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Biomedical subjects

P Gascon

Publications and source records attributed to P Gascon.

At least 19 recordsLinked to original sources

Activation of nuclear factor-kappa B is linked to resistance to neoadjuvant chemotherapy in breast cancer patients.

The nuclear factor (NF)-kappaB system is a promising anticancer target due to its role in oncogenesis and chemoresistance in preclinical models. To provide evidence in a clinical setting on the role of NF-kappaB in breast cancer, we aimed to study the value of basal NF-kappaB/p65 in predicting resistance to neoadjuvant chemotherapy, and to characterise the pharmacodynamic changes in NF-kappaB/p65 expression following chemotherapy in patients with locally advanced breast cancer. Pre- and post-chemotherapy tumour specimens from 51 breast cancer patients treated with anthracycline- and/or taxane-containing neoadjuvant chemotherapy were assayed by immunohistochemistry for NF-kappaB/p65 subcellular expression. We studied NF-kappaB/p65, a well-characterised member of the NF-kappaB family that undergoes nuclear translocation when NF-kappaB is activated. Activation of NF-kappaB (i.e. nuclear NF-kappaB/p65 staining in pre-therapy specimens) was linked to chemoresistance. Patients with NF-kappaB/p65 nuclear staining in pre-treatment samples had a 20% clinical response rate, while patients with undetected nuclear staining had a 91% response rate to chemotherapy (P = 0.002). Notably, four patients achieved a complete histological response and none of them had pre-treatment NF-kappaB/p65 nuclear staining. Moreover, the number of patients with NF-kappaB/p65 activation increased after chemotherapy exposure. It is concluded that NF-kappaB/p65 activation assayed by immunohistochemistry is a predictive factor of resistance to neoadjuvant chemotherapy in breast cancer patients. Moreover, NF-kappaB activation was inducible following chemotherapy in a proportion of breast cancer patients. These novel clinical findings strengthen the rationale for the use of NF-kappaB inhibitors to prevent or overcome chemoresistance in breast cancer.

Adult↗

Activation of nuclear factor-kappaB in human prostate carcinogenesis and association to biochemical relapse.

Nuclear factor (NF)-kappaB/p65 regulates the transcription of a wide variety of genes involved in cell survival, invasion and metastasis. We characterised by immunohistochemistry the expression of NF-kappaB/p65 protein in six histologically normal prostate, 13 high-grade prostatic intraepithelial neoplasia (PIN) and 86 prostate adenocarcinoma specimens. Nuclear localisation of p65 was used as a measure of NF-kappaB active state. Nuclear localisation of NF-kappaB was only seen in scattered basal cells in normal prostate glands. Prostatic intraepithelial neoplasias exhibited diffuse and strong cytoplasmic staining but no nuclear staining. In prostate adenocarcinomas, cytoplasmic NF-kappaB was detected in 57 (66.3%) specimens, and nuclear NF-kappaB (activated) in 47 (54.7%). Nuclear and cytoplasmic NF-kappaB staining was not correlated (P=0.19). By univariate analysis, nuclear localisation of NF-kappaB was associated with biochemical relapse (P=0.0009; log-rank test) while cytoplasmic expression did not. On multivariate analysis, serum preoperative prostate specific antigen (P=0.02), Gleason score (P=0.03) and nuclear NF-kappaB (P=0.002) were independent predictors of biochemical relapse. These results provide novel evidence for NF-kappaB/p65 nuclear translocation in the transition from PIN to prostate cancer. Our findings also indicate that nuclear localisation of NF-kappaB is an independent prognostic factor of biochemical relapse in prostate cancer.

Adenocarcinoma↗

Serum protein s-100 predicts clinical outcome in patients with melanoma treated with adjuvant interferon--comparison with tyrosinase rt-PCR.

OBJECTIVE: To study the clinical value of the determination of serum S-100 protein as a single tumor marker or in combination with tyrosinase RT-PCR in patients with melanoma receiving adjuvant interferon. PATIENTS AND METHODS: Patients were tested for serum S-100 protein luminoimmunometric assay and for blood tyrosinase mRNA (RT-PCR), before starting interferon and every 2-3 months thereafter. RESULTS: One hundred and six patients (stage IIA, 27; IIB, 19; III, 49; and IV, 11) were included in the study. Median follow-up was 51 months (range 2-76). In the univariate analysis, under treatment S-100 > or =0.15 microg/l and a positive RT-PCR correlated with a lower disease-free survival and overall survival (OS). In the multivariate analysis, clinical stage, under therapy positive RT-PCR and S-100 levels > or =0.15 mug/ml, were independent prognostic factors for OS. The hazard ratio for OS was 3.9 (95% CI, 1.67-9.15; p = 0.004) and 2.2 (95% CI, 1.05-4.6; p = 0.016) for S-100 > or =0.15 microg/l and positive RT-PCR, respectively. When both techniques where combined, a positive RT-PCR indicated a poorer clinical outcome only in patients with S-100 <0.15 microg/l. CONCLUSIONS: S-100 > or =0.15 microg/l and a positive RT-PCR during adjuvant interferon therapy indicate a high risk of death in resected melanoma patients. S-100 determination has a higher positive predictive value than RT-PCR, while tyrosinase RT-PCR adds prognostic information in patients with S-100 <0.15 microg/l.

Adolescent↗

Preclinical and clinical development of the proteasome inhibitor bortezomib in cancer treatment.

The proteasome is a ubiquitous enzyme complex that plays a critical role in the degradation of many proteins involved in cell cycle regulation, apoptosis and angiogenesis. Since these pathways are fundamental for cell survival and proliferation, particularly in cancer cells, the inhibition of proteasome is an attractive potential anticancer therapy. The present review will focus on the proteasome inhibitor bortezomib (Velcade, formerly PS-341; Millennium Pharmaceuticals, Inc., Cambridge, MA, USA). Bortezomib is an extremely potent and selective proteasome inhibitor that shows strong activity in in vitro and in vivo laboratory studies against many solid and hematologic tumor types. Moreover, bortezomib, mainly by inhibition of the NF-kappaB pathway, has a chemosensitizing effect when administered together with other antitumoral drugs. Based on these results, bortezomib entered clinical phase I trials, alone or in combination with chemotherapy, that showed good tolerance at doses that achieved a desired degree of proteasome inhibition. Phase II studies showed high response rates in refractory multiple myeloma patients, which led to the accelerated approval of bortezomib by the U.S. Food and Drug Administration (FDA) and the European Medicines Agency (EMEA) for this indication. A phase III trial comparing bortezomib with dexamethasone in refractory/ relapsed multiple myeloma patients had to be halted due to a survival advantage in the bortezomib arm. Additional studies are focusing on the potential benefit of bortezomib in newly diagnosed multiple myeloma patients. In other solid and hematological malignancies, phase II studies with bortezomib alone or in combination with other agents are ongoing. Encouraging results, particularly in lung cancer and lymphoma, have been observed. The critical molecules or genes responsible for tumor sensitivity to bortezomib continue to be evaluated using novel technologies.

Animals↗

Serial topoisomerase II expression in primary breast cancer and response to neoadjuvant anthracycline-based chemotherapy.

OBJECTIVE: We analyzed the value of topoisomerase IIalpha (Topo II) in predicting the clinical response to anthracycline-based neoadjuvant chemotherapy in breast cancers and the potential changes in Topo II after chemotherapy. In parallel, HER2, which is commonly coexpressed with Topo II, and p53, a modulator of chemotherapy activity, were also analyzed. METHODS: Forty-one patients with primary breast cancer and treated with neoadjuvant anthracycline-based chemotherapy (FAC or FEC) were included for the present study. Topo II, HER2 and p53 expression were measured by immunohistochemistry in pre and post chemotherapy (at the time of surgery), tumor specimens and the results were correlated with the clinical response. RESULTS: Topo II was overexpressed in 16 of 41 (31%) tumors before treatment, and this overexpression was significantly associated with clinical response (p = 0.03). HER2 and p53 were unrelated to response. Notably, Topo II overexpression, but not HER2 or p53, was lost in specimens after chemotherapy (p = 0.01). CONCLUSION: The observed link between Topo II and the clinical response to neoadjuvant anthracycline-based chemotherapy, together with its loss after chemotherapy, implies that Topo II deserves further testing in a prospective setting as a predictive marker.

Adult↗

A randomized double-blind multicenter phase III study of fixed-dose single-administration pegfilgrastim versus daily filgrastim in patients receiving myelosuppressive chemotherapy.

BACKGROUND: We evaluated the efficacy of a single fixed 6 mg dose of pegfilgrastim (a pegylated version of filgrastim) per cycle of chemotherapy, compared with daily administration of filgrastim, in the provision of neutrophil support. PATIENTS AND METHODS: Patients (n = 157) were randomized to receive either a single 6 mg subcutaneous (s.c.) injection of pegfilgrastim or daily 5 mg/kg s.c. injections of filgrastim, after doxorubicin and docetaxel chemotherapy (60 mg/m(2) and 75 mg/m(2), respectively). Duration of grade 4 neutropenia, depth of neutrophil nadir, incidence of febrile neutropenia, time to neutrophil recovery and safety information were recorded. RESULTS: A single 6 mg injection of pegfilgrastim was as effective as daily injections of filgrastim for all efficacy measures for all cycles. The mean duration of grade 4 neutropenia in cycle 1 was 1.8 and 1.6 days for the pegfilgrastim and filgrastim groups, respectively. Results for all efficacy end points in cycles 2-4 were consistent with the results from cycle 1. A trend towards a lower incidence of febrile neutropenia was noted across all cycles with pegfilgrastim compared with filgrastim (13% versus 20%, respectively). A single fixed dose of pegfilgrastim was as safe and well tolerated as standard daily filgrastim. CONCLUSIONS: A single fixed dose of pegfilgrastim administered once per cycle of chemotherapy was comparable to multiple daily injections of filgrastim in safely providing neutrophil support during myelosuppressive chemotherapy. Pegfilgrastim may have utility in other clinical settings of neutropenia.

Adult↗

Substance p-fibronectin-cytokine interactions in myeloproliferative disorders with bone marrow fibrosis.

Bone marrow (BM) fibrosis could occur secondarily to several clinical disorders: hematological and nonhematological. Clinical presentation of fibrosis could occur in myeloproliferative diseases, lymphoma, myelodysplastic syndrome and myeloma. The pathophysiology underlying BM fibrosis remains unclear despite intensive study, with a corresponding lack of specific therapy. This review discusses new insights in the role of substance P, cytokines and fibronectin in the development of BM fibrosis. Substance P is a neuropeptide that possesses pleiotropic properties, e.g. neurotransmission and immune/hematopoietic modulation and is linked to BM fibrosis. Cytokines and growth factors, in particular those associated with fibrogenic properties, e.g. TGF-beta, IL-1 and platelet-derived growth factor, are linked to BM fibrosis. Extracellular matrix proteins are increased in patients with BM fibrosis. Fibronectin in the sera of patients with BM fibrosis is complexed to substance P. Fibronectin appears to protect substance P from degradation by endogenous peptidases. This review describes the preliminary findings on the colocalization of substance P and fibronectin in the BM of patients with fibrosis. These data are reviewed in the context of published reports with particular focus on the relevant cytokines. A more detailed understanding of intra- and intercellular mechanisms in BM fibrosis may lead to effective therapy.

Cytokines↗

Differences in the expression of neurokinin receptor in neural and bone marrow mesenchymal cells: implications for neuronal expansion from bone marrow cells.

The neurokinin-1 (NK-1) receptor interacts with peptides that belong to the tachykinin family. NK-1 is inducible in bone marrow (BM) stroma. In neural cells, its expression is high to constitutive. Screening of three cDNA libraries indicated that this different in NK-1 expression in neural and BM cells could not be explained by differences in the cDNA sequence. Analyses the 5' flanking sequence in BM stroma and three neural cell lines indicated that sequence +1/+358 relative to the transcription start (TS) site could account for the differences in NK-1 expression. Particular cytokines could reverse the repressive effects of region +1/+358 in BM stroma. The effects of NF-kappa B and cAMP activators were studied in stromal cells using a dominant negative inhibitor of NF-kappa B (I kappa B) or a repressor of CRE activators (ICERII gamma). The results showed that their effects of these transcription factors depended on the stimulating cytokine. This study provides insight into the tissue-specific differences in the expression of the NK-1 gene.

5' Untranslated Regions↗

Negative feedback on the effects of stem cell factor on hematopoiesis is partly mediated through neutral endopeptidase activity on substance P: a combined functional and proteomic study.

Hematopoietic regulation is a complex but dynamic process regulated by intercellular and intracellular interactions within the bone marrow (BM) microenvironment. Through neurokinin-1 (NK-1) and NK-2 receptors, peptides (eg, substance P [SP]) encoded by the preprotachykinin-I gene mediate distinct hematopoietic effects. Cytokines, associated with hematopoietic stimulation, and SP regulate the expression of each other in BM mesenchymal and immune cells. Neutral endopeptidase (NEP) uses SP as a substrate to produce SP(1-4), which inhibits the proliferation of matured myeloid progenitor. This study determines whether the degradation of SP to SP(1-4) by endogenous NEP in BM stroma could be a feedback on hematopoietic stimulation by stem cell factor (SCF). SP(1-4) induced the production of transforming growth factor (TGF)-beta and tumor necrosis factor-alpha in BM stroma. TGF-beta production accounted for part of the inhibitory effects by SP(1-4) on the proliferation of early (granulocyte-macrophage colony-forming units) and late (long-term culture-initiating cells) hematopoietic progenitors. Enzyme-linked immunosorbent assays and/or protein-chip arrays indicated a timeline change of SP to SP(1-4) in BM stroma stimulated with SCF, which correlated with increase in NEP messenger RNA. Since SP and its fragment, SP(1-4), interact with the same receptor to mediate opposing hematopoietic effects, 2 interactive studies were done to understand the dual responses of NK-1: (1) a 3-dimensional molecular model of NK-1 and SP and (2) screening of a random dodecapeptide library for SP(1-4) interacting sites. The effects of SP(1-4) on hematopoietic progenitors and the timeline change of SP to SP(1-4), together with the 3-dimensional model, provide a partial explanation for the feedback on the stimulatory effects of SCF and SP on hematopoiesis.

Binding Sites↗

Mimicry between neurokinin-1 and fibronectin may explain the transport and stability of increased substance P immunoreactivity in patients with bone marrow fibrosis.

Bone marrow (BM) fibrosis may occur in myeloproliferative diseases, lymphoma, myelodysplastic syndrome, myeloma, and infectious diseases. In this study, the role of substance P (SP), a peptide with pleiotropic functions, was examined. Some of its functions-angiogenesis, fibroblast proliferation, and stimulation of BM progenitors-are amenable to inducing BM fibrosis. Indeed, a significant increase was found in SP-immunoreactivity (SP-IR) in the sera of patients with BM fibrosis (n = 44) compared with the sera of patients with hematologic disorders and no histologic evidence of fibrosis (n = 46) (140 +/-12 vs 18 +/-3; P <.01). Immunoprecipitation of sera SP indicated that this peptide exists in the form of a complex with other molecule(s). It was, therefore, hypothesized that SP might be complexed with NK-1, its natural receptor, or with a molecule homologous to NK-1. To address this, 3 cDNA libraries were screened that were constructed from pooled BM stroma or mononuclear cells with an NK-1 cDNA probe. A partial clone (clone 1) was retrieved that was 97% homologous to the ED-A region of fibronectin (FN). Furthermore, sequence analyses indicated that clone 1 shared significant homology with exon 5 of NK-1. Immunoprecipitation and Western blot analysis indicated co-migration of SP and FN in 27 of 31 patients with BM fibrosis. Computer-assisted molecular modeling suggested that similar secondary structural features between FN and NK-1 and the relative electrostatic charge might explain a complex formed between FN (negative) and SP (positive). This study suggests that SP may be implicated in the pathophysiology of myelofibrosis, though its role would have to be substantiated in future research. (Blood. 2001;97:3025-3031)

Adult↗

Cloning of human preprotachykinin-I promoter and the role of cyclic adenosine 5'-monophosphate response elements in its expression by IL-1 and stem cell factor.

Preprotachykinin-I gene (PPT-I) encodes several peptides with organ-specific functions that link the neuroendocrine-immune-hemopoietic axis. We cloned upstream of the initiation site of human PPT-I promoter and identified consensus sequences for two cAMP response elements (CRE). PPT-I is induced by cytokines including those that signal through the cAMP pathway. Therefore, we studied the role of the two CRE in IL-1alpha and stem cell factor (SCF) stimulation of bone marrow stroma because both cytokines induce endogenous PPT-I in these cells and activate the cAMP pathway. Furthermore, bone marrow stroma expresses the transcription factors regulated by the cAMP pathways such as the repressor (ICERIIgamma) and activator (CREMtau). Mutagenesis of the two CRE and/or cotransfection with vectors that express ICERIIgamma or CREMtau indicated that the two CRE have major roles in PPT-I expression. The two CRE are also required for optimal promoter activity by SCF and IL-1alpha. A particular cytokine could concomitantly induce PPT-I and the high affinity G protein-coupled receptor for PPT-I peptides, NK-1R. We showed that SCF, a representative cytokine, induced PPT-I and NK-1R leading to autocrine and/or paracrine cell activation. Because NK-1R activates cAMP through the G protein, the results suggest that the presence of CRE sequences within PPT-I promoter could be important in the regulation of PPT-I expression by cytokines, irrespective of their ability to signal through cAMP. As PPT-I is implicated in hemopoietic regulation, immune responses, breast cancer, and other neural functions, these studies add to the basic biology of these processes and could provide targets for drug development.

5' Untranslated Regions↗

NF-kappa B as a central mediator in the induction of TGF-beta in monocytes from patients with idiopathic myelofibrosis: an inflammatory response beyond the realm of homeostasis.

Immune-mediated mechanisms have been implicated in the etiology of idiopathic bone marrow fibrosis (IMF). However, the mechanism remains poorly defined. Compared with healthy controls, IMF monocytes are overactivated, with increased production of TGF-beta and IL-1. TGF-beta is central to the progression of fibrosis in different organs. In the lung, fibrosis is associated with up-regulation of TGF-beta-inducible genes. Because IL-1 and TGF-beta have pro- and antiinflammatory properties and neither appears to regulate the high levels of each other in IMF, we studied the mechanism of this paradigm. We focused on the role of RelA, a subunit of the transcription factor, NF-kappaB that is associated with inflammatory responses. We transiently knocked out RelA from IMF monocytes with antisense oligonucleotides and showed that RelA is central to IL-1 and TGF-beta production and to the adhesion of IMF monocytes. Because the NF-kappaB family comprises subunits other than RelA, we used aspirin and sodium salicylate to inhibit kinases that activate NF-kappaB and showed effects similar to those of the RelA knockout system. It is unlikely that RelA could be interacting directly with the TGF-beta gene. Therefore, we determined its role in TGF-beta production and showed that exogenous IL-1 could induce TGF-beta and adherence of IMF monocytes despite the depletion of NF-kappaB. The results indicate that IL-1 is necessary for TGF-beta production in IMF monocytes, but NF-kappaB activation is required for the production of endogenous IL-1. Initial adhesion activates NF-kappaB, which led to IL-1 production. Through autocrine means, IL-1 induces TGF-beta production. In total, these reactions maintain overactivation of IMF monocytes.

Adult↗

[Smoking cessation program using nicotine patch among physicians and pharmacists of Catalonia: results after 3-12 months].

Smoking abstinence rates of a group of 300 physicians and pharmacists of Catalonia (Spain) who participated in an open non-controlled follow-up design study with nicotine patch, are presented. Were eligible all the individuals who regularly smoke more than 15 cigarettes/day and get Fagerström Test score of 5 or more. Those who smoke more than 20 cig/day were offered a 3-month 24-hour transdermal nicotine treatment (30-20-10 schedule) and those smoking between 15 and 20 cig/day, received the 20-20-10 schedule. A follow up of participants was carried out at 3, 6, 9 and 12 months. After one year, 12 participants (4%) were dropped out. The overall abstinence rates at 3, 6, 9 and 12 months were respectively 55.9% (IC95%: 50.2-61.6), 42.7% (IC95%: 37.0-48.4), 35.4% (IC95% 29.9-40.9), 33.7% (IC95%: 28.2-39.2). Among predictive cessation variables, only those who had mad 1 to 3 previous attempts and those with only "cold turkey" (or slow reduction) quit experience, obtained statistically better results at 3 months. These results seem to be as good as or even better than those obtained in other similar studies with nicotine patch.

Administration, Cutaneous↗

Macular blood flow velocity in sickle cell disease: relation to red cell density.

AIMS/BACKGROUND: While the retinal lesions of sickle cell retinopathy have been well documented, their pathogenesis remains unclear. The purpose of this study was (1) to compare macular blood flow velocity in patients with sickle cell disease and controls, and (2) to determine in sickle cell patients the relation between macular blood flow velocity and red blood cell density. METHODS: Macular blood flow velocity was measured in 18 patients with stable sickle cell disease and 45 normal controls using blue field entoptoscopy. Red blood cell density was determined by the phthalate ester density method. RESULTS: There were no significant differences between patients and controls for leucocyte velocity. However, in the sickle cell patients leucocyte velocity in the macular capillaries was significantly negatively associated with greater range of red blood cell density (p < 0.002 and p < 0.04 for right and left eyes, respectively). CONCLUSION: These results suggest that in sickle cell patients heterogeneity of the density of the red blood cells may slow down macular capillary blood flow.

Adult↗

Phase I clinical evaluation of a new murine monoclonal antibody (Mu-9) against colon-specific antigen-p for targeting gastrointestinal carcinomas.

BACKGROUND: Colon-specific antigen-p is a tumor-associated antigen present in approximately 60% of colorectal cancers. Preclinical studies have shown that the murine monoclonal antibody Mu-9 has excellent tumor-targeting abilities; therefore, clinical studies were initiated. METHODS: The immunoglobulin G and F(ab')2 were radiolabeled with 131I and administered to 13 and 12 patients, respectively, with advanced gastrointestinal cancer (colon, rectal, and pancreatic) for radioimmunodetection or radioimmunotherapy. RESULTS: Even in patients with highly elevated carcinoembryonic antigen levels, only one patient showed appreciable complexation of the labeled antibody, suggesting the epitope may not be highly expressed in the blood. Fifty percent of 131I-Mu-9 immunoglobulin G was cleared from the blood within 41 +/- 13 hours, while it took only 19 +/- 8 hours for the same amount of 131I-F(ab')2 to be cleared from the blood. Lesion detection in the abdomen, liver, and pelvis was greater than 90% for either the immunoglobulin G or F(ab')2. The dose absorbed by the normal organs, except the kidneys, was two- to threefold less for the F(ab')2 than for the whole immunoglobulin G. The dose to the kidneys was similar for both forms of immunoglobulin. The average tumor dose for 131I-Mu-9 immunoglobulin G was 13.9 +/- 11.0 cGy/mCi, and for 131I-F(ab')2 was 4.9 +/- 2.9. Tumor/red marrow dose ratios for the whole immunoglobulin G were 4.3 +/- 3.0, compared to 3.3 +/- 1.9 for the F(ab')2, suggesting the therapeutic window for the two forms of immunoglobulin may be similar. Eight of nine patients given the whole immunoglobulin G developed highly elevated levels of human anti-mouse antibody, whereas lower values were observed in five of seven patients given the F(ab')2. CONCLUSIONS: These initial results support the need for further evaluation of Mu-9 immunoglobulin G and F(ab')2 for targeting gastrointestinal cancer for radioimmunotherapy.

Adult↗

Stimulation of IL-2 production in murine lymphocytes by substance P and related tachykinins.

Substance P (SP), a tachykinin neuropeptide, has been previously reported to stimulate IL-2 production in murine T cell lines activated with phorbol esters. Here we extend these observations by establishing the stimulatory effect of SP and related tachykinins on IL-2 production by normal murine lymphocytes and on purified CD4+ T cells. SP proved to be the most efficient IL-2 inducer, exerting its maximal effect at concentrations that were 4 to 5 orders of magnitude lower than the optimal stimulatory concentrations of physalaemin, NKA, or NKB. SP stimulated IL-2 production in a dose-dependent manner, with an optimal concentration range of 10(-10) to 10(-14) M, comparable with physiologic concentrations of SP found in blood and other organs. The effect of SP was carried by the carboxyl-terminal part of the molecule (SP4-11). The specificity of SP activity was confirmed by the inhibitory effect of spantide, a tachykinin antagonist, and of CP-96,345, a nonpeptide antagonist specific for NK-1-type receptors. In unfractionated spleen cell cultures SP induced de novo IL-2 protein synthesis. SP could induce IL-2 production either directly, or in combination with Con A or anti-CD3 antibody treatments. The effect of SP in conjunction with Con A was synergistic, whereas the effect in conjunction with anti-CD3 antibodies was additive, suggesting different molecular mechanisms for these stimulatory factors. In the absence of additional costimuli the effect of SP in unfractionated spleen cell cultures was partially mediated through the induction of IL-1, and both SP and IL-1 were required for IL-2 induction in purified CD4+ T cells. In contrast to its stimulatory effect on the generation of IL-2, SP did not induce IFN-gamma production in murine spleen cells. The stimulatory effect of SP on IL-2 production suggests that some of the already described immunostimulatory activities of SP could be mediated through the up-regulation of IL-2 production in normal lymphocytes.

Animals↗

Clinical evaluation of tumor targeting with a high-affinity, anticarcinoembryonic-antigen-specific, murine monoclonal antibody, MN-14.

BACKGROUND: The authors previously reported that an anticarcinoembryonic antigen antibody against a carcinoembryonic antigen (CEA)-specific epitope is preferred for clinical investigations. They developed a second generation, CEA-specific murine monoclonal antibody (MoAb), MN-14 (IMMU-14), that has a tenfold higher affinity. This report summarizes the initial clinical experience with the new MoAb. METHODS: MN-14 immunoglobulin G (IgG) (0.5-6.0 mg) was labeled with radioactive iodine (I131) (5-80 mCi) and injected into 22 patients with cancer. External scintigraphy was used to determine targeting in patients with low and highly elevated plasma CEA. Quantitative external scintigraphy methods were used to determine organ and tumor clearance rates and absorbed radiation doses. Targeting data were correlated with several factors, including MoAb protein dose, plasma CEA, and relative tumor burden. RESULTS: Despite more than 80% complexation with plasma CEA of more than 500 ng/ml, all known tumor sites were disclosed by external scintigraphy. The overall sensitivity of tumor targeting on a lesion basis was 89%. The residence time in the blood was predicted by body weight (P = 0.05) and the log of plasma CEA (P = 0.043). The absorbed dose to the red marrow and total body could be predicted by the body weight of the patient, but no other factor contributed significantly to the clearance rate or absorbed dose to the organs. Individual tumors received an average dose of 9.3 +/- 6.4 cGy/mCi. The absorbed dose to the tumors was negatively correlated to the weight of the tumor, and the percent uptake in the tumor was positively correlated to the estimated total tumor burden. Patients injected with approximately 5 mg of MN-14 IgG were more likely to have anti-mouse antibodies (HAMA) develop than were patients who were injected with less MoAb. CONCLUSIONS: These results suggest that MN-14 targets tumors effectively, even in the presence of elevated circulating CEA. Additional studies are necessary to determine if an advantage for the higher affinity MN-14 MoAb, compared with the lower affinity NP-4 MoAb, can be appreciated clinically.

Adult↗