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Biomedical subjects

G Palmieri

Publications and source records attributed to G Palmieri.

At least 91 records · Page 5Linked to original sources

Epiluminescence microscopy as a useful approach in the early diagnosis of cutaneous malignant melanoma.

The aim of this study was to evaluate the role of epiluminescence microscopy (ELM) in the differential diagnosis of cutaneous pigmented lesions in order to improve the detection of cutaneous malignant melanoma (CMM) at earlier stages of the disease. In total, 3865 pigmented lesions from 2121 selected patients were evaluated using ELM with a hand-held video microscope imaging system (MS 500B Micro-Scopeman, Moritex). Comparison with histology was performed on the 476 surgically excised lesions. ELM sensitivity, specificity, positive and negative predictive values as well as agreement for the different risk levels of the lesions were determined. Of the 476 cutaneous pigmented lesions removed and histologically examined, 101 (21.2%) were non-melanocytic lesions and 375 (78.8%) were melanocytic lesions. Overall agreement was 83.4% (93.1% and 80.8% for non-melanocytic and melanocytic lesions, respectively). Sensitivity and specificity of ELM in the analysis of melanocytic lesions with a pigment network were both very high (92.3% and 91.2%, respectively). Sixty new cases of CMM were identified. A high proportion of melanoma at stage AJCC IA (23 out of 32; 71.8%) was diagnosed exclusively by ELM (four of these were in situ CCM lesions). ELM is therefore a powerful tool to discriminate between melanocytic and non-melanocytic lesions in order to avoid inopportune surgical treatments for low risk lesions. Unfortunately, ELM did not show 100% sensitivity in diagnosing CMM and therefore ELM features should be integrated with data from both the history and clinical evaluation. However, ELM is much more accurate than clinical examination in detecting thin CMM.

Adolescent↗

Tailored therapy for aggressive non-Hodgkin's lymphoma: results of a phase II study with a long-term follow-up.

Aim of the study was to improve cure rate and survival of aggressive non-Hodgkin's lymphoma (NHL) with a tailored program of therapy based on histologic type, prognostic characteristics of patients and response to therapy, and with the use of differentiating or cytostatic agents such as Ara-C at low doses and alphaIFN. Fifty-four consecutive patients with aggressive NHL were treated in the induction phase with 4 sequential courses of a third generation regimen (modified CODBLAM IV), followed in responsive patients by 1 cycle of doxorubicin and cyclophosphamide and 1 cycle of high dose methotrexate with folinic acid rescue (AC-MTX). Patients who achieved partial response (PR) were treated with the combination of CCNU + vinblastine if affected by high grade NHL, or with low dose Ara-C plus alphaIFN if affected by intermediate grade NHL. Patients who obtained complete response (CR) with basal adverse prognostic factors were treated with alphaIFN as maintenance therapy for two years. Radiotherapy and surgery were effected in selected cases. Thirty-four patients (62.9%) achieved CR and 12 patients (22.2%) showed PR after induction therapy. Among the 12 patients who achieved PR, 6 prolonged CRs were obtained in 7 patients treated with Ara-C at low doses plus alphaIFN and 4 CRs were obtained in 5 patients treated with CCNU + vinblastine. After completion of treatment, 44 patients (81.5%) obtained CR, 2 patients (3.7%) showed PR and 8 patients (14.8%) presented progression of disease (PD). Fifteen patients received alphaIFN as maintenance therapy. The overall survival and failure-free survival rates are 53.7% and 50% respectively, with a median follow-up of 82 months: 27 patients remain alive, disease-free without relapses, and can be considered cured. This tailored program of therapy resulted effective and moderately toxic and may improve the outcome in aggressive NHL.

Adolescent↗

In vivo detection of malignant thymic masses by indium-111-DTPA-D-Phe1-octreotide scintigraphy.

UNLABELLED: Many tumors with neuroendocrine characteristics express high amounts of somatostatin receptors that enable in vivo imaging with [(111)In-DTPA-D-Phe1]-octreotide. In this study, we have analyzed the feasibility in detecting and characterizing thymic masses by somatostatin receptor scintigraphy (SRS). METHODS: Eighteen patients (13 women, 5 men, ages 18-78 yr; mean +/- s.d. = 42.1 +/- 17.6 yr) were enrolled in this study. Eleven patients were studied during diagnosis and seven during routine follow-up. In seven patients, myasthenia gravis was the presenting symptom. SRS was performed within 4 wk after CT and/or MRI. Planar and tomographic images were acquired within 24 hr after the injection of approximately 111 MBq of [(111)In-DTPA-D-Phe1]-octreotide. The scintigraphic results were categorized according to the histologic findings. RESULTS: Histology diagnosed 10 mixed epithelial/lymphoid thymomas (8 with prevalent epithelial component), 2 thymic carcinomas, 1 thymic carcinoid, 1 lymphangioma and 4 thymic hyperplasias. Two thymoma were Stage I, 3 were Stage II, 2 were Stage III and 5 were Stage IV, as was the thymic carcinoid. Indium-111-DTPA-D-Phe1-octreotide concentrated in primary and/or metastatic sites of thymic tumors, thereby enabling successful external gamma imaging of sites greater than 1.5 cm in size. Tumor-to-lung (T/L) ratios were as high as 7.6-fold (range 1.7-7.6). Untreated thymomas showed higher T/L (4.34 +/- 1.57) than treated ones (2.68 +/- 1.18). No uptake was detectable in the four patients with benign thymic hyperplasia and the patient with the lymphangioma. CONCLUSION: Indium-111-DTPA-D-Phe1-octreotide is avidly concentrated within thymic tumors, but it is not concentrated by thymic hyperplasia, which allows differential diagnosis. Thus, in patients with myasthenia gravis, SRS may have a role in characterizing thymic masses, thereby overcoming the limits of cross-sectional imaging modalities.

Adolescent↗

Cardiac rhabdomyosarcoma: a clinicopathologic and electron microscopy study.

A 66-year-old woman was admitted to the hospital with a neurological syndrome characterized by ataxia and diplopia. Magnetic resonance of the brain documented an ischemic medullary lesion. Examination of the heart revealed a grade 2/6 systolic murmur at the left sternal border and apex that radiated towards the axilla. The echocardiography study showed a mild mitral regurgitation, and an abnormally enlarged posterior papillary muscle was found in the left ventricle. Two weeks after admission, the patient died suddenly due to a stroke. At autopsy, a recent vast swollen ischemic cerebral infraction was found. Furthermore, two old infarcts were observed in the spleen. A cardiac examination showed a white-gray ulcered mass in the left ventricle and histological analysis revealed a rhabdomyosarcoma.

Aged↗

Engraftment of HLA-matched sibling hematopoietic stem cells after immunosuppressive conditioning regimen in patients with hematologic neoplasias.

BACKGROUND AND OBJECTIVE: The main objective of this pilot study was to assess the possibility of achieving engraftment of HLA-matched sibling donor mobilized hematopoietic stem cells after immunosuppressive non-myeloablative therapy. The second objective was to verify whether high-dose therapy with autologous stem cells rescue followed by allografting conditioned by only an immunosuppressive regimen, can be combined in order to achieve the reduction of tumor burden after autografting and the control of residual disease with immune-mediated effects after allografting. DESIGN AND METHODS: To enter the pilot study the patients had to fulfil the following criteria: advanced resistant disease, presence of an HLA matched sibling donor, no general contraindications to stem cell transplantation. Our data refers to 9 patients: Hodgkin's disease (n = 4), non-Hodgkin's lymphoma (n = 2), advanced chronic myelogenous leukemia (n = 2) (one patient with accelerated phase Ph-negative but p190 BCR-ABL gene positive by RT-PCR and one with Ph-positive blastic phase), refractory anemia with excess of blasts t(1;3) (p36;q21) (n = 1). All patients but one received the combined approach. At a median of 40 days (range 30-96), after high-dose therapy and autologous stem cell engraftment, the patients were treated with immunosuppressive therapy consisting of fludarabine and cyclophosphamide (Flu-Cy protocol) and then HLA matched donor mobilized stem cells were infused into the patients. GvHD prophylaxis consisted of cyclosporin and methotrexate. RESULTS: To date, with a median observation period of 4 months (range, 2-10), complete chimerism (100% donor cells) has been achieved in 6 patients. Three patients did not achieve complete chimerism: one patient died of progressive Hodgkin's disease when he reached 55% of donor cells, another patient is now in increasing phase of donor cell engraftment and the last patient (blastic phase-CML) was the only case who appears to have had autologous recovery. Two of the Hodgkin's disease patients, who were in partial remission after autografting, achieved complete remission after allografting and both are disease free 2 and 6 months after. Another Hodgkin's disease patient is alive at 10 months but she has progressive disease. One of the two patients with non-Hodgkin's lymphoma, who achieved partial remission after autografting, obtained complete remission and he is disease free 2 months after allografting. The other patient maintains partial remission obtained after autografting. The accelerated phase-CML patient obtained hematologic and molecular remission; the RAEB patient achieved hematologic and cytogenetic remission. In two patients severe aGVHD (grade II-III) was the single major complication but neither patient died of it. Mild aGVHD was seen in another patient. In only one patient did the ANC decrease to below 1 x 10(9)/L and in no case did platelets decrease below 20 x 10(9)/L. No patients required a sterile room or any red cell or platelet transfusions. INTERPRETATION AND CONCLUSIONS: Immunosuppressive therapy with a Flu-Cy protocol allowed engraftment of HLA-matched sibling donor stem cells without procedure-related deaths; moreover, we have demonstrated that this combined procedure can be pursued in safety in a serious ill population and some of these patients achieved a complete remission. This procedure is not likely to be curative, but a fascinating step along the path to curing these diseases. Of course, the follow-up is too short to document the incidence of cGvHD.

Adult↗

A novel white laccase from Pleurotus ostreatus.

Two laccase isoenzymes (POXA1 and POXA2) produced by Pleurotus ostreatus were purified and fully characterized. POXA1 and POXA2 are monomeric glycoproteins with 3 and 9% carbohydrate content, molecular masses of about 61 and 67 kDa by sodium dodecyl sulfate polyacrylamide gel electrophoresis, of about 54 and 59 kDa by gel filtration in native conditions, and of 61 kDa by matrix-assisted laser desorption ionization mass spectrometry (only for POXA1) and pI values of 6.7 and 4.0, respectively. The N terminus and three tryptic peptides of POXA1 have been sequenced, revealing clear homology with laccases from other microorganisms, whereas POXA2 showed a blocked N terminus. The stability of POXA2 as a function of temperature was particularly low, whereas POXA1 showed remarkable high stability with respect to both pH and temperature. Both enzymes oxidize syringaldazine and ABTS (2, 2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid)) together with a variety of different substituted phenols and aromatic amines with the concomitant reduction of oxygen, but POXA1 is unable to oxidize guaiacol. Both enzymes were strongly inhibited by sodium azide and thioglycolic acid but not by EDTA. UV/visible absorption spectra, atomic adsorption, and polarographic data indicated the presence of 4 copper atoms/mol of POXA2 but only one copper, two zinc, and one iron atoms were found/mol of POXA1. The neutral pI and the anomalous metal content of POXA1 laccase render this enzyme unique in its structural characteristics. The lack of typical absorbance at 600 nm allows its classification as a "white" laccase.

Amino Acid Sequence↗

Proline-rich tyrosine kinase-2 activation by beta 1 integrin fibronectin receptor cross-linking and association with paxillin in human natural killer cells.

Recent evidence indicates that integrin ligation results in activation of focal adhesion kinase (pp125FAK), the prototype of a new subfamily of nonreceptor protein tyrosine kinase (PTK), including FAKB and the proline-rich tyrosine kinase 2 (PYK-2), also termed cell adhesion kinase-beta or related adhesion focal tyrosine kinase. We have previously shown that cross-linking of alpha 4 beta 1 and alpha 5 beta 1 fibronectin receptors on human NK cells stimulates tyrosine phosphorylation of two proteins migrating at 105 and 115 kDa. Here we report that cross-linking of beta 1 integrins on human NK cells stimulates tyrosine phosphorylation and PTK activity of PYK-2. PYK-2 tyrosine phosphorylation was maximal at 1 min and started to decline 20 min after stimulation. Engagement of alpha 4 beta 1 and alpha 5 beta 1 either with specific mAbs or after cell adhesion to fibronectin or its 120- and 40-kDa fragments also triggered PYK-2 tyrosine phosphorylation. Stimulation of PYK-2 tyrosine phosphorylation was inhibited by the tyrosine kinase inhibitor herbimycin A, but not by EGTA, indicating that PYK-2 tyrosine phosphorylation is PTK, but not calcium, dependent. We also demonstrate that PYK-2 is constitutively associated with paxillin, which undergoes tyrosine phosphorylation with the same kinetics of PYK-2 upon beta 1 integrin ligation.

Animals↗

Selective binding of shc-SH2 domain to tyrosine-phosphorylated zeta but not gamma-chain upon CD16 ligation on human NK cells.

Fc gamma RIII (CD16) is a hetero-oligomeric receptor composed of a ligand-binding alpha subunit associated with homo- or heterodimers of the TCR zeta- and Fc epsilon RI gamma-chains. We have previously demonstrated that CD16 ligation promotes complex formation between tyrosine-phosphorylated shc and Grb2, leading to activation of ras signaling pathway in human NK cells. Here we report that CD16 engagement induces rapid shc association with the tyrosine-phosphorylated receptor complex in human NK cells. In vitro binding studies demonstrate that this interaction is mediated by the shc-SH2 domain, and immunodepletion experiments indicate that the zeta- but not the gamma-chain has the capability to mediate this association. Jurkat cell clones expressing CD16-zeta or -gamma homodimers have been used to gain more information about the mechanism of shc/CD16 association. Our data show that, while engagement of both receptors induces tyrosine phosphorylation of shc and Grb2 recruitment, shc-SH2/receptor complex association is evident only in CD16-zeta but not in CD16-gamma transfectants. Overall, our data demonstrate that the adaptor protein shc can be recruited to the activated CD16 complex by interaction with tyrosine-phosphorylated zeta-chain in a SH2-dependent manner. These results also provide further support to the notion that zeta- and gamma-chains might couple to different biochemical pathways.

Cells, Cultured↗

Expression of interleukin 15 (IL-15) in human rhabdomyosarcoma, osteosarcoma and Ewing's sarcoma.

Interleukin 15 (IL-15) is a recently discovered cytokine that stimulates lymphocyte proliferation and migration via a trimeric receptor sharing the beta and gamma signal transducing chains with the IL-2 receptor. IL-15 is typically produced by normal cells that do not release IL-2, but little information is currently available on human tumors. To assess whether human musculo-skeletal sarcomas produce IL-15, we analyzed surgical specimens and cell lines obtained from rhabdomyosarcoma, osteosarcoma and Ewing's sarcoma. IL-15 mRNA was present in 9/9 surgical specimens (3 Ewing's sarcomas, 5 osteosarcomas and 1 rhabdomyosarcoma). The analysis of a panel of cell lines (7 derived from Ewing's sarcoma, 12 from osteosarcoma and 5 from rhabdomyosarcoma) showed that all rhabdomyosarcoma and osteosarcoma cell lines expressed IL-15 mRNA at levels ranging from low to high, while Ewing's sarcoma cells contained little or no IL-15 message. ELISA assays showed IL-15 release in a subset of rhabdomyosarcomas and osteosarcomas, but not in Ewing's sarcoma. The highest production of IL-15, in the picogram/ml range, was found in rhabdomyosarcoma cell lines RH30 and RD.

Enzyme-Linked Immunosorbent Assay↗

Construction of a pilot human YAC library in a recombination-defective yeast strain.

Using high-molecular-weight DNA fragments from a human lymphoblastoid cell line, a pilot collection of 2500 YACs was constructed in YKK115, a recombination-deficient strain of Saccharomyces cerevisiae carrying mutations in both the rad51 and rad52 genes. Analysis of 520 clones from the current library by pulsed-field gel electrophoresis revealed more than 97% single YACs with an insert size averaging 340 kb. Fluorescent in situ hybridization (FISH) performed with 37 clones on metaphase chromosomes suggested a high proportion mapping at centromeric (7) or telomeric (4) locations. The results are consistent with the stabilization of YACs in strains disarmed in recombination functions [Kohno, K., Oshiro, T., Kishine, H., Wada, M., Takeda, H., Ihara, N., Imamoto, F., Kano, Y. and Schlessinger, D. (1997) Human YACs unstable in a rad52 single mutant strain become stable in rad51rad52 double mutant. Gene, 000, 000-000 (GENE 10429)], and further suggest that the YACs may include regions that have been difficult to clone in other strains.

Cell Line↗

CD16 cross-linking induces both secretory and extracellular signal-regulated kinase (ERK)-dependent cytosolic phospholipase A2 (PLA2) activity in human natural killer cells: involvement of ERK, but not PLA2, in CD16-triggered granule exocytosis.

The phospholipase A2 (PLA2) enzymes play a central role in diverse cellular processes including phospholipid digestion and metabolism, host defense, and cell signaling. We investigated the ability of CD16 clustering to trigger PLA2 and extracellular signal-regulated kinase (ERK) activation in human NK cells, as well as their possible involvement in CD16-stimulated degranulation. Both secretory (sPLA2) and cytosolic (cPLA2) PLA2 were rapidly activated upon CD16 cross-linking; sPLA2 was found in the supernatant and also in a cell-associated form. cPLA2 activation was controlled by the ERK pathway as indicated by the close correlation between their kinetics of activation and by the ability of the specific MEK inhibitor, PD 098059, to abolish cPLA2 activation. CD16 stimulation also resulted in the generation of platelet-activating factor (PAF) and leukotrienes; both phospholipases contributed to their biosynthesis. Using the pharmacologic inhibitors AACOCF3, p-bromophenacyl bromide (pBPB), and PD 098059, which specifically inhibit cPLA2, sPLA2, and MEK, respectively, we demonstrated that the ERK signaling pathway, but not cytosolic or secretory PLA2, is required for CD16-triggered granule release.

Antibodies, Monoclonal↗

Glutamate-1-semialdehyde aminotransferase from Sulfolobus solfataricus.

Glutamate-1-semialdehyde aminotransferase (GSA-AT) from the extremely thermophilic bacterium Sulfolobus solfataricus has been purified to homogeneity and characterized. GSA-AT is the last enzyme in the C5 pathway for the conversion of glutamate into the tetrapyrrole precursor delta-aminolaevulinate (ALA) in plants, algae and several bacteria. The active form of GSA-AT from S. solfataricus seems to be a homodimer with a molecular mass of 87 kDa. The absorption spectrum of the purified aminotransferase is indicative of the presence of pyridoxamine 5'-phosphate (PMP) cofactor, and the catalytic activity of the enzyme is further stimulated by addition of PMP. 3-Amino-2,3-dihydrobenzoic acid is an inhibitor of the aminotransferase activity. The N-terminal amino acid sequence of GSA-AT from S. solfataricus was found to share significant similarity with the eukaryotic and eubacterial enzymes. Evidence is provided that ALA synthesis in S. solfataricus follows the C5 pathway characteristic of plants, algae, cyanobacteria and many other bacteria.

Amino Acid Sequence↗

Expression of transduced carcinoembryonic antigen gene in human rhabdomyosarcoma inhibits metastasis.

Carcinoembryonic antigen (CEA) is a highly glycosylated cell surface glycoprotein belonging to the immunoglobulin superfamily. CEA has been involved in vitro in adhesion mechanisms, but little is known about the function of this glycoprotein in vivo in normal tissue differentiation and malignancy. With regard to the relationship between CEA expression and tissue differentiation, it has been reported that transfection of the CEA gene in rat L6 myoblasts results in a complete block of myogenic differentiation. To extend investigations to the transformed myogenic counterpart and examine CEA effects on differentiation and malignancy outside the colon system, we have transfected the human CEA gene in human rhabdomyosarcoma cells. Human rhabdomyosarcoma cells transfected with the CEA gene correctly expressed membrane CEA anchored via glycosylphosphatidylinositol and secreted CEA in the medium. CEA gene transfer in human rhabdomyosarcoma cells, which display a limited differentiation ability, does not further inhibit myogenic differentiation or alter in vitro proliferation or natural killer sensitivity. CEA transfection does not affect s.c. growth in nude mice, but the ectopic expression of CEA in human rhabdomyosarcoma cells can strongly inhibit their metastatic ability to lungs and adrenals after i.v. injection. The impairment of metastatic potential correlates with a reduction in the homotypic adhesion properties of the cells. These data suggest that CEA, in some systems, can interfere with intercellular adhesion and, at least for cells not metastatic to the liver, can act as an anti-metastatic molecule.

Adrenal Gland Neoplasms↗

A compositional map of human chromosome band Xq28.

The molar fractions of guanine plus cytosine (GC) in DNA were determined for 36 yeast artificial chromosomes (YACs) which almost completely cover human chromosome band Xq28, a terminal reverse band, corresponding to about 8 Mb of DNA. This allowed the construction of the most complete compositional map to date of a chromosomal band; three regions were observed: (i) a proximal 3.5-Mb region formed by GC-poor L and GC-rich H1 isochores; (ii) a middle 2,2-Mb region essentially formed by a GC-rich H2 isochore and a very GC-rich H3 isochore separated by a GC-poor L isochore, YACs from this region being characterized by a striking compositional heterogeneity and instability; and (iii) a distal 1.3-Mb region exclusively formed by GC-poor L isochores. Gene and CpG island concentrations increased with the GC levels of the isochores, as expected. Xq28 exemplifies a subset of reverse bands which are different from the two other subsets, namely from telomeric bands, which are characterized by specific cytogenetic properties and by the predominance of H2 and H3 isochores, and from the majority of reverse bands, which do not contain H2 and H3 isochores.

Base Composition↗

CD16-mediated p21ras activation is associated with Shc and p36 tyrosine phosphorylation and their binding with Grb2 in human natural killer cells.

The Src homology (SH) 2/SH3 domain-containing protein Grb2 and the oncoprotein Shc have been implicated in a highly conserved mechanism that regulates p21ras activation. We investigated the involvement of these adaptor proteins in the signaling pathway induced by CD16 or interleukin (IL) 2R triggering in human natural killer (NK) cells. Both p46 and p52 forms of Shc were rapidly and transiently tyrosine phosphorylated upon CD16 or IL-2 stimulation with different kinetics. Shc immunoprecipitates from lysates of CD16- or IL-2-stimulated NK cells contained Grb2 and an unidentified 145-kD tyrosine phosphoprotein. Grb2 immunoprecipitates from anti-CD16-stimulated NK cells contained not only Shc, but also a 36-kD tyrosine phosphoprotein (p36). The interaction between Grb2 and Shc or p36 occurred via the Grb2SH2 domain as indicated by in vitro binding assays using a bacteriologically synthesized glutathione S-transferase-Grb2SH2 fusion protein. We also present evidence that p21ras is activated by CD16 and IL-2R cross-linking. Accumulation of guanosine triphosphate-bound Ras was detected within 1 minute and occurred with kinetics similar to inductive protein tyrosine phosphorylation and Grb2 association of Shc and p36 adaptor proteins.

Adaptor Proteins, Signal Transducing↗

Double biochemical modulation of 5-fluorouracil by methotrexate and levo-folinic acid in the treatment of advanced digestive tract malignancies.

The aim of this study was to evaluate the activity and toxicity of a double biochemical modulation of 5-fluorouracil (5-FU) by means of methotrexate (MTX) and levo-folinic acid (LFA) in patients with advanced carcinoma of the digestive tract, and to assess the prognostic significance of MTX serum concentrations achieved in these patients. 94 patients affected by advanced carcinoma of the colon-rectum, stomach or biliary tract (47 of them previously untreated) received a regimen consisting of MTX 500 mg/m2 as a 2-h i.v. infusion on day 1, followed by LFA 250 mg/m2 as a 2-h i.v. infusion and 5-FU 600 mg/m2 as an i.v. bolus on day 2. Cycles were repeated every 2 weeks. Treatment was administered until tumour progression or for a maximum of 24 courses. MTX serum level was assessed soon after and 24 h (24-h MTXs) after its infusion in 61 patients. One complete and 22 partial responses were obtained, giving an overall activity of 24% (95% confidence interval, 16-34%). Response rate was 30% in chemotherapy-naive patients (colorectal, 26%; gastric, 37%; and biliary-tract, 22%) and 19% in those previously treated (all with fluoropyrimidines). A poor performance status adversely affected the response and survival of patients. The toxicity of treatment was very mild, and occurrence of severe diarrhoea (11% of patients) and mucositis (3%) was lower than that reported with other modulations of 5-FU. A cut-off value of 24-h MTXs was identified as a strong prognostic indicator. Patients with 24-h MTXs > or = 2 microM had a significantly better probability of response (37% versus 5%; P = 0.032), longer progression-free survival (5.3 versus 2.3 months; P = 0.023) and overall survival (10.8 versus 8.3 months; P = 0.045) on multivariate analysis. In chemotherapy-naive colorectal cancer patients, those with 24-h MTXs > or = 2 microM had a response rate of 38% (3/8), with a 19.6-month median survival time, as compared to no responses (0/4) and a 9.9-month median survival in the group with a lower serum concentration. The achievement of such MTX serum levels yielded a 31% (4/13) response rate even in colorectal patients who had previously received a 5-FU-FA treatment.

Adenocarcinoma↗