA content), which during the initial 48 h of incubation was accounted for in toto by an increase in polymerized tubulin. It is suggested that the lectin not only accelerates tubulin synthesis but also stimulated the polymerization process. Storage of platelets at 4 degrees C for 6 days resulted in a marked decrease in total tubulin and an even greater reduction in the polymerized form. It is concluded that both the total tubulin content and its degree of polymerization can be modulated independently by a wide variety of physiological factors.

Animals↗

Microtubule assembly and the intracellular transport of secretory granules in pancreatic islets.

Polymerized and depolymerized tubulin were measured in pancreatic islets under various physiological and pharmacological conditions. Variations in insulin release from islets of fed or fasted rats were accompanied by concomitant changes in tubulin polymerization. Glucose induced the formation of microtubules in vitro independent of extracellular calcium. Total and polymerized tubulin content were decreased by fasting and restored by glucose feeding.

Animals↗

Regulation of tubulin synthesis in islets of Langerhans.

Tubulin represents a major protein in rat pancreatic islets, which averages 0.5% of the total protein content and 6% of the noninsulin protein synthesized under basal metabolic conditions. Glucose increases the synthesis of tubulin twofold to threefold. Tubulin synthesis is also stimulated by adenosine 3':5'-cyclic monophosphate in both the absence and presence of glucose; this effect of adenosine 3':5'-cyclic monophosphate occurs preferential to noninsulin protein synthesis at physiological glucose concentrations. Tubulin synthesis was decreased more than 75% by fasting, an effect prevented by maintaining animals on glucose exclusively. The fasting-induced reduction in tubulin synthesis is corrected in vitro by increasing adenosine 3':5'-cyclic monophosphate levels. These findings parallel changes previously reported in insulin release and suggest that physiological agents can exert their insulin secretory action through an effect upon the rate of tubulin synthesis.

Animals↗

Metabolic and morphologic studies in intraportal-islet-transplanted rats.

The intraportal injection of 350 to 1,000 isolated islets into streptozotocin-diabetic rats immediately normalized (approximately 24 hours) fasting plasma glucose and insulin levels. Polyuria, polydipsia, and hyperglucagonemia disappeared more gradually over a 2-to-12-week period--the time required for normalization varying with the severity of the diabetes and the number of islets transplanted. In long-term islet-transplanted rats (greater than five months), the hepatic insulin and glucagon reserves averaged 50 per cent and 25 per cent, respectively, of the corresponding normal pancreatic hormone content. Glucagon was increased slightly in the pancreas of streptozotocin-diabetic rats and decreased considerably in transplanted animals. However, total pancreatic glucagon (i.e. pancreatic and hepatic reserves) in transplanted animals was the same as the pancreatic content of normal control rats, indicating the presence of feedback control mechanism(s) in the regulation of pancreatic glucagon reserves. Long-term transplanted islets demonstrated well-granulated A-, B-, and D-cell movement out of the vascular space and the formation of narrow intercellular spaces and junctional complexes with surrounding hepatocytes.

Animals↗