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Biomedical subjects

A Novogrodsky

Publications and source records attributed to A Novogrodsky.

At least 37 records · Page 2Linked to original sources

Haemin enhancement of glucose transport in human lymphocytes: stimulation of protein tyrosine phosphatase and activation of p56lck tyrosine kinase.

Following our previous observation that haemin is mitogenic for human lymphocytes, we investigated the ability of haemin to enhance glucose uptake in these cells. We found that preincubation of human peripheral-blood mononuclear cells (PBMC) with haemin for 60 min increased up to 5-fold the rate of 2-deoxy-D-[1-3H]glucose uptake by the cells. Actinomycin D and cycloheximide did not inhibit the effect, and cytochalasin B completely blocked it. Among the metalloporphyrins tested (Fe-, Ni-, Co-, Zn- and Sn-protoporphyrin), only haemin (Fe-protoporphyrin) induced a marked increase in glucose uptake. Thiourea, a scavenger of oxygen free radicals, and 3-amino-1,2,4-triazole inhibited haemin-induced glucose uptake. Oxidants such as H2O2 and phenylarsine oxide were previously reported to stimulate protein tyrosine phosphorylation and to enhance glucose uptake. We found that incubation of PBMC with haemin resulted in an increase in protein tyrosine phosphatase (PTPase) activity, probably that identified as CD45. Similarly to haemin, we found that phytohaemagglutinin also enhanced PTPase activity. Haemin also activated the tyrosine kinase p56lck, which is negatively controlled by phosphorylation of Tyr-505 at the C-terminus, and increased protein tyrosine phosphorylation in these cells. Tyrphostins, specific inhibitors of tyrosine kinases, at low concentrations markedly enhanced glucose uptake and synergized with haemin in enhancing glucose uptake. At high doses, tyrphostins inhibited the effect of haemin. Taken together, we postulate that haemin enhancement of glucose uptake in human lymphocytes results from its stimulation of PTPase, followed by activation of tyrosine kinase p56lck, leading to an increase in protein tyrosine phosphorylation.

Animals↗

Activation of human peripheral blood mononuclear cells by nitric oxide-generating compounds.

Recent work in this laboratory has identified immune-stimulatory properties of the oxidant hemin. In this study, we examined whether the nitrogen-based oxidant nitric oxide (NO) had inductive effects on human lymphocytes. We found that the NO-generating compounds sodium nitroprusside and S-nitroso-N-acetylpenicillamine rapidly enhanced the rate of glucose transport in resting human PBMC. In addition, NF-kappa B binding activity was induced by these agents as was the secretion of TNF-alpha. The data suggest that a cGMP-independent mechanism is involved as the cell permeant cGMP analogue, 8-Br-cGMP, had no effect in eliciting these inductive events. Activation of lymphocytes by these NO-generating compounds may be mediated through the protein tyrosine phosphorylation signal transduction pathway. We found that membrane-associated protein tyrosine phosphatase activity was enhanced in PBMC treated with sodium nitroprusside or S-nitroso-N-acetylpenicillamine and that the src family protein tyrosine kinase p56lck was activated in these cells. Inasmuch as p56lck activity is negatively controlled by tyrosine phosphorylation, its activation may be related to the enhancement of protein tyrosine phosphatase activity. 8-Br-cGMP had no effect on these enzymes. Taken together, these data suggest that NO may have immune-stimulatory properties and may signal through a hitherto undescribed cGMP-independent pathway.

8-Bromo Cyclic Adenosine Monophosphate↗

Hemin-induced cap formation in lymphocytes: inhibition by protein tyrosine kinase inhibitors.

Hemin, an oxidant which is mitogenic for lymphocytes, was found to induce cap formation for Con A sites in murine and human lymphocytes and for IgG and Thy 1.2 sites in murine lymphocytes. Doses of hemin which induced capping also induced a redistribution of actin to a detergent-insoluble form. Similar to hemin, we found that heat shock also induced capping of Con A and IgG sites in murine splenocytes, as well as actin redistribution in human peripheral blood mononuclear cells. Specific inhibitors of protein tyrosine kinases, termed tyrphostins, were found to inhibit hemin-induced cap formation. In addition, ligand-dependent cap formation was also inhibited by tyrphostins. Hemin-induced cap formation may result from alteration in cytoskeletal structure and distribution. In addition, changes in membrane lipid composition induced by phospholipase C-gamma 1, known to be activated by protein tyrosine phosphorylation, may initiate actin polymerization and membrane-site redistribution.

Actins↗

Immune stimulatory and anti-tumour properties of haemin.

IL-2 induces tumour regression in some patients with metastatic disease, but the dose of IL-2 is limited by severe toxicity. Agents that increase the expression of IL-2 receptors in the effector cells could be used to improve the effectiveness of IL-2 in mediating its anti-tumour effect. We have reported that haemin increased the expression of IL-2 receptors in human peripheral blood mononuclear cells (PBMC) and synergized with IL-2 in the induction of mitogenicity, cytotoxicity and cytokine production. We now report on haemin-induced immune stimulation and tumour regression in mice. Haemin-induced mitogenicity in mouse splenocytes was potentiated up to two-fold by IL-2. The combination of haemin and IL-2 was also effective in inducing cytotoxicity for natural killer (NK)-resistant target cells. Maximal induction of cytotoxicity was attained at an optimal concentration of haemin of 10 microM. Higher concentrations were less effective. Splenocytes isolated from mice that had been treated in vivo with haemin and IL-2 incorporated twice the amount of 3H-thymidine compared with splenocytes from mice treated with either haemin or IL-2 alone. Cytotoxicity of splenocytes for NK-resistant target cells was not increased following in vivo administration of haemin and IL-2 when fresh splenocytes were tested. Cytotoxicity was enhanced, however, up to five-fold following 48 h in vitro incubation with IL-2. Administration of haemin and IL-2 resulted in a significant decrease (40%) of established hepatic metastases in mice. Either IL-2 or haemin alone at the dose used were ineffective. The anti-tumour effect of haemin and IL-2 was enhanced (63% decrease in metastases) by administration of the thiol compound, N-acetylcysteine. Since haemin can safely be administered to patients, it may represent a new class of biologic response modifiers that could enhance IL-2-mediated anti-tumour effects.

Acetylcysteine↗

Selective impairment of CD43-mediated T cell activation in the Wiskott-Aldrich syndrome.

The Wiskott-Aldrich syndrome (WAS) is associated with defective glycosylation and altered membrane expression of the leukocyte sialoglycoprotein CD43. To investigate whether such modifications of CD43 are relevant to T cell dysfunction in WAS, we have analyzed peripheral blood mononuclear cells from WAS patients for proliferative responses to both CD43-interacting and other T cell mitogenic stimuli. While patient lymphocytes proliferated in response to phytohaemagglutinin, concanavalin A, interleukin-2 and neuraminidase/galactose oxidase, no responses were elicited upon attempted triggering of the CD43 signalling pathway using periodate or anti-CD43 antibody. Cells from four of five patients with clinical profiles resembling, but not identical, to that of classic WAS also failed to respond to periodate or anti-CD43 antibody stimulation. These results indicate that the aberrant expression of CD43 on WAS lymphocytes is associated with selective impairment of CD43-induced T cell proliferation and that detection of this defect may be useful in the diagnosis of WAS and its variant forms.

Adolescent↗

Agonistic effects of tyrphostins on human peripheral mononuclear cells.

Tyrosine kinases of the src family, p56lck and p59fyn, were implicated in the transduction of signals via the T-cell receptor complex. These kinases are negatively regulated by phosphorylation of a carboxyl-terminal tyrosine residue. Tyrphostins are synthetic low molecular weight compounds that selectively inhibit different protein tyrosine kinases. We report here on the agonistic and antagonistic effects of tyrphostins on human peripheral blood mononuclear cells (PBM). At low concentration, the tyrphostins enhanced glucose uptake and maximal stimulation was attained at a concentration characteristic for each of the tyrphostins used. Higher concentrations were less effective. The tyrphostins AG126 and AG183 were also found to enhance IL-2-induced cytotoxicity in human PBM in a biphasic manner. In contrast, the tyrphostin AG17 markedly inhibited IL-2-induced cytotoxicity at low AG17 concentration and no stimulation was observed. The tyrphostins tested had selective effects on [3H]thymidine incorporation induced by the mixed lymphocyte culture and different agents. The most potent inhibitor was AG17. Tyrphostins also affect cytokine secretion by human PBM. AG126 and AG183 enhanced TNF-alpha secretion and this effect was more prominent in the presence of IL-2. AG126 enhanced IFN-gamma, IL-1, and IL-6 production in PBM that were costimulated with the stress stimuli heat shock and phenylarsine oxide. The stimulatory effects of the tyrphostins on cytokine secretion and induction of cytotoxicity might be interrelated. The agonistic and antagonistic effects of tyrphostins on lymphocyte functions may have therapeutic potential.

Benzylidene Compounds↗

Hemin stimulation of cAMP production in human lymphocytes.

Hemin stimulates cAMP production in human peripheral blood mononuclear cells (PBMC). The kinetics are similar to that of hormone-induced cAMP generation, namely a rapid effect followed by a desensitization phase. Several experimental findings suggest that prostaglandins do not mediate this effect. First, macrophage depleted T and B cells purified by erythrocyte-rosetting were as responsive as unfractionated PBMC to hemin. Second, indomethacin, an inhibitor of prostaglandin synthesis, and meclofenamate, a prostaglandin E2 receptor antagonist, had no effect on hemin stimulated cAMP production. In addition, propranolol, a beta-adrenergic receptor antagonist, had no effect on hemin-stimulated cAMP production. We also examined structural analogues of hemin. Among the metalloporphyrins (Fe, Ni, Co, Zn and Sn) and protoporphyrin IX tested only hemin (Fe-protoporphyrin) was active in stimulating cAMP production. No correlation was found between the ability of metalloporphyrins to stimulate cAMP production and their ability to generate H2O2. The data indicate that hemin stimulates cAMP production by directly affecting lymphocytes and that prostaglandins do not mediate this effect.

Animals↗

Stimulatory and inhibitory effects of 1,25-dihydroxyvitamin D3 on thymocyte mitogenesis induced by phorbol ester and calcium ionophore.

UNLABELLED: Mouse medullary thymocytes have specific receptors for 1,25-dihydroxyvitamin D3 (1,25(OH)2D3). The mitogenic stimulation of these cells by phytohemagglutinin in the presence or absence of the phorbol ester TPA is inhibited by 1,25(OH)2D3. The calcium ionophore A23187 did not reverse the inhibition by 1,25(OH)2D3 of phytohemagglutinin. Stimulation of thymocytes with either TPA or A23187 alone did not result in proliferation. Co-stimulation of the thymocytes with TPA and A23187 induces cell proliferation. 1,25(OH)2D3 markedly enhanced the TPA and A23187-induced cell proliferation even when added 4 h after the initiation of the culture. In contrast, DNA synthesis by thymocytes incubated for 4 h in the presence of TPA and A23187 and then cultured in medium containing 1,25(OH)2D3 but in the absence of both TPA and A23187, was inhibited by 1,25(OH)2D3. The extent of inhibition was comparable to the inhibition of lectin-induced stimulation by the hormone. Using monoclonal antibodies to neutralize IL-2 and block IL-2 receptors we showed that 1,25(OH)2D3 enhanced the IL-2-independent component of the A23187- and TPA-induced mitogenesis. IN CONCLUSION: (1) The nature and presence of the mitogenic signal determines whether 1,25(OH)2D3 enhances or inhibits thymocyte stimulation. (2) Both stimulatory and inhibitory actions of 1,25(OH)2D3 seem to take place at points distal to the initial increase in intracellular calcium or activation of protein kinase C.

Calcimycin↗

[Immunotherapy for metastatic renal cell carcinoma: treatment with PLAK cells and low-dose interleukin-2].

During the past 5 years publications from the NIH (Rosenberg et al.) and other centers have reported encouraging results in the treatment of metastatic renal cell carcinoma. Adoptive immunotherapy was applied, using lymphocytes activated by interleukin-2 (LAK cells) plus high doses of interleukin (IL-2) systemically. The mean clinical response rate was 20-35%. Severe lifethreatening adverse reactions to high doses of IL-2 were noted, although they were all of short duration. Laboratory findings of Novogrodsky et al. from Beilinson Medical Center, Israel showed that oxidizing mitogens can induce lymphocyte activation (PLAK cells). Further studies suggested that a combination of such activated cells with low doses of IL-2 could produce effective toxicity to tumor cells without the need for high doses of IL-2 which could be very toxic for the patient. In the past year we treated 7 patients with PLAK cells and IL-2. 4 completed the treatment, of whom 1 responded partially (regression of more than 50% of lung metastases), 1 is stable and in 1 liver metastases regressed but metastases in lumbar vertebrae and in the pelvis progressed. 1 patient died a month after discharge from hospital, probably due to rapid progression of the disease. Our protocol follows that of the Phase II clinical study of 40 patients treated at the Rogosin Institute, New York Hospital--Cornell Medical Center. The mean clinical response rate was 23.6%. Toxicity of IL-2 is dose-dependent. In this protocol, the low doses of IL-2 gave significantly fewer adverse reactions.

Adult↗

Stress stimuli-induced lymphocyte activation.

Oxidants, heavy metals, and heat shock, collectively known as stress stimuli, induce the synthesis of a variety of proteins, termed stress proteins, and enhance glucose uptake. In this study, we have demonstrated that stress stimuli enhance protein tyrosine phosphorylation (PTyr-P), modulate protein tyrosine phosphatase (PTPase) activity, activate the src family protein tyrosine kinase (PTK), p56lck, and enhance glucose uptake in human peripheral blood mononuclear cells. The heavy metal Hg2+ and heat shock stimulated PTPase activity at an optimal dose, whereas the oxidant phenylarsine oxide (PAO) was only marginally stimulatory. Treatment of lymphocytes with stress stimuli at a dose which activated PTPase did not produce discernable PTyr-P using Western blotting techniques. PTyr-P was only seen at doses of stress stimuli which were associated with an inhibition of PTPase activity. We could demonstrate a correlation between the dose of stress stimuli effective in increasing PTPase activity and p56lck activation using heat shock and Hg2+ as stress stimuli. On the other hand, much lower concentrations of PAO were effective in activating PTPase than those effective in eliciting p56lck activation. We could not demonstrate a correlation between an effective dose inducing PTyr-P and glucose uptake. Our data do not permit us to draw a simple correlation between enhancement of PTPase activity, activation of p56lck, induction of PTyr-P, and induction of the biological response. It is possible that both stimulation and inhibition of PTPase could regulate PTyr-P by either activating the src family PTKs or preventing dephosphorylation of target proteins which are involved in the biological response. Our data may also provide the biochemical basis for the previously reported mitogenic effects of Hg2+ on lymphocytes.

Cells, Cultured↗

A cell line with unusual characteristics from an ovarian carcinoma patient: modulation of sensitivity to antitumour drugs.

A cell line (GZL-8) was established by cloning from ascitic fluid of an untreated ovarian carcinoma patient. The cells grew rapidly, accumulated lipids and showed chromosomal alterations. One of the marker chromosomes showed characteristics of a Y-like chromosome. This unusual finding was confirmed by DNA hybridisation using specific probes to the Y chromosome. The cells stained with fluorescent antibodies to desmoplakin and cytokeratins 8, 18, 19, and weakly with vimentin but not with desmin. The presence of epithelial membrane antigen, human milk fat globulin, alpha-lactalbumin, alpha-fetoprotein, placental alkaline phosphatase and oestrogen receptor-related antigen was demonstrated by indirect immunoperoxidase staining, but no CA-125 antigen could be detected. The cells showed positive reaction with antibodies to P-glycoprotein. The function of the P-glycoprotein transport system was demonstrated by the rhodamine-123 release test. The cells were initially responsive to doxorubicin, and to high concentrations of cisplatin. Growth inhibition by doxorubicin, especially at low doses was enhanced by the addition of verapamil or tamoxifen. This was shown by the soft agar clonogenic assay, by direct cell counting and by the MTT reducing test. Our results show that combination between drug and sensitivity modulators may be of potential clinical value in ovarian cancer.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Novobiocin-induced anti-proliferative and differentiating effects in melanoma B16.

The antibiotic drug novobiocin was evaluated for its anti-tumour properties in B16 melanoma cells. Novobiocin is shown to inhibit melanoma B16 cell proliferation. The anti-proliferative effect was gradually reversible upon removal of novobiocin from the culture medium. Growth inhibition by novobiocin was accompanied by phenotypic alterations, that included morphological changes, lipid accumulation and marked increases in the activities of NADPH cytochrome c reductase and gamma glutamyl transpeptidase. In vivo administration of repeated i.p. doses of novobiocin, to mice implanted with B16 melanoma cells resulted in growth retardation. The combined treatment of the B16 melanoma cells with novobiocin and other chemical inducers of differentiation was examined in a cell growth assay. Novobiocin and sodium butyrate inhibited cell growth in a near additive manner, while combination of novobiocin with the GTP-depleting agents, tiazofurin or mycophenolic acid resulted in a synergistic decrease in cell growth. Our results support the contention further that novobiocin and other differentiating agents might be of potential value in melanoma therapy.

Animals↗

Ferro-mitogens: iron-containing compounds with lymphocyte-stimulatory properties.

Ferric ammonium citrate (FAC) is nonmitogenic for human peripheral blood mononuclear cells (PBM) but has a potent mitogenic activity in the presence of IL-2. FAC in the presence of IL-2 increases the number of human peripheral blood mononuclear cells (PBM) expressing receptors for IL-2 and transferrin. FAC also markedly stimulates human PBM treated with supraoptimal, nonmitogenic concentrations of Con A. FAC, in the presence of IL-2, is a T-cell mitogen with a stringent requirement for macrophages. FAC stimulates the production of TNF-alpha and IFN-gamma in human PBM, and this effect is potentiated by IL-2. Thiourea and 3-amino-1,2,4-triazole selectively inhibit mitogenesis induced by FAC, indicating that oxygen radicals or peroxidase may mediate the triggering signal induced by this mitogen. In addition to hemin, as we have previously reported, and FAC, a variety of iron-containing proteins have lymphocyte stimulatory properties in combination with IL-2. They include horseradish peroxidase, cytochrome c, myoglobin, and transferrin. We have given the name ferro-mitogens to this group of compounds.

Antigens, Surface↗

Dimethylthiourea inhibition of B16 melanoma growth and induction of phenotypic alterations; relationship to ATP levels.

1,3 Dimethylthiourea (DMTU) has previously been shown by us to inhibit the growth of melanoma cells and to induce phenotypic alterations in these cells, including ultrastructural alterations of mitochondria. These findings raised the possibility that impaired mitochondrial function might be involved in mediating the effect of DMTU on cell growth and phenotypic expression. The present study indicates that DMTU as well as another growth inhibitory methylurea derivative, tetramethylurea (TMU) significantly decrease ATP content in the B16 melanoma cell line. 1,3 Dimethylurea (1,3DMU) and 1,1 dimethylurea (1,1DMU) which are poor growth inhibitors, do not reduce ATP content significantly. Altered energy metabolism in the DMTU-treated cells is reflected by inhibition of the activity of cytochrome c oxidase and by increased lactate levels. A cell line selected for resistance to growth inhibition by DMTU was shown to be completely resistant to induction of phenotypic alterations by DMTU. These cells possess high lactate levels, high ATP content and a somewhat decreased Na/K ATPase activity as compared to wild type B16 F10 cells. 1,3 DMTU treatment of the resistant cells leads to a decrease in the activity of the mitochondrial enzyme cytochrome c oxidase, similar to its effect on the wild type B16 F10 cells. DMTU also reduces ATP content moderately in the resistant cells. However, the levels of ATP do not decrease beyond those found in untreated B16 F10 wild type cells. Taken together the results suggest that decreased ATP content might be involved, at least partially, in mediating the effects of DMTU on B16 melanoma cell growth and phenotypic expression.

Adenosine Triphosphate↗

Anti-proliferative effects and phenotypic alterations induced by 8-hydroxyquinoline in melanoma cell lines.

The effect of the transition metal chelator, 8-hydroxyquinoline (8-HQ), was examined on the growth and phenotype expression of B16 mouse melanoma cells. Micromolar concentrations of 8-HQ inhibited the growth of B16 cells as well as human melanoma cell lines. Removal of 8-HQ from the culture medium restored normal cell growth. Growth inhibition by 8-HQ was accompanied by phenotypic alterations that included changes in cell morphology, increased production of melanin and enhanced activities of the enzymes gamma-glutamyl transpeptidase and NADPH cytochrome c reductase. These changes might be associated with a better differentiated phenotype.

Animals↗

1,25-Dihydroxyvitamin D3 potentiates the decreased response of lymphocytes from atopic subjects to agents that increase intracellular cyclic adenosine monophosphate.

The inhibitory effect of prostaglandin E2, histamine, isobutylmethylxanthine, and 1,25-dihydroxyvitamin D3 (1,25-[OH]2D3) on the mitogenic stimulation of peripheral blood lymphocytes from normal and atopic subjects was studied. We found that lymphocytes from atopic patients were less susceptible to inhibition by the three agents that elevate intracellular cyclic adenosine monophosphate (cAMP) concentrations and by the active metabolite of vitamin D (inhibition of 27%, 14%, 12%, and 36% for the atopic patients as compared with 40%, 20%, 22%, and 46% for the normal donors, by the four agents, respectively; p less than 0.02). The inhibitory effect of the cAMP-elevating agents was potentiated by the addition of 1,25-(OH)2D3 to the lymphocyte cultures. The potentiation was more pronounced on lymphocytes from the atopic donors, increasing their responsiveness to levels comparable to levels of lymphocytes from normal donors. The synthetic corticosteroid, dexamethasone, had a similar potentiating effect on the inhibitory action of prostaglandin E2. In view of the beneficial action of beta-agonists, phosphodiesterase inhibitors, and corticosteroids in the treatment of allergy, the potentiating effect of 1,25-(OH)2D3 on the action of cAMP-elevating agents may be of therapeutic interest.

1-Methyl-3-isobutylxanthine↗

1,25-dihydroxyvitamin D3 and agents that increase intracellular adenosine 3',5'-monophosphate synergistically inhibit the mitogenic stimulation of human lymphocytes.

1,25-Dihydroxyvitamin D3 [1,25-(OH)2D3], like the immune response modulators prostaglandin E2 (PGE2) and histamine, inhibits mitogen-induced proliferation of human peripheral blood mononuclear cells. 1,25-(OH)2D3 acts synergistically with PGE2 and histamine to inhibit lymphocyte mitogenesis. This is apparent at a wide concentration range of 1,25-(OH)2D3 (3 X 10(-11)-10(-8) mol/L). Cholera toxin, forskolin, and isobutylmethylxanthine, which like PGE2 and histamine increase intracellular concentrations of cAMP, also act synergistically with 1,25-(OH)2D3 in this system. Culture of mitogen-stimulated adherent cell-depleted mononuclear cells with PGE2 increases the number of high affinity binding sites for 1,25-(OH)2D3. This finding may account for the synergistic interaction between the two agents.

1-Methyl-3-isobutylxanthine↗

Immune stimulatory properties of metalloporphyrins.

A possible approach to the immunotherapy of tumors is to stimulate either specific or nonspecific immune responses in vivo. We recently found that provision of a mitogenic signal to PBMC, by incubation with the oxidizing mitogens, enhanced the effect of IL-2 in generating cytolytic activity. We therefore searched for a mitogen that might safely be administered to patients. The present study is an investigation of the mitogenic properties of iron and tin (Sn)-protoporphyrin and their capacity to induce cytotoxicity in human PBMC. These agents have been administered to humans with little toxicity. Both iron- (hemin) and Sn-protoporphyrin induce mitogenicity in peripheral T cells. This effect is markedly enhanced by low concentrations of IL-2. Hemin and Sn-protoporphyrin, in combination with IL-2, increase IL-2R on PBMC. Hemin alone, and to a greater extent in combination with IL-2, induces cytotoxicity for NK-sensitive and NK-resistant cell lines. Sn-protoporphyrin, a more potent mitogen than hemin, fails to induce cytotoxicity, and has a marked inhibitory effect on cytotoxicity induced by IL-2. Hemin and Sn-protoporphyrin stimulate TNF-alpha and IFN-gamma production by PBMC. IL-2 is synergistic with the metalloporphyrins in eliciting this effect. Metalloporphyrin-induced mitogenesis has a stringent requirement for macrophages. Scavengers of oxygen-free radicals and inhibitors of peroxidase inhibit mitogenicity induced by hemin but not that induced by Sn-protoporphyrin. Hence, an oxidative event may mediate the mitogenic effect of hemin. Our results indicate that hemin is an immunostimulatory agent in vitro and the data warrant further evaluation of its in vivo immunostimulatory and antitumor effect.

Adjuvants, Immunologic↗