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J M Paulus

Publications and source records attributed to J M Paulus.

At least 19 recordsLinked to original sources

A strategy for multiple immunophenotyping by image cytometry: model studies using latex microbeads labeled with seven streptavidin-bound fluorochromes.

Multiple immunophenotyping is aimed at identifying several cell populations in a single labeling procedure by their ability to bind combinations of specific labeled antibodies. The present work demonstrates the simultaneous discrimination by using image cytometry of aminomethylcoumarin acetate (AMCA), Lucifer yellow (LY), fluorescein isothiocyanate (FITC), R-phycoerythrin (PE), PE-Texas red tandem (Red613), peridinin-chlorophyll protein (PerCP), and allophycocyanin (APC), which were all bound to latex beads as streptavidin-conjugated fluorochromes. This has been the result of a step-by-step optimization of the several factors affecting the sensitivity and specificity of multiple immunofluorescence analysis. First, 14 streptavidin-conjugated fluorochromes were evaluated by using spectrofluorometry. A primary selection was then made of ten spectrally separable dyes that could be evaluated by using image cytometry. These dyes were bound to latex particles, and specific filter combinations were assembled to minimize crosstalk between fluorophores while preserving sufficient fluorescence intensity and counting statistics. Potential probe associations were then assessed by measuring the emissions of all fluorochromes that were detected by each filter combination. The resulting crosstalk matrix served as the basic tool both for final selection of the optimal filter combination and for dye set (composed, in this case, of the seven fluorochromes described above) and for mathematical correction of residual spectral overlap. Next, an image cytometry system was adapted to collect seven images of matched brightness with the selected combination of excitation/emission filters and dichroic mirrors. Finally, seven-parameter synthetic images were generated by digital image processing.

Automation

Factors regulating megakaryocyte progenitor commitment to polyploidization.

Recognizable megakaryocytes are polyploid cells generated by a clonogenic, diploid progenitor, termed CFU-MKC (colony forming unit, megakaryocyte). In order to quantify polyploidization, ploidy histograms of megakaryocytes determined by microphotometric or flow cytometric measurements of megakaryocyte DNA have generally been used. However these techniques provide no information on the rate of commitment of CFU-MKC to polyploidy. Using a technique of clonal analysis determining the distributions of the number of doublings (NbD) undergone by CFU-MKC before committing to polyploidization, the polyploidization probability of CFU-MKC could be derived. This probability was found to be a constant independent from CFU-MKC mitotic history, since NbD distributions are exponential functions characterized by a constant rate of decay per doubling. By studying the effects of growth factors on polyploidization probability, it was also shown that: (1) this parameter is negatively regulated by growth factors contained in poke-weed or WEHI conditioned media, as well as by erythropoietin; (2) commitment to polyploidization does not require prior CFU-MKC division; (3) bipotent erythroid-megakaryocyte progenitors have a lower polyploidization probability than CFU-MKC; (4) determination of polyploidization probability reflects the activity of growth factors with greater accuracy than megakaryocyte colony count.

Acetylcholinesterase

Factors regulating megakaryocyte progenitor commitment to polyploidization.

Recognizable megakaryocytes are polyploid cells generated by a clonogenic, diploid progenitor, termed CFU-MKC (colony forming unit, megakaryocyte). In order to quantify polyploidization, ploidy histograms of megakaryocytes determined by microphotometric or flow cytometric measurements of megakaryocyte DNA have generally been used. However these techniques provide no information on the rate of commitment of CFU-MKC to polyploidy. Using a technique of clonal analysis determining the distributions of the number of doublings (NbD) undergone by CFU-MKC before committing to polyploidization, the polyploidization probability of CFU-MKC could be derived. This probability was found to be a constant independent from CFU-MKC mitotic history, since NbD distributions are exponential functions characterized by a constant rate of decay per doubling. By studying the effects of growth factors on polyploidization probability, it was also shown that: (1) this parameter is negatively regulated by growth factors contained in poke-weed or WEHI conditioned media, as well as by erythropoietin; (2) commitment to polyploidization does not require prior CFU-MKC division; (3) bipotent erythroid-megakaryocyte progenitors have a lower polyploidization probability than CFU-MKC; (4) determination of polyploidization probability reflects the activity of growth factors with greater accuracy than megakaryocyte colony count.

Acetylcholinesterase

Purification, expansion, and multiple fluorochrome labeling of cord blood hemopoietic precursors: preliminary results.

CD34-positive cells were isolated from a total of 23 cords using CellPro Ceprate columns. AIS MicroCellector flasks, and panning. The cells were (1) expanded in serum-free culture supplemented with a variety of combinations of cytokines and (2) immunophenotyped using multiple fluorochrome labeling. The results indicated that the avidin column produced the highest purity of CD34-positive cells, and that immature blast cells could be expanded in serum-free culture. Preliminary results suggested that the four fluorochrome labeling technique may provide useful information on the lineage commitment of cord blood precursor and blast cells.

Avidin

Reevaluation by image analysis of the effects of fibroblasts, fibronectin or laminin upon colony formation in mouse lungs by B16 melanoma cells.

A recently described personal method based on image analysis of histological sections was used in order to quantify lung colony formation by B16 melanoma cells injected intravenously into the mouse. These tumor cells were preincubated in vitro either with fibronectin (FN), laminin (LN) or fibroblasts (FB), which are implicated in the process of invasion and metastasis. Thanks to this method, a more accurate analysis of lung colonies (section area and number) formed by tumor cells was realized. By image analysis, we show that when FB were mixed with B16 cells, a drastic increase of tumor sections number and area was induced. LN increased the tumor sections area, but not their number. No effect of FN on B16 cells was observed. LN and FN promoted tumor anchorage in the depth of the lungs while FB reduced the latter. These facts could explain the contradictory results obtained by simply counting macroscopically superficial lung colonies. When cultured in vitro, these B16 melanoma cells did not produce any type of IV collagenase, either alone or in the presence of LN or FN, but in cocultures (B16 with 3T3) and in fibroblasts cultures, this enzyme was present. This could explain, among other factors, why the rate of invasiveness exerted by B16 cells is higher when the latter are coinjected with FB.

3T3 Cells

Myeloperoxidase and elastase as markers of leukocyte activation during cardiopulmonary bypass in humans.

To assess leukocyte activation during cardiopulmonary bypass, we measured white blood cell and neutrophil counts and lysosomal enzyme release, especially myeloperoxidase and elastase, throughout the operation and for 5 days postoperatively. A newly developed double antibody radioimmunoassay of myeloperoxidase and an enzyme-linked immunosorbent assay for detection of the polymorphonuclear elastase-alpha 1-proteinase inhibitor complex were used to determine their plasma levels in 15 patients undergoing elective aorta-coronary bypass grafting. Preoperatively white blood cell counts and plasmatic levels of myeloperoxidase and elastase-alpha 1-proteinase inhibitor were normal. Because no correlation has yet been established between levels of myeloperoxidase and elastase-alpha 1-proteinase inhibitor, the aim of this prospective study was to evaluate the use of these enzyme levels as markers for leukocyte activation in vivo. We addressed the clinical situation of cardiopulmonary bypass because it offered the possibility of monitoring the comparative evolution of blood levels of these enzymes in parallel to white blood cell counts through well-defined steps corresponding to known events. We document the advantages of myeloperoxidase blood levels over elastase measurement as reflecting more rapidly the in vivo activation of leukocytes. The time course kinetics of these three measurements were not parallel. White blood cell counts remained stable at the beginning of bypass, whereas myeloperoxidase levels increased sharply and continuously as soon as bypass was instituted until the end of bypass. Elastase levels also increased, but later than myeloperoxidase, beginning when the patients was rewarmed. High elastase plasma levels persisted later than myeloperoxidase after bypass, in parallel with white blood cell counts. It thus clearly appears that changes in myeloperoxidase levels more rapidly reflect the activation state of leukocytes induced by cardiopulmonary bypass and surgery, whereas peak levels of elastase were delayed and parallel to white blood cell counts. From this model, in which the evolution of leukocyte numbers could be followed in relation with known steps of stimulation, it appears that myeloperoxidase is a sensitive marker for monitoring in vivo activation of white blood cells.

Adult

The determination of megakaryocyte ploidy.

Methods which have been used to determine megakaryocyte ploidy in animals and humans are reviewed. Although the number of megakaryocyte nuclear units counted in bone marrow squashes is roughly proportional to ploidy, accurate determinations of DNA content require the use of microphotometry or flow cytometry. New techniques should make it possible to distinguish polyploidizing megakaryoblasts from promegakaryocytes and mature megakaryocytes which have arrested polyploidization. Only the latter should be included in histograms of the number of endoduplications, since only those have expressed their full polyploidization potential. Statistical techniques are available for analysis and comparison of both raw ploidy distributions or histograms of endoduplication numbers.

Animals

Abnormal splenic megakaryopoiesis in MPSV-induced myeloproliferative disease.

The myeloproliferative sarcoma virus (MPSV) induces a murine myeloproliferative syndrome characterized by an erythromyelemia, an anemia, a thrombocytopenia associated with a myeloproliferation in the spleen and a splenic and medullar fibrosis. We have used the in-vitro plasma clot technique to measure megakaryocytic precursors in the spleen and bone-marrow of MPSV-infected mice. We report that megakaryocytic colonies are increased, in number (X75), in concentration (X9) and in size, in the spleen but not in the bone-marrow of neoplastic mice. Furthermore, these splenic precursors are hypersensitive to growth factors present in the anemic mouse serum used in the culture system. These data show that the thrombocytopenia observed in the MPSV-induced neoplasia does not result from a lack of megakaryocyte precursors, but rather from an excess of megakaryocyte destruction. This ineffective splenic megakaryopoiesis associated with the presence of a massive splenic fibrosis make the MPS-induced neoplasia a suitable model for studying the perturbation of megakaryopoiesis in myeloproliferative syndrome associated with fibrosis.

Animals

Polyploid megakaryocytes develop randomly from a multicompartmental system of committed progenitors.

Cumulative distributions of the number of doublings undergone by mixed megakaryocytic/erythroblastic colonies and by pure megakaryocytic colonies were determined from plasma clot cultures of bone marrow (from C57BL/6 mice) supplemented with erythropoietin. Analysis of these distributions suggests that these colonies are produced by three distinct progenitors. At days 7-14, progenitors of mixed megakaryocytic/erythroblastic colonies (BFU-ME) generate tri-exponential distributions and the mean (+/- SD) fraction of this progenitor pool ceasing to proliferate per doubling (FCP) increases stepwise from 0.07 +/- 0.06 to 0.27 +/- 0.07 and 0.73 +/- 0.07. In this interval, progenitors of pure megakaryocytic colonies (CFU-M) generate bi-exponential slopes whose FCP values are compatible with the two last slopes above. Finally, CFU-M at day 3 express only the last slope. From days 5 to 9, megakaryocytes generated by BFU-ME reach lower ploidy levels than do those generated by CFU-M. It is concluded that, in the culture system used, (i) megakaryocyte progenitors that do not switch to polyploidization mature through the three consecutive compartments indicated, (ii) each progenitor population has a probability of becoming polyploid that reflects the fraction that ceases to proliferate, (iii) the exponentially distributed mitotic reserve of progenitors is determined by the combination of maturing into the next compartment and the probabilistic switch to the pathway of polyploidization, and (iv) the ploidy distribution of megakaryocytes probably depends on the progenitor from which they originate.

Acetylcholinesterase

[Secretion of acetylcholinesterase by megakaryocytes in mice].

Acetylcholinesterase, an early and nearly specific marker of Rodent thrombocytic cells, undergoes a typical secretory cycle leading to the release of the enzyme in the demarcation system and the outer cellular space of bone marrow megakaryocytes. This secretion process suggests that megakaryocytes may adapt the amplification of their own precursors by modulating the concentration in cholinergic compounds in hematopoietic tissues.

Acetylcholinesterase

Mouse megakaryocytes secrete acetylcholinesterase.

Acetylcholinesterase (AchE), an essentially specific and early marker of rodent thrombocytic series, in several tissues acts both as a constituent of the cellular membrane and as a secretory enzyme. This study presents the ultrastructural transport and fate of this substance in the megakaryocytes of mouse bone marrow, using Tranum-Jensen and Behnke's adaptation of the indirect thiocholine method. It is shown that megakaryoblasts and megakaryocytes undergo a typical secretory cycle consisting of (1) enzyme synthesis and segregation on the endoplasmic reticulum and nuclear envelope, (2) enzyme concentration in AchE-vesicles and AchE-granules formed from the cisternae of the Golgi apparatus, and (3) discharge in the demarcation membrane system and extracellular space. The AchE-vesicles and granules appear to be hitherto unrecognized megakaryocytic organelles as they do not resemble alpha nor the dense granules, and their mode of formation and fate differ from those of primary lysosomes and peroxidase granules. Released platelets reveal AchE activity in the open canalicular system. The data are compatible with the hypothesis that by controlling acetylcholine concentration in hematopoietic tissues, the secretion of AchE by megakaryocytes can modulate the proliferative activity of megakaryocytes progenitors.

Acetylcholinesterase

Kinetics of platelets, megakaryocytes and their precursors: what to measure?

A sequential exploration of the kinetics of platelets, megakaryocytes, and their progenitors is devised, wherein abnormalities at one level of differentiation are the subject of further analysis at the preceding level. Platelet kinetics yield estimates of mean platelet life span, fraction of platelet mass in circulation and daily production, making it possible to recognize the disorders of hyperdestruction, hypersequestration, hypoproduction, and hyperproduction. Theoretical considerations and regression analysis of a variety of computer-simulated survival tests show that sufficient information is contained in the first four days of the disappearance curve of population labeled platelets to provide an estimate of mean life span with an error of 9%--15%. Identifying the type of destruction disorder depends on developing tests and parameters which will make it possible to integrate into a coherent model such indices as the rate of senescence, the rates of reversible and irreversible aggregation, and the rates of adhesion to and phagocytosis by the reticuloendothelial system. Foremost among the existing models is the multiple-hit theory, although its validity rests on the unproved assumption that platelets keep a permanent memory of their injuries. Identifying the type of production disorder is the purpose of megakaryocyte kinetics. The daily production of megakaryocytes could be derived from the daily platelet production and the number of platelets released per megakaryocyte; determining megakaryocyte number would also yield the mean megakaryocyte maturation time. All these parameters could be obtained by combining a simple radioiron dilution method with cytochemical identification of megakaryocytes and with advanced, automated morphometric techniques. Abnormalities of megakaryocyte number and size can be further analyzed by studying the kinetics of thrombocytic precursors in tissue culture, i.e., by recording the distribution of precursor doublings and megakaryocyte ploidy histograms. The application of these techniques to cultures of bone marrow suggest that endomitosis may be initiated by any megakaryocyte precursor and that the kinetics of this process influence the number and final ploidy level of megakaryocytes.

Blood Platelets

Platelet formation in Mediterranean macrothrombocytosis.

Platelet size distribution and survival parameters were studied in control subjects and ten subjects presenting Mediterranean macrothrombocytosis. The comparison showed that the latter group maintains a normal platelet circulating mass (thrombocytocrit) by combining normal platelet survival, increased splenic pooling and production of a reduced number of greatly enlarged cells. In addition to offering new insight into the megakaryocytic mechanisms that determine platelet size, the study of Mediterranean macrothrombocytosis indicates that platelet size distributions and survival parameters should be integrated in order to provide a meaningful picture of human platelet kinetics.

Africa, Northern