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Biomedical subjects

A Degrassi

Publications and source records attributed to A Degrassi.

At least 19 recordsLinked to original sources

A new oxygenator change-out system and procedure.

Official reports relate that, in the US, one patient/month dies as a result of the emergency oxygenator change-out procedure, and the permanent injury of some patients is the result of current oxygenator change-out procedures or oxygenator failures, both in extracorporeal circulation (ECC) and extracorporeal membrane oxygenation (ECMO). The aim of this article is to evaluate a new system and procedure, dedicated to oxygenator change-out, represented by two three-way stopcocks inserted in the ECC line in use. A dedicated back-up oxygenator and circuit can be easily primed and connected to the dedicated connector on the stopcocks, then blood flow is diverted to the new oxygenator without interruption of the ECC. Tests performed showed that oxygenator change-out can be completed by perfusionists in 62.13 +/- 11.12 sec. Results obtained show that the new system and procedure allows fast, safe and reproducible oxygenator change-out without interruption of the ECC.

Anesthesiology↗

A closed system for the clinical banking of umbilical cord blood.

Umbilical cord blood (UCB) is a source of hematopoietic progenitor cells and is used as an alternative to the bone marrow or peripheral blood for treatment of several onco-hematological diseases. Because of the limited number of CD34+ hematopoietic stem cells present in UCB units and of the elevated costs of cryopreservation, it is of paramount importance to select the UCB units that are clinically useful before storage and optimize banking efficiency by designing reliable procedures to process and freeze the selected units. Among the different parameters characterizing UCB, nucleated cell (NC) and CD34+ cell content provides useful criteria to select UCB units since clinical data documented that the infused cell load (both NC and CD34+ cells) plays an important role in the successful outcome of transplants. By evaluating volume, CD34+ cell content, NC total amount, and NC density of 117 UCB units, we found a significant association between CD34+ cell content and NC density and total amount, indicating these parameters as useful to decide UCB clinical utility. Furthermore, we set up a fast procedure to process UCB units for storage. A system for NC separation and volume reduction of UCB samples in a dedicated, germ-free, closed circuit was developed, where plasma and red blood cells (RBC) depletion was obtained by sedimentation in the presence of a 3.5% Polygeline solution. By this separation system, both RBC depletion and high NC and CD34+ cell recoveries were achieved in 60 min, and the yield was comparable to the one obtained by other separation methods. Since Polygeline has been clinically used as a plasma expander and no toxic effects on patients were reported, the protocol can be applied in the large-scale banking of UCB.

Antigens, CD34↗

Evaluation of ex vivo expansion and engraftment in NOD-SCID mice of umbilical cord blood CD34+ cells using the DIDECO "Pluricell System".

The Dideco "Pluricell System" is a commercially available closed device composed of an expansion chamber and a kit of certified reagents that allow haematopoietic stem cell expansion. We have expanded seven umbilical cord blood (UCB) samples following the manufacturer's instructions; two groups of irradiated NOD-SCID mice have been transplanted with expanded and nonexpanded cells from the same UCB, and bone marrow was analysed for the presence of human cells. Average UCB volume was 61.6+/-8.8 ml; mean nucleated cell content was 1090.5+/-189.9 x 10(6). Percentage and number of CD34+ cells were 0.37+/-0.13% and 3.9+/-1.2 x 10(6). After separation, CD34+ cell purity was 82+/-11%. Mean number of inoculated cells was 760 000; mean NC and CD34+ fold expansion at 12 days was 230.4+/-91.5 and 21.0+/-11.9. Both groups of mice showed successful engraftment: the percentage of human cells was higher in the group receiving expanded cells (3.4+/-2.01%) compared to the group receiving nonexpanded cells (1.5+/-0.66%) (P<0.00018, Mann-Whitney test). The cell population obtained after 12 days expansion consisted mainly of myeloid and megakaryocytic progenitors. The CD34+ antigen reached the maximum expression level at day 12 (7.5+/-2.0%). Analysis of lineage-markers for human myelomonocytic, megakaryocytic, B, T, CD34 and erythroid cells, gave evidence that all the lineages were represented in the marrow of transplanted mice.

Animals↗

Qualitative multiplex RT-PCR for simultaneous detection of hepatitis C virus and human immunodeficiency virus in plasma samples.

This report describes the development of a one-tube multiplex reverse transcriptase (RT)-PCR assay for the simultaneous detection of hepatitis C virus (HCV) and human immunodeficiency virus (HIV) in plasma samples. The assay was evaluated with two panels of HCV- and HIV-1-positive samples, as well as negative plasma specimens. Extraction and amplification of HCV and HIV-1 RNA from plasma samples were performed in a single reaction, and amplified genomes were detected with specific probes. Serial dilutions of the HCV and HIV-1 first World Health Organization International Standards were used to evaluate the sensitivity of the method. Two RNA controls were constructed to determine inter-assay variations and the sensitivity of the amplification step. The assay had good specificity and detected all the genotypes and subtypes tested. The analytical sensitivity of the entire assay was 100 IU/mL for HCV and 200 IU/mL for HIV-1, while the amplification step detected ten copies/reaction for HCV and 20 copies/reaction for HIV-1. The multiplex assay allowed the simultaneous extraction, amplification and detection of two virus genomes, thereby providing an important practical advantage and an efficient approach for analysing individual and pooled plasma donations.

Feasibility Studies↗

Corticotropin-releasing factor, urocortin and endothelin-1 stimulate activin A release from cultured human placental cells.

Human placenta produces activin A, a glycoprotein belonging to the transforming growth factor beta superfamily, which modulates several placental immune and endocrine functions. However, substances involved in controlling placental activin A production are not yet completely elucidated. The aim of the present study was to investigate the effects of placental products, corticotropin-releasing factor (CRF), urocortin, prostaglandin E(2) (PGE(2)) and endothelin-1 (ET-1) on activin A release from cultured human placental cells. Placental tissue was collected at term from normal pregnancies and a trophoblast-enriched cell preparation was cultured for 48 h. The test substances were applied (concentration from 10(-9)-10(-7)M) and the medium was harvested after 3 h incubation; vehicle-treated cells (controls) were present in each experiment. Activin A concentrations in culture medium were measured by using a specific two-site enzyme immunoassay. The addition of CRF resulted in a dose-related increase of activin A concentrations (P < 0.01). The stimulatory effect of CRF was significantly reversed by alpha-helical CRF(9-41), the CRF receptor antagonist. Urocortin showed a stimulating effect on activin A release from placental cells (P < 0.05) but not dose-related; the effect of urocortin was reversed by an equimolar dose of CRF antagonist, astressin. ET-1 significantly increased activin A concentrations in the culture medium only at the highest concentration, 10(-7)M (P < 0.05). No difference in activin A release was observed after incubating the cells with PGE(2). The evidence that CRF, urocortin and ET-1 stimulate activin A secretion from cultured placental cells suggests that these vasoactive factors may affect the changes of placental activin A secretion in pre-eclamptic woman.

Activins↗

Efficiency of doxorubicin handling by isolated hepatocytes is a valuable indicator for restored cell function.

Pig liver is a possible source of hepatocytes for extracorporeal bio-artificial liver devices. In order to evaluate recovered hepatocyte function following enzymatic isolation, we developed a cytochemical method that is based on the capacity of hepatocytes to sequester the anthracycline antitumour drug doxorubicin within intracellular acidic compartments. Doxorubicin is a naturally fluorescent molecule. Thus, the process of drug concentration within hepatocytes can be visualized in living conditions by fluorescence microscopy. Porcine hepatocytes harvested from heart-beating donors were grown either as isolated cell suspensions or as tissue monolayers. Immediately after isolation and at fixed culture times, cells were incubated with 0.1 mM doxorubicin in Hanks' balanced salt solution for 10 min at 37 degrees C in 5% CO2-humidified atmosphere and observed by fluorescence microscopy. Parallel electron microscopy was performed to compare fluorescence data with general cell morphology. To monitor lysosomal acidification capacity, the fluorescent pH-sensitive vital dye LysoSensor-Blue was used. Doxorubicin fluorescence showed different patterns of nuclear and cytoplasmic staining, according to the time allowed for cell recovery and the culture method. In particular, cytoplasmic fluorescence changed from a diffuse staining, that could be observed after cell isolation and in hepatocyte suspensions, to a punctate perinuclear and pericanalicular fluorescence detectable in fully recovered hepatocyte monolayers. This study indicates that the 'doxorubicin-fluorescence test' may be considered a simple and rapid procedure for assessing hepatocyte functional condition. It may provide valuable and 'real time' guidelines for judging the correct way these cells are to be collected, preserved and utilized for clinical purposes.

Animals↗

Increased blood volume and CD34(+)CD38(-) progenitor cell recovery using a novel umbilical cord blood collection system.

A major problem with the use of umbilical cord/placental blood (UCB) is the limited blood volume that can be collected from a single donor. In this study, we evaluated a novel system for the collection of UCB and analyzed the kinetics of output of hematopoietic stem cells in the collected blood. Sequential UCB fractions were collected from 48 placentas by gravity following common procedures. When UCB flow was ended, collection was continued using the device. Nucleated cell (NC) density in each fraction was evaluated and the expression of CD34, CD38 and other hematopoietic markers was assessed by flow cytometry. The total collected volume was 60.9 +/- 26.2 ml (mean +/- SD, range 17-141.5). The device yield (volume collected using the device/total volume) was 26.5 +/- 15.1%. No significant difference was observed in NC count in sequential fractions. A significant increase in CD34(+) cell content in sequential fractions and a 2.07 +/- 1.18-fold increase in the percentage of CD34(+) cells in the last versus first fraction were observed. Furthermore, within the CD34(+) population, the percentage of CD38(-) pluripotent stem cells in the first fraction was 3.24 +/- 1.39, while in the last fraction it raised to 34.43 +/- 22.62. Thus, at the end of a collection performed following current procedures, further blood rich in the most primitive progenitor cells can be recovered. Therefore, the optimization and standardization of collection procedures are required to obtain maximal recovery from each placenta and increase the percentage of UCB units suitable for clinical use.

ADP-ribosyl Cyclase↗

Cell cycle synchronization of FRTL5 cells. A physiological model system.

We describe a "physiological" cell cycle synchronization model system. FRTL5 cells, TSH-dependent for proliferation, were starved from TSH. The cell cycle phases and the expression of markers associated to different cycle phases were evaluated. TSH starvation blocks proliferation without provoking death and induces virtually all the cells to accumulate in G0/G1 phase. TSH readdition allows 30% of these cells to enter the S phase. DNA topoisomerase II 170-kDa isoform is not expressed in G0/G1 synchronized cells while it is expressed in logarithmic growing cells. The 180-kDa isoform is not expressed in G0/G1 synchronized cells while it is expressed in 20% of logarithmic growing cells regardless of the cycle phase. c-myc mRNA is not expressed in G0/G1 synchronized cells while it is detectable upon TSH readdition. This system provides a tool for the analysis of events associated with the G0/G1 phase and the transition from G0/G1 to S phase.

Animals↗

A fluorescent in situ hybridization method in flow cytometry to detect HIV-1 specific RNA.

In HIV+ patients, the presence of HIV-RNA in plasma and circulating cells has been reported to be a marker of progression but the percentage of transcriptionally active infected cells remains unclear. We have developed a reliable fluorescent in situ hybridization method for the detection of HIV specific RNA by flow cytometry. The procedure was applied to a panel of chronically infected cell lines and to an acutely infected cell line mimicking normal peripheral blood lymphocytes in susceptibility to HIV-1. The cells were fixed in suspension and hybridized by means of an HIV-1 genomic probe labeled with digoxigenin-11-dUTP. An FITC-labeled anti-digoxigenin antiserum was then applied and the resulting fluorescence signals were analyzed both by flow cytometry and confocal microscopy. Different procedures for double staining HIV-RNA together with virus induced proteins or surface markers were also developed. Flow cytometric detection of in situ hybridization offers the possibility of analyzing thousands of cells in a few seconds and of collecting multiparametric information at the single cell level, thus providing a potential tool for detecting the rare HIV-RNA expressing cells in peripheral blood samples.

Antigens, CD↗

In vitro cultured stromal cells from human tonsils display a distinct phenotype and induce B cell adhesion and proliferation.

Peripheral lymphoid tissues contain a fibroblastic cell type referred to as stromal cells or reticulum cells which interact with lymphocytes as part of the lymphoid microenvironment. After isolation from human tonsils and expansion in vitro we analyzed the surface phenotype, extracellular matrix components, cytoskeletal products, cytokine production, binding and functional interaction with B lymphocytes of in vitro cultured stromal cells (HTSC) both in resting condition and after activation with tumor necrosis factor (TNF)-alpha and interferon (IFN)-gamma. Our results show that HTSC do not express specific myeloid, lymphoid, endothelial or epithelial markers. HTSC express CD54 (ICAM-1), CD49a (VLA-1), CD49b (VLA-2), CD49c (VLA-3), CD49e (VLA-5), CD49f (VLA-6), CD29, CD51, CD44 and produce vinculin, beta-tubulin, alpha-actin, vimentin, fibronectin, laminin and collagen types I, III and IV. Activation of HTSC up-regulated CD54 (ICAM-1) and induced HLA-DR and CD106 (VCAM-1). HTSC constitutively produce interleukin (IL)-6 which is enhanced upon activation with TNF-alpha. IL-8 and granulocyte/macrophage colony-stimulating factor are detected only in the supernatants of activated HTSC. Reverse transcriptase polymerase chain reaction analysis revealed that HTSC display mRNA for IL-1 alpha, leukemia inhibitory factor and IL-7. The adhesion of tonsillar B lymphocytes to activated HTSC is mediated by CD11a/CD18 and CD54. Furthermore, HTSC can induce maximal proliferation of IL-2-activated B lymphocytes cocultured in direct cell-cell contact with HTSC. These results clearly distinguish in vitro cultured HTSC from common fibroblasts and other non-lymphoid elements present in the lymphoid parenchyma, such as follicular dendritic cells, and show that HTSC actively participate in the lymphoid microenvironment. In vitro cultures of HTSC could therefore be a useful model system for detailed analysis of the interactions between stromal cells and lymphocytes under physiological and pathological conditions.

Antigens, Surface↗

A method for generating magnetic resonance microimaging T2 maps with low sensitivity to diffusion.

Generating T2 maps in magnetic resonance microimaging is often complicated by the self-diffusion of water molecules. A modification of the standard spin-echo pulse sequence is proposed which minimizes this effect. Experiments with doped water confirmed that the T2 values obtained with the modified sequence were equal within the experimental error to the value obtained by the spectroscopic Carr-Purcell-Meiboom-Gill method. The applicability of the technique is demonstrated by generating T2 maps of porcine articular cartilage.

Animals↗

Investigation of laminar appearance of articular cartilage by means of magnetic resonance microscopy.

Magnetic resonance (MR) images and relaxation and diffusion maps of articular cartilage were obtained to explain discrepancies in its MR appearance. Porcine specimens were studied only by MR microscopy. For human specimens a combination of MR microscopy and large-scale MR imaging was used. Common features in the laminar structures of human and porcine samples are described. It was found that the decay of transverse magnetization was nonexponential with a rapidly decaying component which prevented construction of reliable proton-density maps. Dependence of T2 values on the orientation of specimens in the magnetic field as well as magnetization transfer experiments supported the previous suggestions about a significant role of dipolar interaction with protons of collagen in the laminar appearance of articular cartilage. The loss of the laminar structure induced by rotation of the human cartilage specimen around the axis normal to its surface demonstrated nonuniform angular distribution of the collagen fibers within the layer.

Animals↗

Oxygen-derived free radical (ODFR) action on hyaluronan (HA), on two HA ester derivatives, and on the metabolism of articular chondrocytes.

Oxygen-derived free radicals (ODFR) appear to be involved in the pathogenesis of arthritic disorders. In order to gain new insight on their role in the phenomenon and as a basis for a therapeutic approach, the effect of ODFR (produced by the xanthine oxidase-hypoxantine system) on hyaluronic acid, on two HA ester derivatives, and on pig articular chondrocytes was investigated. High M(r) HA (1.1 x 10(6)) and low M(r) HA (16 x 10(4)) were depolymerized by ODFR but the methyl and hydrocortisone esters of HA (HYAFF 2P50 and HYC13) turned out to be nearly unaffected. When articular chondrocytes were treated with ODFR, a rapid nucleoside triphosphate (NTP) depletion, a transient appearance of pyrophosphate (PPi), and an increase of phosphomonoester and diphosphodiester concentrations have been observed. The NTP depletion and the DPDE increase are related to the concentration of free radicals. Glyceraldehyde-3-phosphate accumulation during ODFR treatment suggests that ATP depletion can occur as a consequence of the blockage of glycolysis at the level of glyceraldehyde-3-P dehydrogenase. The hypothesis is presented that PPi can be produced from the pathway of the FAD-NAD (DPDE) biosynthesis and then either hydrolyzed by endogenous pyrophosphatases or precipitated in the form of insoluble calcium salts. Long-term treatment (16 h) with ODFR causes a loss of chondrocyte membrane integrity which can be revealed both by an increased free LDH activity and by the characteristic signal of free phospholipids in the 31P-NMR spectra. While high M(r) HA shows a significant protective activity for chondrocytes against ODFR action, low M(r) HA and ester derivatives do not. It is suggested that the therapeutic activity of HA ester derivatives can be ascribed to their in vivo hydrolysis products.

Adenosine Triphosphate↗

Effect of marrow processing on hematopoietic cell recovery in bone marrow harvests: focus on filtration.

Bone marrow processing requires a first step of filtration to remove small clots, bone fragments, fat cells and fibrin followed by centrifugation to separate mononuclear cells (MNC). These procedures cause a significant loss of cells potentially including hematopoietic stem cells (HSC). We therefore analyzed the cell recovery and phenotype of various fractions (whole marrow; filtered marrow; MNC collected after centrifugation; bone marrow fragments trapped by filtration) of bone marrow harvests (BMH) from patients with different hematological malignancies undergoing autologous bone marrow transplantation. Analysis of 25 BMH showed that the mean percentage of WBC and MNC recovered after filtration was respectively 92.28 +/- 7.42% and 92.3 +/- 9.05% of the original BMH while after centrifugation the percentage was 20.23 +/- 6.47% and 75.7 +/- 12.81%. The percentage of cells present in the tissue fragments trapped in the filters obtained from five BMH was only 3.93 +/- 1.25% (WBC) and 5.65 +/- 2.2% (MNC) of those originally present in the harvest. Phenotypic analysis performed on the same samples showed that there is no selective loss of MNC or CD34+ cells in the filtration process. Our data indicate that processing of BMH, in particular filtration of tissue fragments, does not affect the recovery of HSC.

Bone Marrow↗