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Biomedical subjects

F Dammacco

Publications and source records attributed to F Dammacco.

At least 19 recordsLinked to original sources

Hepatitis C virus within a malignant lymphoma lesion in the course of type II mixed cryoglobulinemia.

Hepatitis C virus (HCV) has been implicated as the major etiologic factor sustaining B-cell clonal expansion in type II mixed cryoglobulinemia (MC). A putative pathogenetic role of HCV in the development of MC-associated B-cell malignancies has also been speculated. We report for the first time the localization of HCV within a parotid non-Hodgkin's lymphoma (NHL) lesion in the course of HCV-related type II essential MC, an important step to implicate any infectious agent in the lymphomagenesis. Plus and minus strand HCV RNA was first demonstrated by polymerase chain reaction on the whole RNA from the lesion. Further immunohistochemical studies localized HCV c22 proteins in the residual ductal or acinar parotid structures, which also abnormally expressed HLA-DR antigens. Weak c22 signals were inconstantly detected in cells strictly confined around the residual epithelium, while all the remaining infiltrating cells in the parotid lesion stained c-22-negative. Staining for c33 and c100 HCV antigens was negative. In situ hybridization (ISH) studies again identified the residual parotid epithelial cells as the site of HCV infection and replication in the NHL lesion. Sialotropic viruses previously involved in lymphoproliferation, ie, Epstein-Barr virus and human herpesvirus-6, were absent in the same tissue lesion. According to the current models of B-cell lymphomagenesis, a role of HCV as an exogenous antigenic stimulus should be considered for NHL development in the present case, whereas malignant B cells do not appear permissive of active HCV replication. Further efforts would be worthwhile to clarify a role of HCV infection in the development of some B-cell malignancies.

Aged

Bone marrow of patients with active multiple myeloma: angiogenesis and plasma cell adhesion molecules LFA-1, VLA-4, LAM-1, and CD44.

Bone marrow plasma cells and stromal cells in multiple myeloma (MM) have been shown to be capable of releasing cytokines with angiogenic properties. Plasma cells can also express adhesion molecules controlling their adhesive interactions with endothelial cells. In the present study, we have evaluated by immunohistochemistry the extent of angiogenesis in the bone marrow of: a) 51 patients with active and non-active MM; b) 25 patients with monoclonal gammopathy of undetermined significance (MGUS). Plasma cells were investigated by flow cytometry for the expression of the adhesion molecules LFA-1, VLA-4, LAM-1, and CD44. The results showed that, while angiogenesis was very low or absent in patients with MGUS and non-active MM, it increased markedly in those with active MM. The highest detectability of plasma cell adhesion molecules, except LAM-1, was also found in these patients. The functional significance of these findings is unknown. Their consistent occurrence in the bone marrow of active myeloma patients, however, strongly suggests that more frequent adhesive interactions between plasma cells and their microvasculature underlie tumor dissemination.

Bone Marrow

Autoreactivity in HIV-1 infection: the role of molecular mimicry.

Autoimmunity during HIV-1 infection may contribute to the immunopathogenesis of AIDS. Titers of autoantibodies to HLA molecules and other surface markers of CD4+ T cells appear to increase with the progression of disease and may correlate with lymphopenia. Other autoantibodies are directed at a number of regulatory molecules of the immune system. Genesis of autoreactivity may be related to structural homologies of HIV-1 env-products to such functional molecules involved in the control of self-tolerance. The most impressive similarities include the HLA-DR4 and DR2, the variable regions of TCR alpha-, beta-, and gamma-chain, the Fas protein, and several functional domains of IgG and IgA. Thus, HIV-1 infection may induce dysregulation leading to autoimmune response, through a number of molecular mimicry mechanisms. Pathogenicity of antibodies to T cells could also include the activation of membrane-to-nucleus signal transducers resulting in increased apoptosis. The evolution of autoimmune mechanisms during HIV-1 infection cannot exclude, however, progression to immunoproliferative malignancy, since aspects of oligoclonal immune response to HIV-1 components may occur in several autoimmune diseases which in some instances evolve to lymphoma.

Amino Acid Sequence

Long-term therapy with recombinant human erythropoietin (rHu-EPO) in progressing multiple myeloma.

Recombinant human erythropoietin (rHu-EPO) is an effective growth factor for erythroid progenitor cells in anemia provoked by several conditions, including bone marrow tumors such as multiple myeloma (MM). We studied a group of 54 patients with MM undergoing second-induction chemotherapy. Thirty of them were randomly assigned to receive rHu-EPO at an initial dosage of 150 units/kg body weight three times a week, increased to 300 units/kg from the sixth week to the end of the 24-week study. Hemoglobin (Hb) levels increased in 77.7% of these patients by the eighth week. In addition, five transfusion-dependent patients in treatment with the VMCP protocol completed the trial without requiring blood supplement after the third month, whereas seven control patients required frequent supplements. Monthly assessment of hematologic parameters demonstrated the ability of rHu-EPO to increase reticulocyte counts, whereas five patients became resistant to the second-induction chemotherapy in apparent concurrence with their rHu-EPO therapy. The response to rHu-EPO in four of the five MM patients receiving cytotoxic protocols combined with alpha-interferon (alpha-IFN) included an increase of serum IgM after the third month. This effect was not demonstrable in any other group, including three rHu-EPO-untreated patients undergoing alpha-IFN + VMCP combined therapy, as well as rHu-EPO-treated patients not receiving alpha-IFN. Our data suggest that alpha-IFN plus rHu-EPO treatment in MM patients is effective in restoring normal B cell function. These results may reflect in vivo the modulation of normal human B cells and lymphoblasts by rHu-EPO observed in vitro.

Anemia

Immunomodulation of T and B cell functions in multiple myeloma patients treated with combined erythropoietin and alpha-interferon therapy.

T and B lymphocyte functions were investigated in the course of a long-term trial of recombinant human erythropoietin in patients with progressing multiple myeloma. Peripheral mononuclear cell as well as T and B lymphocyte cultures were established at the 1st, 13th, and last week of the 24-week protocol from 16 treated and 15 untreated patients. Control cultures from healthy individuals were also obtained. A suppression of phytohemagglutinin-induced proliferation of T cells was noted in all 1st-week cultures, whereas a variable increase of 3H-thymidine uptake was noted at the end of the trial in the cultures from erythropoietin-treated patients. A significant increase was observed, however, in cultures from 5 erythropoietin-treated patients who also received alpha-interferon when their cells were grown in the presence of the hormone. In contrast, the pokeweed mitogen-driven in vitro synthesis of immunoglobulins was not significantly influenced by the duration of erythropoietin treatment, nor by addition of the hormone. IgG secretion by Epstein-Barr virus-transformed B cells in cultures from 9 erythropoietin-treated and 6 untreated patients was enhanced in the presence of both recombinant human erythropoietin and alpha-interferon. These data suggest that synergy between the two cytokines may variably modulate certain immune functions in vitro. This effect might account for the increase of serum IgM levels noted in some patients who received alpha-interferon.

B-Lymphocytes

Granulocytopenia after combined therapy with interferon and angiotensin-converting enzyme inhibitors: evidence for a synergistic hematologic toxicity.

PURPOSE: The purpose of this study was to assess whether granulocytopenia observed in 3 of 38 patients with essential mixed cryoglobulinemia who were treated with low-dose interferon was due to the underlying disease or to synergistic toxicity of interferon with other drugs. PATIENTS AND METHODS: Adverse effects of interferon therapy were monitored in 38 patients affected with type II essential mixed cryoglobulinemia. Patients were treated with 3 million units (MU), daily or on alternate days, of recombinant interferon-alpha 2a (35 patients) or with natural interferon-beta (3 patients). The duration of treatment ranged between 6 and 15 months; the total duration of follow-up, including after therapy, ranged between 8 and 93 months. RESULTS: None of 35 patients treated with interferon alone developed significant hematologic alterations. In addition, none of 7 patients treated with angiotensin-converting enzyme (ACE) inhibitors alone showed hematologic toxicity. Three patients who were treated with a combination of interferon and ACE inhibitors developed severe granulocytopenia a few days after starting treatment. Granulocytopenia subsided within 1 to 2 weeks after suspending therapy. Resumption of treatment with this drug combination produced a granulocytopenia relapse in 1 patient. In these 3 patients, interferon treatment alone, or ACE inhibitor monotherapy, was not followed by granulocytopenia. CONCLUSION: Although severe hematologic toxicity rarely develops in patients treated with low-dose interferon, granulocytopenia occurred in all 3 of our patients with mixed cryoglobulinemia who were treated with a combination of low-dose interferon-alpha 2a and ACE inhibitors. Neither drug alone was toxic in any of our cryoglobulinemic patients, indicating a high risk of severe hematologic toxicity for this drug combination, at least in patients with this disease. Physicians should be aware of this danger when using interferon treatment in patients with this, or possibly other, disorder(s) that also require antihypertensive therapy.

Adult

Soluble CD4 antigen reactivity in intravenous immunoglobulin preparations: is it specific?

Soluble CD4 antigen (sCD4) was measured in seven commercially available intravenous immunoglobulin preparations (IVIg) by means of a double determinant immunoassay (DDIA), whereby two MoAbs recognizing two distinct and spatially distant epitopes on CD4 were used to capture and detect the antigen, respectively. Preincubation of six out of seven IVIg, which were found to be apparently positive for sCD4, with mouse- and bovine-derived serum or purified immunoglobulins completely neutralized DDIA reactivity for sCD4. The inhibition was specific since it was not or only partially observed when IVIg were mixed with whole serum or purified IgG from rabbit. Extensive absorption of six IVIg on insolubilized mouse IgG (mIgG) resulted in a complete loss of reactivity. Eluted human anti-mouse antibodies (HAMA) from any of the IVIg displayed a dose-dependent binding in a DDIA, though its extent varied from one preparation to another. Western blot analysis showed that HAMA from all IVIg contained no component with a molecular weight identical with or close to that of recombinant CD4. Purified mIgG markedly influenced the sCD4 reactivity of two IVIg (Sandoglobulin and Globuman I.V.) when sCD4 was measured with a purchased 'CD4-specific Test Kit', thus suggesting that HAMA can exceed the absorbing capacity of the sample diluent. Taken as a whole, these data indicate that sCD4-based DDIA signal is mostly, if not completely, generated by the presence of human immunoglobulin with anti-mouse immunoglobulin reactivity, thus casting doubts on the actual occurrence of sCD4 in IVIg.

Animals

Clinical implications of cytokine and soluble receptor measurements in patients with newly-diagnosed aggressive non-Hodgkin's lymphoma.

Serum levels of 13 different cytokines and receptors were measured serially in 78 patients with aggressive non-Hodgkin's lymphoma (NHL) treated by 4 cycles of an intensive multi-agent chemotherapy regimen. Recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) was administered subcutaneously in 36 of these patients from day + 5 to day + 18 after each chemotherapy. Statistically significantly higher pretreatment levels of interleukin-2 (IL-2), interleukin-6 (IL-6), interleukin-8 (IL-8), interleukin-10 (IL-10), the soluble IL-2 receptor (sIL-2r), the soluble transferrin receptor (sTf-r), and neopterin, were observed in NHL patients as compared to controls (p < 0.001 for all molecules). sIL-2r and sTf-r levels correlated with tumor burden (p < 0.001 and p = 0.003, respectively) whereas IL-6 was higher in patients presenting B symptoms (p < 0.001). Cytokine levels progressively declined to normal ranges in responding patients, while they remained elevated in non-responders. Relapsed patients also presented increased concentrations of several molecules. During the administration of GM-CSF, we observed the drastic increase of sIL-2r, while lower elevations were recorded for a number of cytokines, including IL-8, tumor necrosis factor-alpha, interleukin-1 beta, IL-6, and IL-2. However, upon completion of the induction treatment, cytokine/receptor levels were comparable among individuals with the same type of response, whether or not they had received GM-CSF. No single parameter was found to be of prognostic significance, but the combination of elevated IL-10 and of sIL-2r greater than 3000 U/ml selected a subgroup of 7 patients who failed induction treatment (p = 0.002). These results demonstrate that cytokine and soluble receptor measurements can provide valuable informations for a better management of NHL, in terms both of markers to monitor disease activity and of prognostic indicators.

Adult

Localization of hepatitis C virus antigens in liver and skin tissues of chronic hepatitis C virus-infected patients with mixed cryoglobulinemia.

Skin and/or liver biopsy specimens were obtained from the following patients: 15 anti-hepatitis C virus (HCV), HCV RNA-positive patients and 3 anti-HCV, HCV RNA-negative patients with type II mixed cryoglobulinemia (MC); 7 anti-HCV, HCV RNA-positive patients with chronic active liver disease (CALD); 5 anti-HCV, HCV RNA-negative patients with noncryoglobulinemic vasculitis; and 7 anti-HCV, HCV RNA-negative patients with lichen ruber planus. A pool of murine monoclonal antibodies (MAbs) developed against c22-3, c33c, and c100-3 proteins was used to detect HCV-related antigens (Ags) by indirect immunohistochemistry. Acid electroelution (AEE) of tissue sections was performed to enhance the sensitivity of the immunohistochemical method. In anti-HCV-positive MC patients, specific HCV-related Ags were detected in the small vessels of the skin and in the cytoplasm of hepatocytes. Prior AEE of biopsy sections allowed detection of HCV Ags in 6 of 15 (40%) skin biopsy and in 9 of 14 (64.3%) liver biopsy specimens. HCV immunoreactive deposits in the skin displayed two immunohistochemical patterns: (1) coarse intraluminal material associated with dermal inflammatory infiltrates and intravascular deposition of eosinophilic hyaline material; and (2) reactivity confined to the vessel wall in the context of an apparently normal tissue. Immunoglobulin (Ig) G and IgM deposition in the skin showed immunohistochemical features comparable with those found for HCV Ag deposits.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Natural interferon-alpha versus its combination with 6-methyl-prednisolone in the therapy of type II mixed cryoglobulinemia: a long-term, randomized, controlled study.

Type II mixed cryoglobulinemia (MC) is an often progressive vasculitis characterized by circulating cold-precipitable proteins that usually consists of polyclonal IgG and monoclonal IgM kappa with rheumatoid factor (RF) activity. Its etiology is unknown, although recent evidence strongly suggests that hepatitis C virus (HCV) plays a major role. Plasmapheresis, corticosteroids, and cytotoxic drugs have been used in the therapy of MC patients. Recently, favorable results with recombinant interferon-alpha (rIFN alpha) have been reported. To further assess its effectiveness, we studied the effects of natural human interferon-alpha (nIFN alpha), alone and in combination with 6-methyl-prednisolone (PDN), in a prospective, randomized, controlled trial in patients with symptomatic MC. Sixty-five patients were enrolled onto the trial, 52 (80%) of whom presented serum anti-HCV antibodies and specific genomic RNA sequences. Fifteen patients received nIFN alpha (3 MU) intramuscularly (IM) three times weekly, whereas 17 patients also received 16 mg/d of PDN orally on non-IFN days. Moreover, 18 patients received 16 mg/d of PDN only, and 15 were untreated. Treatment was discontinued after 1 year and patients were monitored for 8 to 17 months (mean, 13). A complete response was achieved in eight of 15 patients (53.3%) treated with nIFN alpha and nine of 17 (52.9%) treated with nIFN alpha plus PDN, as compared with three of 18 patients (16.7%) who received PDN only (P < .05) and one of 15 (6.7%) untreated controls (P < .01). Partial response occurred in two of 15 (13.3%) patients treated with nIFN alpha, three of 17 (17.6%) who received nIFN alpha plus PDN, one of 18 (5.5%) who received PDN only, and one of 15 (6.7%) controls. A complete response in six patients (66.7%) was achieved within 3 months in the group that received nIFN alpha plus PDN, as compared with two patients (25%) of those who received nIFN alpha alone (P < .02). In anti-HCV-positive patients, the clinical response occurred in step with reduced or undetectable levels of HCV RNA and transaminase normalization. Quantification of circulating HCV RNA represented a good predictive response marker. The probability of relapse within 3 months after treatment was 100% (three of three patients) and 75% (six of eight patients), respectively, in patients who received PDN alone or nIFN alpha alone as compared with none of those who received nIFN alpha plus PDN (P < .001).(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence

Detection of soluble interleukin-2 receptor and interleukin-10 in the serum of patients with aggressive non-Hodgkin's lymphoma. Identification of a subset at high risk of treatment failure.

BACKGROUND: This study explores the ability of the combined detection of soluble IL-2 receptor (sIL-2r) and interleukin-10 (IL-10) to predict treatment failure in patients with aggressive non-Hodgkin's lymphoma (NHL) and to evaluate the modifications in cytokine measurements induced by the therapeutic administration of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF). METHODS: Serum levels of sIL-2r and IL-10 were measured serially in 93 patients with newly diagnosed aggressive NHL treated with four courses of a multiagent chemotherapy regimen. GM-CSF was administered subcutaneously in 39 of these patients from day +5 to day +18 after each chemotherapy course. RESULTS: Pretreatment levels of sIL-2r were greatly elevated in patients with NHL compared with control subjects (P < 0.001), significantly correlating with the Ann Arbor stage (P < 0.001) and beta 2-microglobulin (beta 2-m) concentrations (r = 0.552, P = 0.004). IL-10 was detected in 37 patients at diagnosis, with no correlation with clinicohematologic parameters, and was not detected in the control sample (P < 0.001). Cytokine and receptor levels progressively declined to normal ranges in responding patients, whereas they remained elevated in nonresponders. During administration of GM-CSF, the authors observed an increase of sIL-2r, whereas lower elevations were recorded for IL-10. However, on completion of the induction treatment, cytokine/receptor levels were comparable in patients with the same type of response, whether or not they had received GM-CSF. In the five patients who were investigated at relapse, the levels of sIL-2r, beta 2-m, and lactic dehydrogenase were found to be elevated. IL-10 concentrations were high in three of these patients: two already had detectable levels at presentation, whereas one tested positive only on recurrence. No single parameter was associated with response to therapy, but the combination of elevated IL-10 and sIL-2r concentrations greater than 3000 U/ml resulted in a subset of eight patients who failed induction chemotherapy (P < 0.001). In addition, six of eight patients with high IL-10 and beta 2-m concentrations greater than 3.3 mg/l had an unfavorable outcome (P = 0.003). A multivariate regression model was used to identify sIL-2r (P = 0.004) and beta 2-m (P = 0.043) as the covariates that amplified the prognostic ability of IL-10. CONCLUSIONS: sIL-2r and IL-10 measurements provide valuable information for better management of patients with NHL as markers to monitor disease activity and as prognostic indicators.

Adolescent

Molecular specificities of CD4+ T cell-reactive IgM in human immunodeficiency virus (HIV-1) infection.

The molecular targets and biological properties of lymphocytotoxic sera in 11 human immunodeficiency virus (HIV)+ subjects in CDC stages II to IVC were investigated. A purified soluble CEM membrane used as the CD4+ T cell clonotypic model in immunoblotting techniques revealed a homogeneous pattern of IgM-mediated reactivity to a 43.5-kDa membrane component in 10 sera. Conversely, CEM membrane-reactive IgG from these sera were weakly reactive to various antigens with no prevalent specificity. ELISA assay against purified 25.5-, 43.5-, and 60.8-kDa CEM membrane antigens revealed a significant affinity of IgM from sera 3, 8, 9, and 10 for the 43.5-kDa receptor, thus confirming the high specificity of these cytotoxic antibodies for their substrate. Additional experiments included the idiotypic saturation of purified IgM molecules with increasing amounts of the 43.5-kDa antigen. Functional inhibition of CEM-reactive IgM by their antigen was dose-dependent. The maximum inhibition of the ELISA reactivity was detected at 1/7 antigen/antibody concentration. By contrast, a significant decline of cytotoxic properties of sera 8, 9, and 10 to CEM lymphoblasts was noted only when equivalent concentrations of the 43.5-kDa receptor and purified IgM were incubated. In addition, the 43.5-kDa antigen appeared to be the preferential target of cytotoxic IgM in HIV-1 infection, since purified cytotoxic IgM from two SLE patients were not inhibited by this molecule. Our data provide specific molecular support for earlier evidence of exacerbation by T cell-reactive antibodies of the lymphopenia associated with HIV-1 infection.

Acquired Immunodeficiency Syndrome

Distribution and antigenic analysis of circulating F(ab')2-reactive IgG in patients with HIV-1 infection.

Serum titers and molecular specificity of anti-F(ab')2 antibodies were investigated in human immunodeficiency virus type 1 (HIV-1) infection with respect to their supposed cytopenic role on CD4+ cells. The levels of antibodies to F(ab')2 fragment and to HIV-1 glycoprotein epitopes were measured by immunoenzymatic methods in an HIV-1+ population, including 86 drug addicts, 12 sexually infected patients, and 1 hemophiliac, grouped into Walter Reed (WR) clinical stages 2 to 6 of HIV-1 infection. Monoclonal F(ab')2-reactive IgM and IgG from cloned Epstein-Barr B cell transformants of selected patients were also investigated in regards to their HIV-1 glycoprotein specificities and cytotoxicity to the CD4+ cell membrane antigens (CEM) lymphoblasts by a Terasaki assay. Group A (51 sera from WR2 patients) showed the highest titers of IgG anti-F(ab')2 with no correlation to positivities to gp120, whereas sera with undetectable anti-F(ab')2 levels from group B (37 WR5 and WR6 patients) and from group C (11 WR3-WR6 patients with lymphocytotoxin-associated lymphopenia) were reactive to the virus envelope. Both anti-F(ab')2 monoclonal IgM and IgG failed to cross-react with the HIV-1 glycoproteins and the CD4+ CEM. Based on our data, anti-F(ab')2 antibodies are apparently unrelated to the CD4+ lymphopenia occurring in HIV-1-infection. In addition, their inability to bind the HIV-1 gp120 as sequence homologue of the CH1 domain of IgG suggests that their molecular target could include a few epitopes located within the VH and VL regions, thus supporting their potential role of antiidiotype molecules as described in autoimmunity.

Acquired Immunodeficiency Syndrome

Human CD4 "internal antigen" mimicry by anti-idiotypic monoclonal antibodies.

Of 1019 hybridomas generated from a BALB/c mouse immunized with the syngeneic anti-CD4 monoclonal antibody HP2/6, 3 were found to secrete anti-idiotypic antibodies. Detailed analysis of anti-idiotypic monoclonal antibodies F16-10F6, F16-14D6 and F16-16D7 showed they recognize idiotope(s) not expressed by any of the anti-CD4 monoclonal antibodies tested, including those which inhibit the binding of HP2/6 to CD4 antigen. The idiotope recognized by the three anti-idiotypic antibodies are within (or closely related to) the antigen combining site of the immunizing antibody and distinct and spatially distant from the idiotope defined by monoclonal antibody F11-2302 which was previously shown to be outside the antigen combining site of HP2/6. Although F16-14D6 and F16-16D7 are indistinguishable in isotype, binding titer to idiotopes, fine specificity on a panel of monoclonal antibodies, relation to the combining site and competitive binding, it is likely that they are structurally different and recognize two distinct combining site-related idiotopes on HP2/6, as they display different spectrotypes and induce anti-anti-idiotypic (Ab3) immune sera with different specificities. Analysis of the fine specificity of the two Ab3 immune sera suggest they share idiotopes with HP2/6 and contain antibodies reacting with CD4 antigen. Among the latter, those induced with F16-14D6 display a different CD4 epitope specificity than HP2/6. Hence, anti-idiotypic antibodies F16-14D6 and F16-16D7 behave as "network antigen" for human CD4; idiotope-triggered antibody cascade may have a role in changing the specificities of antibody.

Animals

Anti-idiotypic monoclonal antibodies (mAb) to an anti-CD4 mAb induce CD4+ T cell depletion in rabbit.

We previously produced and characterized the syngeneic anti-idiotypic (Ab2) mAb F11-2302, F16-14D6 and F16-16D7 elicited with the mouse anti-human CD4 mAb HP2/6. We showed that F11-2302, which reacts with an idiotope (id) outside the antigen (Ag) combining site, fails to induce anti-CD4 antibodies (Ab) in mice, whereas mAb F16-14D6 and F16-16D7 to an id within (or closely related to) mAb HP2/6 Ag-combining site induces Ab to CD4 molecule. In the present investigation we extended our analysis to the immune response induced by these three mAb in a xenogeneic system by immunizing three New Zealand White (NZW) rabbits with Ab2 mAb. The latter animals were selected since rabbit CD4 molecules displayed a weak cross-reactivity with the anti-human CD4 mAb HP2/6. An additional rabbit was not immunized and used, together with the F11-2302-immunized one, as control. The three rabbits developed Ab3 Ab highly restricted to their respective immunizing mAb. Although no Ab reacting with human CD4 were detected in the three affinity-purified Ab3 preparations, a marked decrease in the percentage of CD4+ T cells was observed in the rabbits immunized with mAb F16-14D6 and F16-16D7. The results suggest that active specific immunotherapy with selected Ab2 mAb may induce biological effects similar to those generated by the passive administration of anti-CD4 mAb, and the rabbit could be an appropriate xenogeneic host for the testing of potential applications of anti-CD4 Ab2 mAb active immunotherapy in transplantation and autoimmune diseases.

Animals

Prognostic value of serum IL-10 and soluble IL-2 receptor levels in aggressive non-Hodgkin's lymphoma.

We investigated the prognostic significance of interleukin-10 (IL-10) and soluble interleukin-2 receptor (sIL-2r) levels in the pretreatment serum of 105 individuals with newly-diagnosed aggressive non-Hodgkin's lymphoma (NHL). Commercially available enzyme-linked immunoassay kits were used for cytokine and receptor measurements. Detectable levels of IL-10 were found in 42 (40%) patients at diagnosis, with no correlation with clinico-haematological parameters, but in no control samples (P < 0.001). Pretreatment concentrations of sIL-2r were markedly increased in individuals with NHL when compared to controls (2614 +/- 893 U/ml v 219 +/- 65 U/ml, P < 0.001), patients with stage III/IV presenting higher values than those with stage II disease (3885 +/- 1196 U/ml v 1732 +/- 646 U/ml, P < 0.001). No single parameter was associated with the achievement of complete remission, but the combination of elevated IL-10 and of sIL-2r greater than 3000 U/ml selected a subset of patients with a high probability of failing induction therapy (P < 0.001). Life-table analysis also indicated that patients with these characteristics have a significantly shorter event-free survival. In a multivariate analysis the combination of IL-10 with sIL-2r was found to have greater predictive strength than the combination of IL-10 with beta 2-microglobulin. We conclude that IL-10 and sIL-2r measurements can be expected to improve existing methods of risk assignment in aggressive NHL.

Adult

Bone marrow angiogenesis and progression in multiple myeloma.

Tumour growth is angiogenesis-dependent. We found a high correlation between the extent of bone marrow angiogenesis, evaluated as microvessel area, and the proliferating (S-phase) fraction of marrow plasma cells, evaluated as labelling index (LI), in patients with multiple myeloma (MM) and in those with monoclonal gammopathies of undetermined significance (MGUS). Angiogenesis itself was significantly associated with active as opposed to non-active MM and MGUS. The highest microvessel area accompanied rapidly progressive MM with the highest LI. When a cut-off value of 2% or greater of the microvessel area was used, most patients with active MM were classified correctly. The risk of active disease in patients with MM increased in parallel with the microvessel area. A causal relationship between plasma cell growth, activity phase in MM and marrow angiogenesis is suggested. Since angiogenesis proceeds in step with the enlargement of plasma cell tumours and the activity phase in MM, its measurement could be a useful prognostic marker in patients with plasma cell proliferative disorders.

Aged