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B Chatelain

Publications and source records attributed to B Chatelain.

At least 55 records · Page 3Linked to original sources

[Neutrophil functions and interactions in the inflammatory reaction].

After 14 days' bone marrow maturation, neutrophil granulocytes reach the tissues where for 1-2 days they form the army whose phagocytic function was described by llya Metchnikoff in 1882. At that time, Paul Ehrlich was developing his neutrophil secretory theory which had less success until it returned with a vengeance in the last decade. Neutrophils are not only phagocytes. Above all they are cells that secrete bactericidal effectors and regulators (amplifiers and modulators) of the inflammatory focus. More and more sophisticated methods are being used to study phagocytosis, from the point of view both of the mechanism of chemotaxis and its role in inflammation and of the mediators of oxygen-dependent bactericidal action (superoxide anion, oxygenated water, hydroxyl radicals, myeloperoxidase, halogen ions and superoxide dismutase). In addition, the importance of oxygen-independent bactericidal mechanisms has been confirmed by the discovery of proteins such as BPI (Bactericidal Permeability Increasing Protein). Study of neutrophil dysfunction throws light on a number of neutrophil regulatory and effector mechanisms; it also proves useful in explaining the recurrent infections observed in some congenital disorders (chronic granulomatous disease, the "lazy leucocyte syndrome", the Chediak-Higashi syndrome, ichthyrosis , Job's syndrome...) or those associated with transitory neutrophil disorders (measles, severe bacterial infection...). Neutropenia induced by some antibiotics is easily demonstrated, but the interactions between these antibiotics and neutrophils are complex: phagocyte concentration of antibiotic, neutrophil inactivation of antibiotic, effect of antibiotic on microbe-leucocyte interaction such as an alteration in phagocytic and chemotactic response. The neutrophil is the first blood cell to arrive at the inflammatory focus; it is also at the centre of the response, next to the humoral mediators which both act upon it and which it itself secretes.

Animals↗

Interaction between protein kinase C and actin in megakaryocyte polyploidization.

Megakaryocytes undergo a peculiar and irreversible program by which they become polyploid through repeated cycles of DNA synthesis without concomitant cell division. In order to study the possible concomitant role of protein kinase C and actin in megakaryocyte polyploidization, three cell lines (DAMI, HEL and K562), expressing some properties of the megakaryocytic lineage and known to differentiate into the megakaryocytic pathway in the presence of phorbol esters, were cultivated in the presence of phorbol myristate acetate alone (PMA, 5 x 10(-9) M, activator of protein kinase C, PKC) or concomitantly with cytochalasin B (2 micrograms/ml, inhibitor of actin polymerization). We have previously shown that DAMI, HEL and K562 cells in which actin polymerization was inhibited by cytochalasin B, acquired megakaryocytic properties in the way that they became polyploid, acquired a megakaryocytic phenotype and arrested proliferation (4). After four days of culture in the presence of PMA and cytochalasin B, the number of polyploid cells (estimated by flow cytometry) increased in comparison with control or PMA-treated cells. However, it was lower than in cytochalasin B-treated cells. Indeed, control cells predominantly diploid (2N) became polyploid with the appearance of 8N, 16N and 32N cells after addition of PMA, cytochalasin B or PMA + cytochalasin B. The endomitotic index (EI, as described in 5) which corresponds to the mean of (¿log2 DNA content expressed in N¿-1) was 0.5 +/- 0.1, 0.7 +/- 0.1 and 0.3 +/- 0.1 in control DAMI, HEL and K562 cells, respectively. The EI increased to 0.9 +/- 0.2; 1.0 +/- 0.2 and 0.4 + 0.1 in cells treated with PMA and to 1.6 +/- 0.3; 1.4 +/- 0, and 0.9 +/- 0.2 when PMA was added concomitantly to cytochalasin B. Total DNA estimated from the cell content and the percentage of cells present at each ploidy stage did not change in cytochalasin B-treated cells in comparison to control conditions. However, treatment of DAMI, HEL and K562 cells with PMA alone or concomitantly with cytochalasin B revealed that the total DNA content significantly decreased in these conditions. At last, treatment of the three cell lines with PMA alone or concomitantly with cytochalasin B for 4 days caused a complete inhibition of proliferation. In conclusion, the concomitant addition of PMA and cytochalasin B to the three cell lines lead to an augmentation of cell ploidy and to a cessation of proliferation. However, we did not observe any synergistic effect of the two compounds. The possible interaction between actin and protein kinase C is discussed in the paper.

Actins↗

Protein content and number of nucleolar organizer regions are enhanced during phorbol ester-induced differentiation of cultured human megakaryocytic cells.

In order to investigate the protein synthesis in megakaryocyte polyploidization, phorbol myristate acetate (PMA, 5 x 10(-9) M), a differentiation marker known to induce megakaryocyte polyploidization, was added to human megakaryocytic cell lines (DAMI, HEL and K562) and the expression of platelet/megakaryocytic integrins, the numbers of nucleolar organizer regions (AgNORs) and the total protein content were estimated. Following exposure of PMA, the expression of the platelet membrane glycoprotein GPIIIa and thrombospondin and transferrin receptors was augmented in the three cell lines. The number of AgNORs shifted from 16.4 +/- 4.3, 24.4 +/- 2.5 and 13.6 +/- 3.1 for unstimulated cells to 20.0 +/- 5.3, 38.7 +/- 7.9 and 16.8 +/- 2.3 for PMA-treated DAMI, HEL and K562 cells, respectively. Furthermore, after treatment with PMA, the numbers of AgNORs clusters or nucleoles increased significantly to 179%, 238% and 154% of controls in DAMI, HEL and K562 cell lines, respectively. Finally, addition of PMA culture for four days, significantly increased the protein contents to 153%, 171% and 254% of controls for DAMI, HEL and K562 cell lines, respectively (p < 0.05 by t-test). In conclusion, the increase in the total protein content and in the number of AgNORs by PMA, suggests that PMA-induced-megakaryocyte polyploidization occurs by enhanced protein production.

Cell Differentiation↗

The G and F contents in megakaryocyte cell lines after stimulation with phorbol myristate acetate.

Megakaryocyte polyploidization responds to platelet demand and results from the lack of cytoplasmic separation while the nucleus keeps dividing. In order to investigate the role of actin in the megakaryocyte polyploidization, phorbol myristate acetate (PMA, 5 x 10(-9) M), a differentiation marker known to induce megakaryocyte polyploidization, was added to human megakaryocytic cell lines (DAMI and HEL) and G, F and total actins were estimated by DNase I inhibition. After four days of culture in the presence of PMA, G actin contents in pg per 10(6) cells were 13.0 pg +/- 2.8 and 1.0 pg +/- 0.1 for unstimulated DAMI and HEL cells. F actin contents per 10(6) cells were 5.8 pg +/- 1.5 and 0.1 pg +/- 0.0 for DAMI and HEL cells. Addition of PMA for four days to culture significantly increased G actin contents (235% and 268% of controls) and F actin contents (234% and 394%), for DAMI and HEL cell lines, respectively (p < 0.05 by t-test). In contrast, G/F actin ratio was not affected (p < 0.05 by t-test) by PMA. DAMI cells from each ploidy classes were then sorted on an ELITE Coulter and assayed for actin content. While total actin, G actin and F actin per cell increased in polyploid cells cultured with PMA, there was a reduction in G, F and total actin contents per diploid equivalent when cells became polyploid. In conclusion, megakaryocyte polyploidization of these cell lines is not related to an unbalance between G and F actins but would be rather due at least partly to a defect in total actin production that could lead to a prevention of the formation of the constriction ring in telophase.

Actins↗

Human megakaryocyte polyploidization is associated with a decrease in GPIIIA expression.

Megakaryocytes are platelet forming cells and are characterized by polyploidization, a phenomenon by which nuclear division occurs without corresponding cytoplasmic separation. Among the markers allowing to identify megakaryocytes, glycoprotein (GP) IIIa with GPIb and GPIIb are the most important. Using GPIIIa as a marker to recognize megakaryocytes in the bone marrow, we have estimated GPIIIa expression by flow cytometry in megakaryocyte populations from normal individuals and from patients with chronic myelogenous leukemia, immune thrombocytopenic purpura or polycythemia vera. We showed that the expression of GPIIIa is decreasing during megakaryocyte polyploidization in normal and pathological situations.

Antigens, CD↗

Pattern of antigens A and B distribution on the surface of AB group red blood cells--an argument in support of the concept of "genetic oscillation".

Using a mixture of mouse monoclonal antibodies anti red blood cell (RBC) AgA and human antibodies anti RBC AgB coupled to fluorescein isothiocyanate (FITC) conjugated goat antimouse monoclonal antibodies and to phycoerythrin (PE) conjugated goat antihuman monoclonal antibodies, we obtained the distribution of these antigens on the AB RBC surface. The analysis of 30 samples of 30,000-100,000 RBCs each was carried out using flow cytometry and revealed three kinds of AB RBC populations: (1) a population characterized by maximum concentration of AgA and minimum concentration of AgB; (2) a complementary population characterized by minimum concentration of AgA and maximum concentration of AgB; (3) an intermediary equilibrated population with about equal concentrations of the A and B antigens. This pattern corresponds to the pattern of oscillating genetic activity defined as "genetic oscillation", a concept amply discussed in the paper.

ABO Blood-Group System↗

[Epidural anaesthesia associated with induction of labour. A clinical study. Electronic monitoring of the physical and biological parameters (author's transl)].

73 case histories of induction of labour under epidural anaesthesia have been studied very thoroughly from the different parameters of the uterine contractions as well as the fetal heart rate and the acid base balance of the fetus. From this study it is clear that the basal tone, the intensity and the frequency of contractions and the activity of the uterus are increased in comparison with different studies of normal labour. This increase however is within physiological limits and does not change in any marked way the cardiac rhythm nor the acid base balance of the fetus. The Apgar score at birth is equal to or above 8 in 89 p. 100 of cases at 1 minute and in 100 p. 100 of cases at 5 minutes. Finally, in the last phases of the labour dilatation is quicker than in normal delivery. It follows therefore that maternal comfort has not been bought at the expense of the fetus.

Acid-Base Equilibrium↗

Inhibition of actin polymerization by cytochalasin B induces polyploidization and increases the number of nucleolar organizer regions in human megakaryocyte cell lines.

Megakaryocyte polyploidization is an advantageous and regulated mechanism which leads to an increase in platelet production. In megakaryocyte cell lines, polyploidization can be obtained by using cytochalasin B, an inhibitor of the actin polymerization. The Nucleolar Organizer Regions (AgNORs) are parts of nucleolar DNA transcribed into ribosomal RNA. They are detected by silver staining technique and their number is proportional to protein synthesis. In order to estimate protein synthesis in polyploidizing megakaryocytes, AgNORs were measured in three cell lines with megakaryocyte properties (DAMI, HEL and K562) after a 4-day culture in the presence or absence of cytochalasin B, an inhibitor of the actin polymerization. The mean number of AgNORs per cell was 16.4 +/- 4.3 (m +/- SEM); 24.4 +/- 2.5 and 13.6 +/- 3.1 for DAMI, HEL and K-562 cell lines, respectively. The addition of cytochalasin B (2 micrograms/ml) increased significantly the number of AgNORs per cell (DAMI: 437%, HEL: 384% and K-562: 345% of controls, p < 0.05 by t-test). Moreover, the numbers of nucleoles per cell after addition of cytochalasin B were augmented significantly (DAMI: 258%, HEL: 271% and K-562: 264% of controls, p < 0.05 by t-test). The total protein content estimated by Bradford's method increased significantly to 938%, 326% and 388% of controls in DAMI, HEL and K562, respectively (p < 0.05 by t-test) in cells where actin was inhibited by cytochalasin B. In the presence of cytochalasin B, the endomitotic index (EI) [mean of (log2 DNA content expressed in N) 1] measured by flow cytometry increased to 368%, 207% and 538%, for DAMI, HEL and K-562 cell lines, respectively (p < 0.05 by t-test) after treatment with cytochalasin B. In contrast, the number of AgNORs per unit of DNA (EI) and the total protein content per unit of DNA did not change for DAMI, HEL and K-562 cell lines (p < 0.05 by t-test) after treatment with cytochalasin B. In conclusion, the increase in the number of the Nucleolar Organizer Regions by an agent known to stimulate polyploidization of megakaryocytic cell lines suggests that polyploidization occurs by enhanced protein production proportionally to DNA synthesis.

Actins↗

Inhibition of tubulin polymerization in megakaryocyte cell lines leads to polyploidization which affects the metabolism of actin.

Megakaryocyte polyploidization responds to platelet demand and results from the lack of cytoplasmic separation while the nucleus keeps dividing. In normal telophase, the plane of the actin constriction ring is determined by the tubulin spindle. In order to investigate the role of tubulin in the megakaryocyte polyploidization, two cell lines with megakaryocyte properties (DAMI and HEL) were incubated for 4 days in the presence or absence of colchicine (10 ng/ml), an inhibitor of the tubulin spindle. As compared to control conditions, cell cultured in the presence of colchicine reveal an augmentation of cell size, the apparition of multilobed nuclei and an increase in the cytoplasm basophilia, suggesting a megakaryocyte morphology. Furthermore, when cells are cultured in the presence of colchicine, diameters measured by morphometry augment from 17.4 microns +/- 1.7 to 34.5 microns +/- 2.0 and from 27.3 microns +/- 0.3 to 40.2 microns +/- 0.6 for DAMI and HEL cell lines, respectively (p < 0.05 by t-test). After four days of culture in the presence of colchicine, cells undergo arrest proliferation. Ploidy measured by flow cytometry, shows that control cells predominantly diploid (2N) become polyploid with the appearance of 8N, 16N and 32N cells after addition of colchicine. Moreover, the endomitotic index ¿mean of (log2 DNA content expressed in N)-l¿ increases significantly from 0.5 +/- 0.1 to 1.2 +/- 0.1 and from 0.6 +/- 0.1 to 1.4 +/- 0.0 after treatment with colchicine for the DAMI and HEL cell lines, respectively. To identify the nature of the molecules involved in this phenomenon, both forms of actin (monomeric, G- and polymerized, F-) were evaluated by a DNase I inhibition assay. G-actin contents in pg per 10(6) cells are 13.0 pg +/- 2.8 (m +/- SEM) and 1.0 pg +/- 0.1 for unstimulated DAMI and HEL cells. F-actin contents per 10(6) cells are 5.8 pg +/- 1.5 and 0.1 pg +/- 0.0 for DAMI and HEL cells. The addition of colchicine for four days of culture significantly increased the G-actin content (251% and 475% of controls) and F-actin content (170% and 619% of controls) for DAMI and HEL cell lines, respectively. In contrast, the G/F-actin ratio was not affected by colchicine. DAMI cells from each ploidy class were then sorted on an ELITE Coulter and assayed for actin content. While total actin, G-actin and F-actin per cell were augmented in polyploid cells cultured with colchicine, there was a reduction in G-, F- and total actin contents per diploid equivalent when cells become polyploid. In conclusion, these data suggest that inhibition of the tubulin spindle by colchicine induces polyploidization of megakaryocytes by a reduction of both forms of actin, possibly by preventing the actin constriction ring in the telophase.

Actins↗