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[Nasal inverted papilloma and human papilloma virus].

In order to elucidate the relationship of human papilloma virus (HPV) infection and pathogenesis of nasal inverted papilloma (IP) and its malignant transformation, 36 cases of IP and 16 cases IP with squamous cell carcinoma (IP + SCC) were detected for HPV related sequence with Polymerase Chain Reaction (PCR) method. HPV related sequence were found in 21 of 36 (58.3%) cases of IP and in 11 of 16 (68.8%) cases of IP + SCC. The difference of positive rates of HPV in IP and IP + SCC were not significant statistically. The results suggested that HPV infection may play an important role in the pathogenesis of IP, and other factor(s) may be needed in the IP malignant transformation in addition to HPV infection.

Carcinoma, Squamous Cell↗

Rapid degradation restricts measles virus matrix protein expression in a subacute sclerosing panencephalitis cell line.

Measles virus matrix protein expression is restricted in the persistently infected brain cells of patients with the chronic neurological disease subacute sclerosing panencephalitis (SSPE). Prior studies of the nature of this restriction have identified polyadenylylated matrix gene-encoded RNA transcripts unable to direct effective translation. The defective nature of these mRNAs readily accounted for the inability to detect matrix protein in these persistently infected cells and suggested that in SSPE the restriction of matrix protein expression is achieved by preventing its synthesis. Recently, however, we reported evidence that matrix protein is synthesized in at least one example of this persistent infection, the SSPE cell line IP-3-Ca. In this case, failure of matrix protein to accumulate normally accounted for its restricted expression [Sheppard, R. D., Raine, C. S., Bornstein, M. B. & Udem, S. A. (1985) Science 228, 1219-1221]. To clarify the nature of the restriction displayed by IP-3-Ca cells, the synthesis and fate of the matrix protein of this SSPE cell line were examined in detail. No evidence of constraints on the efficiency of matrix protein mRNA transcription or translation was found. Instead, the restricted expression proved to be the result of rapid posttranslational degradation of matrix protein. We suggest that matrix protein gene mutations incurred in the course of genome replication are likely to be responsible for the diversity of observed mechanisms restricting matrix protein expression. In that event, the nature and position of the nucleotide substitution(s) would be the determinants of the level at which restricted expression is achieved.

Cell Line↗

Lysophosphatidylcholine inhibits T cell-specific CXC chemokines IP-10, MIG, and I-TAC expression induced by IFN-gamma in human endothelial cells.

Hypercholesterolemia is reported to be associated with a T helper (Th) 1 to Th2 switch in apoE-deficient mice. To explore the underlying mechanisms of such immune modulation, we investigated if lysophosphatidylcholine (Lyso-PC), enriched in oxidized LDL, affects cytokine-induced expression of Th1 cell-specific CXC chemokines, IFN-inducible protein of 10 kDa (IP-10), monokine induced by IFN-gamma (Mig), and IFN-inducible T cell a chemoattractant (1-TAC) in cultured endothelial cells. Lyso-PC inhibited IFN-gamma or IFN-gamma plus TNF-alpha-induced IP-10, Mig, and I-TAC mRNA expression but not that of the IRF-1 or IRF-1 dependent molecule, GBP. It also inhibited IP-10 protein secretion in conditioned media induced by IFN-gamma or IFN-y plus TNF-alpha Western analysis demonstrated that Lyso-PC inhibited IFN-gamma-induced STAT-1alpha protein expression, but not that of IRF-1. These results suggest that Lyso-PC selectively inhibits IP-10, Mig, and I-TAC expression through IRF-1-independent mechanisms. This inhibitory effect of Lyso-PC may be involved in the immune modulation by hypercholesterolemia.

Chemokine CXCL10↗

Different expression of CD3 and CD22 in leukemic cells according to whether tested in suspension or fixed on slides.

The expression of antigens detected by monoclonal antibodies of the CD22 and CD3 groups was studied, by immunofluorescence (IF) on cell suspension and by immunoperoxidase (IP) on cells fixed on cytospin slides, in a range of B- and T-cell malignancies. CD22 was demonstrated in the B-cell leukemias more frequently by IP than by IF; in B-lineage acute lymphoblastic leukemia (ALL) it was positive only by IP. In chronic lymphocytic leukemia and lymphoplasmacytic tumors approximately 40% of cases were CD22 positive by IP but few by IF. In other disorders of mature B cells, CD22 was positive by both methods in most cases. CD3 was demonstrated by IP in all 48 cases of T-cell leukemia and lymphoma regardless of the maturation stage (i.e., from early thymic to mature T cells). This was not the case by IF, where only 16% of T-ALL and 73% of cases with postthymic T-cell leukemias were recorded as positive. The greater reactivity of CD3 and CD22 by IP reflect the early cytoplasmic expression of the antigens in immature T and B cells, respectively, as well as the possible greater sensitivity of the IP method. These differences should be taken into account when describing results in lymphoid malignancies. CD3 was not expressed in cells from any of the B-cell leukemias, and likewise, CD22 was not demonstrated in any of the T-cell disorders, confirming that both reagents are highly specific for their respective lineages.

Antibodies, Monoclonal↗

IFN-gamma-inducible protein 10 (IP-10; CXCL10)-deficient mice reveal a role for IP-10 in effector T cell generation and trafficking.

IFN-gamma-inducible protein 10 (IP-10, CXCL10), a chemokine secreted from cells stimulated with type I and II IFNs and LPS, is a chemoattractant for activated T cells. Expression of IP-10 is seen in many Th1-type inflammatory diseases, where it is thought to play an important role in recruiting activated T cells into sites of tissue inflammation. To determine the in vivo function of IP-10, we constructed an IP-10-deficient mouse (IP-10(-/-)) by targeted gene disruption. Immunological analysis revealed that IP-10(-/-) mice had impaired T cell responses. T cell proliferation to allogeneic and antigenic stimulation and IFN-gamma secretion in response to antigenic challenge were impaired in IP-10(-/-) mice. In addition, IP-10(-/-) mice exhibited an impaired contact hypersensitivity response, characterized by decreased ear swelling and reduced inflammatory cell infiltrates. T cells recovered from draining lymph nodes also had a decreased proliferative response to Ag restimulation. Furthermore, IP-10(-/-) mice infected with a neurotropic mouse hepatitis virus had an impaired ability to control viral replication in the brain. This was associated with decreased recruitment of CD4(+) and CD8(+) lymphocytes into the brain, reduced levels of IFN-gamma and the IFN-gamma-induced chemokines monokine induced by IFN-gamma (Mig, CXCL9) and IFN-inducible T cell alpha chemoattractant (I-TAC, CXCL11) in the brain, decreased numbers of virus-specific IFN-gamma-secreting CD8(+) cells in the spleen, and reduced levels of demyelination in the CNS. Taken together, our data suggest a role for IP-10 in both effector T cell generation and trafficking in vivo.

Animals↗

Presence of HLA-DR immunopositive cells in human fetal thymus.

Several kinds of thymic cells express MHC class II antigens, including human-leukocyte-associated antigen-DR (HLA-DR) during postnatal development. The present study was focused on the detection and analysis of HLA-DR immunoreactivity in human fetal thymuses (6-7th month of gestation). Using monoclonal antibodies, indirect immunoperoxidase staining (IIP), immunogold electron microscopy (IGEM), enzyme-linked immunosorbent assay (ELISA) and flow cytometry, HLA-DR immunopositive (IP) thymic cells were found in samples studied. IIP and IGEM demonstrated the presence of HLA-DR IP stromal cells (SCs): epithelial cells (ECs), dendritic-like cells (DCs) and macrophages (MCs) as well as HLA-DR IP lymphocytes (Lys) in all thymic regions. HLA-DR immunoreactivity was more prominent in the medullary ECs (mECs) than in the cortical ECs (cECs). Strong staining of Hassall's corpuscles and the adjacent mECs was seen. The differences in the intracellular distribution of HLA-DR molecules were detailed by IGEM as a first attempt to analyse HLA-DR IP cells at ultrastructural level. ELISA data and two-colour flow cytometric analysis revealed the presence of HLA-DR IP and HLA-DR/CD3 double IP Lys in accordance with the immunocytochemical assays. The results presented enrich the information about HLA-DR IP components of the thymic microenvironment in developing human thymus and raise the question of their role during prenatal T cell differentiation and selection processes.

Antibodies, Monoclonal↗

Prostacyclin IP receptor up-regulates the early expression of C/EBPbeta and C/EBPdelta in preadipose cells.

Prostacyclin (PGI(2)) and its stable analogue carbacyclin (cPGI(2)) are known to trigger the protein kinase A pathway after binding to the cell surface IP receptor and to promote or enhance terminal differentiation of adipose precursor cells to adipose cells. The early expression of C/EBPbeta and C/EBPdelta is known to be critical for adipocyte differentiation in vitro as well as in vivo. We report herein that in Ob1771 and 3T3-F442A preadipose cells, activation of the IP receptor by specific agonists (PGI(2), cPGI(2) and BMY 45778) is sufficient to up-regulate rapidly the expression of C/EBPbeta and C/EBPdelta. Cyclic AMP-elevating agents are able to substitute for IP receptor agonists, in agreement with the coupling of IP receptor to adenylate cyclase. Consistent with the fact that PGI(2) is released from preadipose cells and behaves as a paracrine/autocrine effector of adipose cell differentiation, the present results favor a key role of prostacyclin by means of the IP receptor and its intracellular signaling pathway in eliciting the critical early expression of both transcription factors.

3T3 Cells↗

Effect of commercial peritoneal dialysis fluids on the lytic function of lymphokine-activated killer cells.

Intraperitoneal (ip) immunotherapies are often administered in saline or peritoneal dialysis solutions. In preparation for a Phase I i.p. interleukin-2/lymphokine-activated killer cell (IL-2/LAK) trial in patients with recurrent ovarian cancer, we evaluated the effect of six solutions, including two 1.5% dextrose peritoneal dialysis solutions (PDS), on the lytic function of LAK. In vitro IL-2-activated LAK cells were exposed to solutions, washed with Hanks' balanced salt solution, and lytic activity was measured in a standard 4-h chromium release assay using Daudi as a tumor target. LAK function was abrogated after 2 h of exposure to Inpersol and after only 20 min of exposure to Dianeal PD-2. Five percent dextrose also significantly decreased lytic capabilities of LAK, whereas 0.9% sodium chloride or lactated Ringers had no deleterious effect on function. Adjustment of PDS to pH greater than 6.5 decreased the damaging effect on LAK function, suggesting that the low pH of PDS and 5% dextrose results in a loss of LAK cell viability and therefore lytic function. Based on these data, we have chosen to administer IL-2/LAK i.p. in lactated Ringers.

Cytotoxicity Tests, Immunologic↗

Activation-induced apoptosis and cell surface expression of Fas (CD95) ligand are reciprocally regulated by retinoic acid receptor alpha and gamma and involve nur77 in T cells.

It has been previously shown that CD4+ T cells enter the apoptotic suicide program via the Fas ligand (FasL)/Fas-mediated pathway upon T cell receptor (TCR) stimulation. In Jurkat cells TCR stimulation regulates the de novo synthesis of FasL, while in the influenza hemagglutinin-specific CD4+ murine T cell hybridoma (IP-12-7) the cell surface appearance of a preformed FasL is initiated. Both processes are dependent on new mRNA and protein synthesis, involve up-regulation of nur77, and can be inhibited by retinoic acids (RA). Two groups of nuclear receptors for RA have been identified: retinoic acid receptors (RAR) and retinoid X receptors (RXR). In this study various synthetic retinoids were used to define which receptors regulate TCR-mediated apoptosis. It is demonstrated that the inhibition is mediated via RARalpha, while RARgamma enhances TCR-mediated apoptosis, and when both receptors are stimulated, the costimulation by RXR will promote the effect of RARalpha. Evidence is presented that these receptors affect the transcriptional activity of nur77 and consequently the expression of FasL. Our data suggest a complex interaction between the various isoforms of retinoid receptors in regulating T cell death and demonstrate that the target through which retinoids regulate TCR-mediated apoptosis is nur77.

Apoptosis↗

Histamine potentiates IP(3)-mediated Ca(2+) release via thapsigargin-sensitive Ca(2+) pumps.

We have studied the histamine-induced potentiation of inositol 1,4,5-trisphosphate (IP(3))-mediated Ca(2+) release in HeLa cells. Intracellular IP(3) levels were increased by IP(3) dialysis with the whole-cell configuration of the patch-clamp technique (cell dialysis of IP(3)). Low concentrations of extracellular histamine (1 microM) accelerated the rate of IP(3)-mediated Ca(2+) release, an effect that required the coincidence of both histamine signalling and the increase in IP(3) levels. Our data suggest that the potentiation effect of histamine cannot be explained simply by agonist-induced increase in IP(3) levels. Disordering microfilaments with cytochalasin D and microtubules with colchicine caused a decrease in the histamine-induced Ca(2+) response. Furthermore, both cytochalasin D and colchicine diminished the rate of IP(3)-mediated Ca(2+) release, while only the former reduced slightly the histamine-induced potentiation effect. Remarkably, rapid inhibition of SERCA pumps with thapsigargin to avoid the depletion of internal Ca(2+) stores diminished the histamine-induced potentiation of IP(3)-mediated Ca(2+) release, without affecting the rate of IP(3)-mediated Ca(2+) release. These data indicate that histamine-induced potentiation of Ca(2+) release in HeLa cells requires active SERCA pumps and suggest that SERCA pumps are an important factor in determining the efficiency of agonist-induced Ca(2+) release.

Actin Cytoskeleton↗

Functional properties of Drosophila inositol trisphosphate receptors.

The functional properties of the only inositol trisphosphate (IP(3)) receptor subtype expressed in Drosophila were examined in permeabilized S2 cells. The IP(3) receptors of S2 cells bound (1,4,5)IP(3) with high affinity (K(d)=8.5+/-1.1 nM), mediated positively co-operative Ca(2+) release from a thapsigargin-sensitive Ca(2+) store (EC(50)=75+/-4 nM, Hill coefficient=2.1+/-0.2), and they were recognized by an antiserum to a peptide conserved in all IP(3) receptor subtypes in the same way as mammalian IP(3) receptors. As with mammalian IP(3) receptors, (2,4,5)IP(3) (EC(50)=2.3+/-0.3 microM) and (4,5)IP(2) (EC(50) approx. 10 microM) were approx. 20- and 100-fold less potent than (1,4,5)IP(3). Adenophostin A, which is typically approx. 10-fold more potent than IP(3) at mammalian IP(3) receptors, was 46-fold more potent than IP(3) in S2 cells (EC(50)=1.67+/-0.07 nM). Responses to submaximal concentrations of IP(3) were quantal and IP(3)-evoked Ca(2+) release was biphasically regulated by cytosolic Ca(2+). Using rapid superfusion to examine the kinetics of IP(3)-evoked Ca(2+) release from S2 cells, we established that IP(3) (10 microM) maximally activated Drosophila IP(3) receptors within 400 ms. The activity of the receptors then slowly decayed (t(1/2)=2.03+/-0.07 s) to a stable state which had 47+/-1% of the activity of the maximally active state. We conclude that the single subtype of IP(3) receptor expressed in Drosophila has similar functional properties to mammalian IP(3) receptors and that analyses of IP(3) receptor function in this genetically tractable organism are therefore likely to contribute to understanding the roles of mammalian IP(3) receptors.

Adenosine↗

Paracrine regulation of distinct trophoblast functions in vitro by placental macrophages.

In view of the accumulating evidence for paracrine mechanisms regulating trophoblast function, we tested the hypothesis that placental macrophages affect trophoblast activity in a paracrine fashion. Trophoblast was isolated from 17 term placentas (-IP). One aliquot of cells was further immunopurified (+IP) using an HLA class I antibody. This increased the proportion of trophoblast (+IP >97%; -IP approximately 70%) as identified by rigorous immunocytochemistry. Most (approximately 70%) non-trophoblast cells in -IP were macrophages. The cells were cultured for 5 days with a daily medium change. In addition, +IP cells from seven placentas were cultured with lipopolysaccharide (LPS)-stimulated or -unstimulated macrophage-conditioned media. The concentrations of lactate, trophoblast-specific hormones, human chorionic gonadotropin-beta (hCG-beta) and human placental lactogen (hPL), of several prostanoids and of endothelin-1 and angiotensin II were determined in the culture media. The accumulated amounts of substances released into the culture media, corrected for the greater proportion of trophoblast in +IP cultures, were on average two- to threefold higher (hCG-beta: 18-fold) in +IP than in -IP, with the exception of endothelin-1,2 (no change), angiotensin II (-70%) and 6-keto-prostaglandin-F1alpha (-40%). [3H]leucine incorporation into the trichloroacetic acid (TCA)-precipitable pool measured on day 5 was twofold higher in +IP than in -IP. Addition of conditioned media reverted these changes. The data demonstrate that placental macrophages in culture affect trophoblast biosynthetic activity in a paracrine fashion. We conclude that macrophages are important regulators of trophoblast activity.

Cell Communication↗

Chemokines produced by mesothelial cells: huGRO-alpha, IP-10, MCP-1 and RANTES.

Recently we showed the in vivo relevance of chemokines in cases of bacterial peritonitis in continuous ambulatory peritoneal dialysis (CAPD) patients. Mesothelial cells, the most numerous cells in the peritoneal cavity, are hypothesized to function as a main source of chemokine production. We investigated the time- and dose-dependent expression patterns of four chemokines by mesothelial cells at the mRNA and protein level in response to stimulation with physiological doses of proinflammatory mediators that are present at the site of bacterial inflammation. Besides the chemokines huGRO-alpha (attractant for neutrophils), MCP-1 and RANTES (monocyte attractants), the expression and production of IP-10 was analysed. Mesothelial cells were cultured and stimulated with either IL-1beta, tumour necrosis factor-alpha (TNF-alpha) or IFN-gamma or combinations of these. The time- and dose-dependent mRNA expression of the chemokines was determined by Northern blot analysis and the protein production by ELISA. It was concluded that mesothelial cells could indeed be triggered by the mentioned stimuli to induce mRNA and protein production (huGRO-alpha and IP-10) or to augment constitutive protein production (MCP-1). However, RANTES mRNA and protein production could only be induced in some cases and only in small amounts. The chemokine response of mesothelial cells was regulated differentially, depending on the stimulus and the chemokine measured. In distinct cases, combination of the stimuli led to synergy in mRNA expression and protein production. The presented in vitro data support our hypothesis that mesothelial cells in vivo are the main source of relevant chemokines in response to proinflammatory mediators, suggesting an important role for mesothelial cells in host defence.

Cells, Cultured↗

A sensitive method for immunophenotyping stored leukemia and lymphoma cells with preservation of morphological detail.

We describe a method by which density-separated mononuclear preparations of blood and bone marrow may be stored and batch-processed for immunophenotyping by the indirect immunoperoxidase (IP) technique. The method gives excellent preservation of cellular detail thus permitting clear morphological categorization of IP-positive and IP-negative cells. We compared the immunofluorescence (IF) and IP techniques for estimation of the proportions of cells displaying a variety of antigens; with normal blood cells the results were closely similar but with chronic lymphocytic leukemia (CLL) cells, IP was superior to conventional IF. Using 910 D7, a new anti-la antibody, we were able to observe directly the presence of la-positive lymphocytes and monocytes in normal peripheral blood and la-positive granulocyte precursor cells from 2 cases of chronic granulocytic leukemia (CGL) in transformation. The method is useful for immunophenotyping of cases of lymphoproliferative disorder (LPD) and for morphological identification of specific antigen-positive cells.

Antibodies, Monoclonal↗

Exogenous but not endogenous prostanoids regulate cytokine secretion from murine bone marrow dendritic cells: EP2, DP, and IP but not EP1, EP3, and FP prostanoid receptors are involved.

Murine bone marrow-derived dendritic cells (DC), stimulated with lipopolysaccharide (LPS) and/or LPS+interferon-gamma (IFN-gamma), secrete a variety of inflammatory mediators which may modulate their functions. We have examined the potential for exogenous prostanoids, acting in a paracrine fashion, and endogenous prostanoids, acting in an autocrine fashion, to regulate secretion of tumor necrosis factor-alpha (TNF-alpha), interleukin-6 (IL-6), IL-10, and IL-12 in DC. In order to identify receptors mediating these effects, DC were treated in vitro with receptor-selective prostanoids. Agonists of cyclic AMP-elevating receptors, namely, prostaglandin E(2) (PGE(2)), butaprost (EP(2) receptor), iloprost (IP receptor), and BW245C (DP receptor), dose-dependently inhibited the release of IL-6, TNF-alpha, and IL-12 and enhanced the release of IL-10 from LPS-stimulated DC, with TNF-alpha secretion being the most strongly affected. In contrast, 15-deoxy-Delta(12,14)-PGJ(2)-an activator of nuclear peroxisome proliferator-activated receptor-gamma (PPAR-gamma) receptors-inhibited release of all tested cytokines. Exogenous prostanoids, cyclic AMP-elevating analogs, lost their ability to modulate cytokine release in cells pre-incubated for 4 h with LPS, indicating that prostanoids may affect DC functions during initial phases of LPS stimulation only. Sulprostone and (+)-fluprostenol failed to modulate any of responses tested, suggesting lack of involvement/expression of EP(1), EP(3), and FP receptors in DC activation. In order to examine the role of endogenous prostanoids, DC were treated with inhibitors of cyclooxygenases (COX). At concentrations that completely blocked PGE(2) release, neither indomethacin (nonselective inhibitor) nor rofecoxib (COX-2-selective inhibitor) influenced cytokine release from LPS-stimulated DC. Thus, cytokine release from LPS-stimulated DC does not seem to be autoregulated by endogenous prostanoids, whereas in vivo regulatory function may be fulfilled in a paracrine manner by PGD(2), PGE(2), and PGI(2) released from neighboring cells.

Animals↗

Expression of IP-10, a lipopolysaccharide- and interferon-gamma-inducible protein, in murine mesangial cells in culture.

IP-10 is an early gene induced in multiple cell types by a variety of proinflammatory agents, notably interferons (IFNs) and lipopolysaccharide (LPS). To determine whether this protein might play a role in amplifying immune-mediated glomerular injury, we cultured mouse mesangial cells with several stimuli for various times. Increasing amounts of IFN-gamma (to 100 units/ml) elicited increasing levels of IP-10 messenger RNA (mRNA), sustained to 24 hours, but had no effect on tumor necrosis factor-alpha (TNF-alpha) mRNA. LPS induced transient IP-10 mRNA expression that peaked at 8 hours; TNF-alpha mRNA was also increased. TNF-alpha at doses up to 10 ng/ml and soluble immune complexes up to 150 micrograms/ml antibody evoked 3- to 5-fold increases in IP-10 mRNA expression, much less than the 30- to 70-fold increases seen with IFN-gamma and LPS. We conclude that IFN-gamma, LPS, and other agonists can amplify glomerular immune injury, perhaps via elevated expression of IP-10.

Animals↗

Homing and progression patterns of childhood acute lymphoblastic leukemias in severe combined immunodeficiency mice.

The aim of this study was to analyze the homing and progression patterns of childhood acute lymphoblastic leukemias (ALL) in mice with severe combined immunodeficiency (SCID). Upon intraperitoneal (IP) transfer, cells from relapse samples of three children with T-lineage ALL spread hematogenously and infiltrated the non-lymphoid and/or lymphoid organs with a pattern reminiscent of the human clinical disease. These mice either died or were killed in extremis at a mean of 9 weeks. Moreover, cell lines established in vitro from two of these samples manifested identical homing and progression in the SCID mouse as compared with the original patients' cells. Thus, long-term culture of the primary leukemic T cells did not alter their invasive potential and migration pattern. When engrafted IP, three cell lines established from pre-B-ALL cases displayed primarily a lymphatic spread with induction of local tumor masses and kidney/liver nodules. Mice were killed at 11 to 13 weeks, but had not developed imminently fatal leukemia. However, when transferred intravenously, one pre-B ALL cell line was able to spread hematogenously and to infiltrate both lymphoid and non-lymphoid tissues. Overall, these data demonstrate that the SCID mouse provides an efficient and reproducible model to study the pathogenesis of childhood ALL, and may be a suitable system for evaluating therapy.

Animals↗

Potentiation of invasive capacity of rat ascites hepatoma cells by transforming growth factor-beta.

The in vitro invasive capacity of poorly invasive cells (W1), which were cloned from rat ascites hepatoma cells (AH 130), was potentiated dose- and time-dependently by pretreating the cells with transforming growth factor-beta (TGF-beta). This potentiation of invasive capacity was completely abolished by anti-TGF-beta antibody. When the treated cells were ip inoculated into rats, the cells extensively invaded the peritoneum, and formed penetrating tumor nodules. The effect of TGF-beta was reversed by subculturing the treated cells without TGF-beta. The potentiation of invasive capacity by TGF-beta might participate in platelet-associated enhancement of tumor cell metastasis.

Animals↗