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V Praloran

Publications and source records attributed to V Praloran.

123 records · Page 7Linked to original sources

Blood erythroid progenitors (CFU-E and BFU-E) in acute lymphoblastic leukemias.

Circulating erythroid progenitors from 14 patients with acute lymphoblastic leukemia (ALL) and from 8 healthy subjects were studied in culture to determine the frequency and size of CFU-E- and BFU-E-derived colonies. Cells were cultured in a plasma clot system, and hemoglobinized colonies identified by diaminobenzidine reaction. The numbers of CFU-E and BFU-E per milliliter of peripheral blood were greatly increased in 10 patients when compared to controls. In 13 patients, the size distribution of BFU-E-derived colonies, analyzed by counting the number of subunits in each colony, was also found to differ significantly from controls, with a large excess of small colonies and a low percentage or a total lack of large colonies. This abnormal BFU-E size distribution was partially corrected, in the 5 patients tested, by the addition to the culture medium of 10% phytohemagglutinin-leukocyte-conditioned medium (PHA-LCM). Bone marrow crowding out of the normal progenitors, as well as disturbances in the cellular interactions involved in their normal development, most likely explain these results and these factors could be implicated in the frequent pancytopenia of ALL.

Adolescent↗

Influence of hematoporphyrin derivative concentration, incubation time, temperature during incubation and laser dose fractionation on photosensitivity of normal hemopoietic progenitors or leukemic cells.

Photodynamic therapy represents a new approach for the local control of cancers. It has recently been claimed that photodynamic therapy mediated by hematoporphyrin derivative (HPD) is selectively more efficient for killing leukemic cells than normal progenitors. To improve this effect, we studied the influence of hematoporphyrin dose, temperature during incubation and/or treatment, hematoporphyrin derivative incubation time, and fractionation of the argon laser light (488-514 nm) used for hematoporphyrin stimulation. Plating efficiency calculated after a 7-day period of growth on collagen gel medium showed a dose-dependent phototoxicity of HPD reaching 0.01% for normal hemopoietic progenitors and 0.001% for leukemic cells (dose = 12.5 micrograms/ml). The 10:1 ratio of normal hemopoietic progenitors to leukemic cells was also found to be the same or increased when temperature was 37 degrees C during incubation and 4 degrees C during laser irradiation. Similar results were also found when incubation time was varied from 75-120 min, or when laser irradiation dose was fractionated into 2 or 3 periods. The ratio of normal progenitors to leukemic cells reached 100:1 when 75 J/cm2 were fractionated into 3 periods after an incubation time of 120 min with 10 micrograms/ml HPD. Selectivity in photodynamic treatment seems to occur between normal hemopoietic progenitors and leukemic cells. The mechanism of this selectivity remains unclear, but experiments with the fractionated irradiation dose suggest that as in radiotherapy, better potentially lethal damage repair in normal cells could be a factor for selectivity in photodynamic therapy. Our results obtained with leukemic cells are fully in agreement with data in the literature concerning similar experimental models.

Animals↗

Clonal expansion of lymphocytes bearing the gamma delta T-cell receptor in a patient with large granular lymphocyte disorder.

Repeated analysis of peripheral blood lymphocytes (PBLs) from a patient with large granular lymphocytosis, neutropenia, and rheumatoid arthritis revealed that approximately 45% of PBLs displayed the following phenotype: CD3+, CD4-, CD8-, CD16+, HNK-1-, WT31-. This population was purified for further analysis by depletion with anti-CD4 and anti-CD8 monoclonal antibodies (MoAbs). Southern blot analysis showed preferential rearrangements of the V gamma 9 genes. Northern blot demonstrated the presence of V gamma 9 mRNA transcripts. With MoAbs directed against either the V gamma 9 peptide (Ti gamma A) or the delta chain of the gamma delta T-cell receptor (TCR delta 1), we further demonstrated that those cell surfaces expressed both V gamma 9 and a delta gene product. In addition, analysis of the gamma gene rearrangements on six clones derived from this population demonstrated a unique rearrangement on a single chromosome, strongly suggesting the monoclonality of this T-cell population. Significant cytotoxic activity against K562, U937 was observed only after an in vitro culture period with interleukin-2 (IL-2), whereas no specific inhibitory effect on autologous bone marrow (BM) CFU-G was noted.

Agranulocytosis↗

Increased circulating CSF-1 (M-CSF) in myeloproliferative disease: association with myeloid metaplasia and peripheral bone marrow extension.

Myeloproliferative disease (MPD) is heterogeneous in phenotypic expression and may display features consistent with expansion and activation of the monocyte/macrophage population during its course. The role of colony-stimulating factor-1 (CSF-1) in the pathophysiology of MPD was investigated by measuring circulating CSF-1 levels and examining their relationship to disease phenotype. Serum CSF-1 concentrations, measured by radioimmunoassay, were elevated in all MPD phenotypes. CSF-1 levels differed significantly between groups of patients with essential thrombocythemia, polycythemia vera, and postpolycythemic or agnogenic myeloid metaplasia (in ascending order). CSF-1 serum levels were positively correlated with spleen size and the degree of peripheral bone marrow extension, determined by scintigraphy using a macrophage-seeking isotope. There was no correlation between CSF-1 concentration and circulating levels of erythrocytes, neutrophils or platelets, or the presence of bone marrow fibrosis. Elevated serum CSF-1 levels appear to be associated with an expanded monocyte/macrophage population in MPD. In view of the known cooperativity between CSF-1 and other growth factors in regulating hematopoiesis, the finding of increased serum CSF-1 concentrations and its association with myeloid metaplasia and bone marrow extension may indicate a pathophysiologic role for CSF-1 in determining the phenotypic expression of MPD.

Bone Marrow↗

Experimental aspects of in vitro and in vivo photochemotherapy.

The selectivity of in vitro photodynamic reactions and the in vivo effects induced by PRT, whether the irradiation is applied interstitially or externally, still remains unclear. In vitro studies were performed using leukemic cell lines and syngeneic normal hemopoietic progenitors. For these, cells incubated with hematoporphyrin derivative (HPD) and non-incubated cells were irradiated with an argon laser. Data were obtained as the count of cell colonies found after a 7-day incubation period on semi-solid collagen gel medium. In vivo studies employed the HT 29 tumor model grafted into nude mice. Both animals injected with HPD and non-infected controls were irradiated with a dye laser pumped by an argon laser (Coherent) using a 400 micron optic fiber located either at a distance of 65 mm from the skin or inserted into the tumor. The temperature increase occurring during PRT was measured using non-absorbing thermocouples. In vitro, after HPD treatment and argon irradiation leukemic cells showed a greater phototoxicity (greater than 2 log10) than did the normal cells (0.25 log10). In vivo, when the heat rise is very similar (less than 4 degrees C) in both the tissues irradiated externally and those irradiated interstitially after HPD injection, histological examination of these did not reveal any quantitative differences (90% of tumor mass). These results are discussed.

Animals↗

[Congenital deficiency of platelet alpha-granules and medullary reticulinic fibrosis. Physiopathogenic hypothesis (author's transl)].

Hematological investigations of two propositus from a family with congenital thrombopathia characterised by a moderate thrombopenia and a specific platelet alpha granule deficiency revealed that the thrombopathia was associated with a constitutive reticulinic myelofibrosis, without any sign of evolutivity. This association led us to present an hypothesis to explain the genesis of this myelofibrosis. This hypothesis is based on the potential role of a mitogenic factor(s) synthetized in megakaryocytes and transported normally by platelets in alpha granules, to induce fibroblastic proliferation and increased synthesis of collagen type III by bone marrow. This myelofibrosis is similar to that found in most of myeloproliferative disorders at some step of evolutivity. In these diseases myelofibrosis is associated with qualitative and quantitative abnormalities of platelets and megakaryocytes. These abnormalities give elements to sustain our hypothesis.

Blood Platelet Disorders↗

[Automatization of differential leukocyte counts with image analyzer. Comparison between three apparatus (author's transl)].

The choice of an automated differential leukocytes counting system depends on a number of criteria including reliability, speed an cost/effectiveness ratio. We have compared the performance of three commercially available instruments, the Hematrak 360 (Geometric data), the ADC 500 (Abbott) and the DIFF 3 (Coultronics). We have voluntarily confined this study to pattern recognition systems and have not investigated other systems based on cell volume determination and cytochemical reactions (Hemalog D, Technicon). Comparison of a new system with an established automated system simplifies the task considerably, provided that the quality and performance of the reference system have been previously well-established, as has been done in our laboratory with the LARC which has been evaluated comparatively to the traditional method (5). A final difficulty is that the conclusions drawn from this type of study cannot be considered as definitive insofar as changes and improvements are continually being proposed for all systems which are still going through a mutation stage as we noticed in the course of this evaluation.

Blood Cell Count↗

Chronic hemolytic anemia due to a monoclonal IgG cold agglutinin with anti-Pr specificity.

Immunologic studies performed in a case of autoimmune chronic hemolytic anemia with low titer cold agglutinins (1/16) demonstrated that the cold agglutinins corresponded to monoclonal IgG with anti-Pr specificity. This antibody had a large thermal amplitude, being active at 37 degrees C. These unusual characteristics may define a distinct subset of chronic cold agglutinin disease.

Adult↗

Synthesis of abnormal heavy chains in Bence-Jones plasma cell leukemia with intracellular IgG.

In a patient with plasma cell leukemia and a kappa type Bence Jones protein in serum and urine, the immunofluorescence study of blood plasma cells showed intracellular gamma and kappa chain determinants. Biosynthesis experiments showed the production of abnormally short heavy chains (45,000 daltons) that assembled with normal sized light chains with a partial block. These abnormal heavy chains were secreted at a slow rate and were degraded after secretion.

Adult↗

[Leukemic cells].

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Cell Transformation, Neoplastic↗

Intralymphnode injection of human monocyte macrophage colony stimulating factor (CSF-1) as a method of obtaining high titer anti-CSF-1 antibodies.

We describe a rabbit intralymphnode immunization technique for obtaining a high titer antihuman CSF-1 antiserum with small amounts of antigen. This procedure provided a rapid (42 days after primo-injection), stable maximum immune response with a high titer antiserum precipitating 30% of 125I CSF-1 at a 1:25.000 dilution. The specificity of the immune serum was assessed by competitive binding experiments in RIA and neutralization of the CSF-1 biological activity in culture. The antiserum was also tested for its ability to detect CSF-1 in Western blotting, immunocytochemistry and immunohisto-chemistry. The results show that the immune serum specifically recognizes the biological active domain of human CSF-1 molecules from different origins and only detects dimeric forms. The potential uses of this anti CSF-1 antiserum are discussed.

Animals↗

Platelet-activating factor and haematopoiesis. XI. Platelet-activating factor has no effect on the production of interleukin-6 and tumor necrosis factor-alpha by human bone marrow stromal cells.

PAF is a phospholipid mediator of inflammation with stimulates IL-6 production by murine skin fibroblasts. Although PAF is present in human bone marrow, its role in haematopoiesis is unknown. We have assessed whether PAF stimulates IL-6 and TNF-alpha production by human bone marrow stromal cells (mostly fibroblast-like cells). We report that PAF (1 nM to 10 microM) has no effect on the synthesis of IL-6 and TNF-alpha by human bone marrow stromal cells. This difference may be due to the widely accepted concept "tissue-specific fibroblasts". The role of PAF in the regulation of human haematopoiesis remains to be elucidated.

Bone Marrow↗