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Induction of macrophage inflammatory protein 2 gene expression by interleukin 1 beta in rat lung.

BACKGROUND: Recruitment of inflammatory cells in the lungs may contribute to tissue injury as a result of mediators released from these cells. Interleukin 1 beta (IL-1 beta) is a potent inducer of neutrophil accumulation, a process that may require local protein biosynthesis. Macrophage inflammatory protein 2 (MIP-2) is a approximately 6 kD heparin binding protein and is a member of the C-X-C superfamily that causes significant neutrophil chemotaxis and activation in vitro. A study was performed to determine whether IL-1 beta could induce the expression of MIP-2 in the lungs of Brown-Norway rats. METHODS: rhIL-1 beta (500 U) or 0.9% NaCl was injected intratracheally and bronchoalveolar lavage (BAL) cells and lung tissues were evaluated for MIP-2 mRNA expression after RNA extraction by Northern blot analysis. MIP-2 probe was prepared from cDNA obtained by reverse transcriptase-polymerase chain reaction (RT-PCR) of BAL cells obtained from a rat treated with lipopolysaccharide. RESULTS: There was no detectable MIP-2 mRNA in the lungs of control rats but a marked enhancement of the expression at four hours with no expression at 12 hours and a slight expression at 24 hours. IL-1 beta induced a significant influx of neutrophils into BAL fluid with a transient increase in macrophages. In situ hybridisation of lungs using MIP-2 cDNA probe labelled with digoxigenin showed expression of MIP-2 mRNA in airway mononuclear cells and airway epithelium at four hours after IL-1 beta; at 24 hours the signal had nearly gone. CONCLUSION: IL-1 beta induces the expression of MIP-2 mRNA in rat lung. MIP-2 may be one chemokine that could contribute to IL-1 beta induced neutrophil influx.

Animals↗

In vivo effect of human granulocyte colony-stimulating factor derivatives on hematopoiesis in primates.

Using cynomolgus monkeys, we studied the hematopoietic effect and antigenicity of the human granulocyte colony-stimulating factor (hG-CSF) derivatives mutated at N-terminal amino acids (NC-59 and KW-2228) and that lacking N-terminal amino acids (M-7) in comparison with intact hG-CSF. These compounds were subcutaneously administered daily into the back of cynomolgus monkeys at the doses of 1 and 100 micrograms/kg for 2 weeks, and withdrawn for 2 weeks (1st course). After that, the same schedule was repeated (2nd course), and intact hG-CSF and KW-2228 were further administered for 2 weeks (3rd course). In the first course, all of the G-CSF derivatives showed excellent dose-dependent granulopoietic activities. In the 2nd course, however, the activities of NC-59 and M-7 were decreased and the elevations of binding and neutralizing antibody titers were observed. On the other hand, KW-2228 showed granulopoietic activities equal to or better than that of intact hG-CSF and had low antibody titer throughout all the courses.

Amino Acid Sequence↗

Transfer of granulocyte-macrophage colony-stimulating factor gene to rat lung induces eosinophilia, monocytosis, and fibrotic reactions.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a pleiotropic cytokine whose expression is increased in numerous respiratory diseases, particularly in asthma. However, the role of GM-CSF in the pathogenesis of these conditions in vivo remains unclear. Here, we report the functional activities of GM-CSF highly expressed in rat lung after intrapulmonary transfer of the gene coding for murine GM-CSF by using an adenoviral vector. This high, transient expression of GM-CSF led to the sustained but self-limiting accumulation of eosinophils and macrophages associated with tissue injury in the lung followed by varying degrees of irreversible fibrotic reactions observed in later stages. These results suggest that GM-CSF plays a previously unrealized role in the development of respiratory conditions characterized by eosinophilia, granuloma and/or fibrosis and provide the rationale for targeting this molecule in these diseases.

Animals↗

Loss of RT6 message and most circulating T cells after thymectomy of diabetes prone BB rats.

T cells expressing the RT6 surface alloantigen perform important immunoregulatory functions in the rat. Diabetes prone (DP) BB rats are deficient in circulating RT6+ T cells and develop spontaneous autoimmune diabetes mellitus. Transfusions leading to engraftment of RT6+ T cells prevent the disease. Coisogenic diabetes resistant (DR) BB rats do circulate RT6+ T cells and are free of disease. We investigated the basis for the deficiency of RT6+ T cells in the DP-BB rat and made the following observations. 1. Thymectomy causes the rapid loss of most peripheral T cells in the DP-BB rat. 2. Concomitant with the loss of T cells is the total loss of mRNA encoding RT6. 3. In contrast to the effects observed in peripheral lymphoid tissues, thymectomy does not lead to a detectable loss in RT6+ protein found in the small intestine. We conclude that the deficiency of RT6+ peripheral T cells in the DP-BB rat is due either to their short life span or to their reduced proliferative capacity following release from the thymus.

ADP Ribose Transferases↗

Good predictive value of combined cytogenetic and molecular follow up in chronic myelogenous leukemia after non T-cell depleted allogeneic bone marrow transplantation: a report on 38 consecutive cases.

We prospectively performed repeated cytogenetic and PCR monitoring of residual disease in all cases Ph positive of chronic myeloid leukemia (CML) allografted with non T cell depleted marrow at our institution over a period of 8 years. Thirty eight patients who survived the immediate post transplant period could be analyzed (median of 3 cytogenetic analyses/patient, examining 100 mitoses, and 4 PCR analyses/patient). Seven of the 38 patients had a hematological relapse (which was extramedullary in one case) and one a purely cytogenetic relapse, possibly stabilised by interferon treatment. Within 6 months of transplant, Ph positive mitoses were seen in 2 patients, and positive PCR in most cases, without implying subsequent relapse. Six of the 32 patients analyzed cytogenetically more than 6 months post transplant had Ph positive mitoses on at least one occasion: 5 had a hematological relapse within 7 months of positive cytogenetic analysis, and the remaining patient, treated by interferon remained in purely cytogenetic relapse. (The extramedullary relapse was not preceded by a positive marrow karyotype). Eight of the 38 patients had positive PCR findings on at least one occasion more than 6 months post transplant. Seven relapsed (6 hematological relapses including the extramedullary relapse, and 1 cytogenetic relapse) after 3 to 20 months, but the remaining patient remained in CR 36 months later, with negative PCR. The 30 patients who never had positive PCR findings remained in CR. In this relatively large series of patients, we found a good correlation between PCR findings more than 6 months post transplant and remission or relapse status.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Lactococcus garvieae infection in the giant freshwater prawn Macrobranchium rosenbergii confirmed by polymerase chain reaction and 16S rDNA sequencing.

An epizootic bacterial infection in the giant freshwater prawn Macrobranchium rosenbergii occurred in Taiwan from May to June 1999. The cumulative mortality was approximately 30 to 75%. The diseased prawns showed opaque and whitish muscles and were approximately 2 mo old with total lengths from 5 to 6 cm. Histopathologically, they showed marked edema and necrotic lesions with inflammation in the muscles and hepatopancreas. Bacteria isolated using brain heart infusion medium or tryptic soy agar were Gram-positive and ovoid. Three isolates from diseased prawns at different farms were tested using the API 20 Strepsystem and conventional tests and identified as Lactococcus garvieae. Experimental infections with these isolates gave gross signs and histopathological changes similar to those seen in the naturally infected prawns. The LD50 value of isolate MR1 was 6.6 x 10(5) colony forming units/prawn. Identification of MR1 was confirmed by a PCR assay for L. garvieae that gave the expected amplicon of 1100 bp. In addition, its 16S rDNA sequence (GenBank accession number AF283499) gave 99% sequence identity to Enterococcus seriolicida (synonym L. garvieae; GenBank accession number AF061005). This is the first report of confirmed L. garvieae infection in prawn aquaculture.

Animals↗

Intestinal microflora and diversification of the rabbit antibody repertoire.

The rabbit establishes its primary Ab repertoire by somatically diversifying an initial repertoire that is limited by restricted VH gene segment usage during VDJ gene rearrangement. Somatic diversification occurs in gut-associated lymphoid tissue (GALT), and by about 1-2 mo of age nearly all Ig VDJ genes are somatically diversified. In other species that are known to establish their primary Ab repertoire by somatic diversification, such as chicken, sheep, and cattle, diversification appears to be developmentally regulated: it begins before birth and occurs independent of exogenous factors. Because somatic diversification in rabbit occurs well after birth in GALT, the diversification process may not be developmentally regulated, but may require interaction with exogenous factors derived from the gut. To test this hypothesis, we examined Ab repertoire diversification in rabbits in which the appendix was ligated shortly after birth to prevent microbial colonization and all other organized GALT was surgically removed. We found that by 12 wk of age nearly 90% of the Ig VDJ genes in PBL were undiversified, indicating that intestinal microflora are required for somatically diversifying the Ab repertoire. We also examined repertoire diversification in sterilely derived remote colony rabbits that were hand raised away from contact with conventional rabbits and thereby acquired a different gut microflora. In these remote colony rabbits, GALT was underdeveloped, and 70% of the Ig VDJ genes in PBL were undiversified. We conclude that specific, currently unidentified intestinal microflora are required for Ab repertoire diversification.

Animals↗

Surges of increased T cell reactivity to an encephalitogenic region of myelin proteolipid protein occur more often in patients with multiple sclerosis than in healthy subjects.

We have previously shown that patients with multiple sclerosis (MS) have increased T cell responses to the immunodominant region (residues 184-209) of myelin proteolipid protein (PLP). The present study investigated whether this reactivity fluctuates over time and correlates with disease activity. We performed monthly limiting dilution assays for 12-16 mo in four healthy subjects and five patients with relapsing-remitting MS to quantify the frequencies of circulating T cells proliferating in response to PLP(41-58), PLP(184-199), PLP(190-209), myelin basic protein (MBP), MBP(82-100), and tetanus toxoid. Disease activity was monitored by clinical assessment and gadolinium-enhanced magnetic resonance imaging of the brain. There were fluctuations in the frequencies of autoreactive T cells in all subjects. Compared with healthy controls, MS patients had significantly more frequent surges of T cells reactive to the 184-209 region of PLP, but infrequent surges of T cell reactivity to MBP(82-100). There was temporal clustering of the surges of T cell reactivity to MBP(82-100) and MBP, suggesting T cell activation by environmental stimuli. Some clinical relapses were preceded by surges of T cell reactivity to PLP(184-209), and in one patient there was significant correlation between the frequency of T cells reactive to PLP(184-199) and the total number of gadolinium-enhancing magnetic resonance imaging lesions. However, other relapses were not associated with surges of T cell reactivity to the Ags tested. T cells reactive to PLP(184-209) may contribute to the development of some of the CNS lesions in MS.

Adult↗

Most highly exposed seronegative men lack HIV-1-specific, IFN-gamma-secreting T cells.

Naturally acquired cellular immunity in individuals who have been exposed to HIV-1 but have remained uninfected may hold clues for the design of an effective HIV vaccine. To determine the presence and nature of such an HIV-1-specific immune response, we evaluated the quantity and fine specificity of HIV-1-reactive IFN-gamma-secreting T cells in a group of highly exposed seronegative men having sex with men. All 46 ES reported frequent unprotected anal sex with known HIV-1-infected partners at enrollment, and high risk activities continued in at least one-half of the volunteers for up to >6 years of observation. Despite the high frequency of unprotected anal intercourse and potential HIV-1 exposure, the vast majority of individuals demonstrated no or very low numbers of HIV-1-specific, IFN-gamma-secreting T cells. Even when HIV-1 epitopes were presented by peptide-pulsed autologous dendritic cells in 15 of the highest risk volunteers, HIV-1-specific T cells remained infrequent, and the proportion of responders was not significantly different from that in a lower risk seronegative control cohort. Only PBMC from two individuals who have remained uninfected to date exhibited distinctly positive responses. However, these responses rarely persisted over time, single epitope specificities were identified in only one volunteer, and HIV-1-specific memory T cell clones did not expand in vitro. HIV-1-specific, IFN-gamma-secreting T cells are thus unlikely to substantially contribute to resistance against infection in most exposed seronegative men having sex with men.

Adolescent↗

Production of soluble granulocyte colony-stimulating factor receptors from myelomonocytic cells.

It has been speculated that a soluble form of G-CSFR might be physiologically present in humans, since G-CSFR mRNA that lacks a transmembrane domain has been identified from a human myelomonocytic cell line. Here, we demonstrate human soluble G-CSFR (sG-CSFR) of two different molecular sizes (80 and 85 kDa) on an immunoblot analysis using Abs generated against the amino-terminal, extracellular domain of the full-length G-CSFR. Both isoforms of sG-CSFR were able to bind recombinant human G-CSF (rhG-CSF). RT-PCR analysis with primers targeted outside of the transmenbrane region revealed that membrane-anchored G-CSFR is expressed at all maturation stages of purified myeloid cells, including CD34+CD13+ cells (blasts), CD11b-CD15+ cells (promyelocytes or myelocytes), CD11b+CD15+ cells (metamyelocytes and mature neutrophils), and CD14+ cells (monocytes). On the other hand, sG-CSFR mRNA was detectable in CD11b-CD15+, CD11b+CD15+, and CD14+ cells, but not in the CD34+CD13+ blast population. The serum concentration of both isoforms of sG-CSFR appeared to be correlated with the numbers of neutrophils/monocytes before and after rhG-CSF treatment in normal individuals. Thus, two isoforms of sG-CSFR are physiologically secreted from relatively mature myeloid cells and might play an important role in myelopoiesis through their binding to serum G-CSF.

Amino Acid Sequence↗

The relationship of HIV-1 viral sequences detected by the polymerase chain reaction in haemophilic patients to clinical and other markers of infection.

A nested primer polymerase chain reaction (PCR) of pol gene sequences of human immunodeficiency virus-1 (HIV-1) was applied to whole blood of 31 haemophiliacs who were, or had been, positive for HIV p24 antibody (HIVAb) by enzyme linked immunosorbent assay (ELISA) and samples from 22 persistently HIVAb negative haemophiliacs who had been at risk of contracting HIV from treatment. The results were compared with those of p24 HIV antigen determination, T4 cell counts beta 2 Microglobulin (beta 2M) levels and clinical evidence of progression of HIV disease. There was no discrepancy between the PCR results and past or present seropositivity for HIVAb. The qualitative PCR was more sensitive than the p24 antigen assay but the presence of the latter was predictive of progression of infection as determined clinically and by falling T4 cell counts and rising levels of beta 2M. The results of the PCR are reassuring for HIVAb negative haemophiliacs at risk from treatment and to HIVAb negative sexual contacts of HIVAb positive persons.

Adult↗

Expansion of a unique subpopulation of cytotoxic T cells that express a C alpha V delta 1 T-cell receptor gene in a patient with severe persistent neutropenia.

CD8+ T-lymphocyte populations may be expanded in the peripheral blood of patients with chronic idiopathic neutropenia and may be involved in suppression of granulopoiesis. In this report, we have analyzed the T-cell receptor (TCR) used by the T lymphocytes of a patient with chronic severe neutropenia. Using specific oligonucleotides in the polymerase chain reaction (PCR) to amplify cDNA specific for the different families of the V alpha, V beta, and V delta TCR genes, and monoclonal antibodies (MoAbs) to examine T-lymphocyte subsets and their TCR, a persistent expansion of CD3+CD8+ T lymphocytes and a reduced repertoire of TCR V alpha and V beta genes were found in the patient's peripheral blood mononuclear cell (PBMC) preparations. A predominant portion of the T lymphocytes expressed a unique TCR structure. Thus, we found that, despite the fact that 98% of the T cells expressed alpha beta TCR on the surface membrane and less than 2% expressed tau delta TCR, nonetheless, 40% to 60% of the T cells stained positively with anti V delta 1 MoAb. Using the PCR analysis, the V delta 1 gene segment was found to be rearranged to C alpha, rather than to C delta genes. The expanded C alpha V delta 1+ cells, which are found only rarely in normal PB, expressed CD8 and were cytotoxic, and the C alpha V delta 1 receptor was functional in cytotoxicity. This constitutes the first description of an expansion of cytotoxic CD8+ lymphocytes expressing a functional "hybrid" C alpha V delta 1 gene in vivo, and suggests a pathogenic role for CD8+ C alpha V delta 1+ cells in some patients with idiopathic neutropenia.

Antibodies, Monoclonal↗

A rapid method for quantitating the frequency of peripheral blood cells containing HIV-1 DNA.

This article describes a novel approach to quantitative polymerase chain reactions (PCR). The technique is simple to execute, can be performed in a single tube, and is suitable for automation. In addition, the counting and lysis of low numbers of cells (1-100) can be confirmed by phase contrast microscopy. In this study, the technique was used to determine the frequency of occurrence of DNA from the human immunodeficiency virus (type 1) in leukocyte subsets of peripheral blood mononuclear cells (PBMC) from sero-positive individuals. It was confirmed that the frequency of infected CD4+ T cells varied from 0.01 to 0.0001. In addition, HIV-1 DNA was detected in the B cell/dendritic cell-enriched subpopulation in four of nine HIV-1-positive individuals in the study.

AIDS-Related Complex↗

Stimulatory effects of granulocyte colony-stimulating factor on colony-forming units-spleen (CFU-S) differentiation and pre-CFU-S proliferation in mice.

Granulocyte colony-stimulating factor (G-CSF) was reported to increase the number of colony-forming units-spleen (CFU-S) and multilineage colonies as well as myeloid-committed cells. We investigated the effects of G-CSF on myeloid progenitors and primitive stem cells in a mouse bone marrow transplantation (BMT) system. Lethally irradiated mice received BM cells from untreated or 5-fluorouracil-treated mice, and then were administered G-CSF or carrier buffer (control) for 5 days from immediately after BMT. A pre-CFU-S assay was performed by the repeated transplantation of BM cells from the first BMT recipients to other mice. By the method of polymerase chain reaction, most of the spleen colonies in the secondary recipients were confirmed to be derived from the first donors. G-CSF did not increase the peripheral white blood cell count significantly, but did increase the number of immature myeloid cells and granulocyte-macrophage colony-forming cells in the BM. The number of erythroid cells in the BM was initially suppressed and then increased by G-CSF treatment. In addition, the pre-CFU-S assay showed an increase in pre-CFU-S cells due to G-CSF administration. The number of spleen colonies of first BMT recipients did not increase, but a higher percentage of them were committed to a certain lineage by G-CSF treatment. These findings suggest that G-CSF has important roles in the early stages of hematopoiesis.

Animals↗

Effects of alcohol withdrawal on responses of platelets from alcoholics--a study using platelet-rich plasma from blood anticoagulated with D-phenylalanyl-L-prolyl-L-arginyl chloromethyl ketone (FPRCH2Cl).

Platelet responses stimulated by a range of concentrations of ADP or collagen were studied in platelet-rich plasma (PRP) from alcoholics 24-36 h and 6 days after cessation of drinking, and in PRP from age- and sex-matched controls. The studies were done using plasma from blood anticoagulated with the specific thrombin inhibitor D-phenylalanyl-L-prolyl-L-arginyl chloromethyl ketone (FPRCH2Cl, PPACK); the use of this compound permits the study of platelet responses in plasma at physiological concentrations of ionized calcium. Responses of platelets to ADP (primary aggregation) and collagen (aggregation, secretion of [14C]serotonin from prelabelled platelets, and thromboxane formation) were lower in alcoholics 24-36 h after withdrawal of alcohol compared with controls. This inhibition of platelet function was not due to the presence of alcohol in the blood of the alcoholics. Aggregation in response to ADP did not change during the withdrawal period studied, while collagen-induced aggregation and secretion increased significantly and collagen-induced thromboxane formation tended to increase towards control values. The reduced platelet responses observed in alcoholics and the different rates of "recovery" of different pathways of aggregation towards control values must be due to alterations either in the platelets themselves and/or in the plasma brought about by the chronic presence of ethanol, and its withdrawal.

Adult↗

Mice lacking granulocyte colony-stimulating factor have chronic neutropenia, granulocyte and macrophage progenitor cell deficiency, and impaired neutrophil mobilization.

Mice lacking granulocyte colony-stimulating factor (G-CSF) were generated by targeted disruption of the G-CSF gene in embryonal stem cells. G-CSF-deficient mice (genotype G-CSF-/-) are viable, fertile, and superficially healthy, but have a chronic neutropenia. Peripheral blood neutrophil levels were 20% to 30% of wild-type mice (genotype G-CSF+/+) and mice heterozygous for the null mutation had intermediate neutrophil levels, suggesting a gene-dosage effect. In the marrow of G-CSF-/- mice, granulopoietic precursor cells were reduced by 50% and there were reduced levels of granulocyte, macrophage, and blast progenitor cells. Despite G-CSF deficiency, mature neutrophils were still present in the blood and marrow, indicating that other factors can support neutrophil production in vivo. G-CSF-/- mice had reduced numbers of neutrophils available for rapid mobilization into the circulation by a single dose of G-CSF. G-CSF administration reversed the granulopoietic defect of G-CSF-/- mice. One day of G-CSF administration to G-CSF-/- mice elevated circulating neutrophil levels to normal, and after 4 days of G-CSF administration, G-CSF+/+ and G-CSF-/- marrows were morphologically indistinguishable. G-CSF-/- mice had a markedly impaired ability to control infection with Listeria monocytogenes, with diminished neutrophil and delayed monocyte increases in the blood and reduced infection-driven granulopoiesis. Collectively, these observations indicate that G-CSF is indispensible for maintaining the normal quantitative balance of neutrophil production during "steady-state" granulopoiesis in vivo and also implicate G-CSF in "emergency" granulopoiesis during infections.

Animals↗

In multiple myeloma, clonotypic B lymphocytes are detectable among CD19+ peripheral blood cells expressing CD38, CD56, and monotypic Ig light chain.

Multiple myeloma (MM) is characterized by a plasma cell infiltrate of the bone marrow (BM). However, late-stage monotypic B cells have been detected in the blood. This work analyzes the effects of clinical treatment on late stage CD19+ B cells present in 752 blood samples from 152 MM patients. MM patients have 2 to 8 times as many circulating CD19+ cells as do normal donors. Analysis of the Ig heavy chain (IgH) gene rearrangements using polymerase chain reaction indicates that the CD19+ population includes cells sharing the same clonotypic CDR3 region as is detected in the BM plasma cells, for patients analyzed during chemotherapy or in relapse. They are also monotypic as defined by their cytoplasmic or surface expression of Ig kappa or lambda light chain. The light chain restriction is the same as that of the BM plasma cells. Individual patients observed over 1- to 2-year periods exhibit considerable variation in the number of B cells present in blood; this number does not correlate with the concentration of serum monoclonal Ig. The monoclonal blood CD19+ cells are not eliminated by any of the chemotherapy regimens analyzed and remain at high levels during transient remissions. Patients in the progressive phase of disease or in relapse have significantly higher numbers of B cells than do patients in transient remission or untreated patients. During periods when the quantity of blood B cells approaches normal, phenotypically their quality is highly abnormal, with physical and phenotypic heterogeneity. Most B cells express CD45R0, a high density of CD38, and CD56 characteristic of late-stage B or pre-plasma cells. CD38hi blood B cells had a cyclical presence. We conclude that monoclonal B cells in the blood of myeloma patient populations include drug-resistant reservoirs of clonotypic cells that may underlie relapse.

ADP-ribosyl Cyclase↗

Transient increase in circulating donor leukocytes after allogeneic transfusions in immunocompetent recipients compatible with donor cell proliferation.

Donor leukocytes in therapeutic blood components are implicated in transfusion-related complications ranging from alloimmunization to graft-versus-host disease (GVHD) to viral transmission and reactivation. To further characterize the kinetics of donor leukocyte clearance after allogeneic transfusion, we developed allele-specific polymerase chain reaction (PCR) assays directed at a single-copy Y chromosome gene and HLA class II alleles. These assays enable sensitive detection and quantitation of donor leukocytes at concentrations ranging from one cell to greater than 1,000 cells per 125 microL of recipient blood. When applied to serial samples from five consecutive orthopedic surgery patients who met study criteria, we observed 99.9% clearance of donor leukocytes over the initial 2 days posttransfusion, followed by a transient, 1-log increase in circulating donor leukocytes on days 3 to 5. This phenomenon was reproduced in a canine transfusion model, where the transient donor leukocyte expansion phase was prevented by gamma irradiation of donor blood, and was not observed after transfusions into alloimmunized dogs. We hypothesize that this transient increase in circulating allogeneic donor cells represents one arm of an in vivo mixed lymphocyte reaction, with activated donor T lymphocytes proliferating in an abortive GVHD reaction to HLA-incompatible recipient cells. Further investigation of this phenomenon should provide insight into the mechanisms involved in donor-recipient leukocyte interactions posttransfusion and the relationship of these interactions to leukocyte-induced complications.

Animals↗