Biomedical subjects
M Mousseau
Publications and source records attributed to M Mousseau.
[One-step bilateral excision of cervical lymph nodes].
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[Biliary peritonitis. (Apropos of 24 observations)].
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[Long term results of portal hypertension surgery for alcoholic cirrhosis (73 cases)].
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[Ischemic necrosis of the stump after subtotal gastrectomy. (Apropos of 2 cases.)].
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[Permanent intubation of the cancerous esophagus. Limitations of indications].
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[Surgery on the irradiated breast].
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[Cirsoid aneurysm of the radix of the lower extremity. Exeresis and recovery].
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[Primary retroperitoneal fibrosis. Apropos of 2 cases].
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Lipid peroxidation products, and vitamin and trace element status in patients with cancer before and after chemotherapy, including adriamycin. A preliminary study.
Adriamycin is a potent chemotherapeutic agent used in the treatment of human neoplastic diseases. A major side effect limiting the use of this drug is its toxic effect on the heart. Several hypotheses have been proposed to explain the cardiotoxicity of Adriamycin. However, the most plausible hypothesis seems to be the reduction of Adriamycin and free radical production, which induces lipid peroxidation and oxidative damages in the heart. We have thus undertaken this preliminary study to investigate Adriamycin-induced lipid peroxidation by the measurement of plasma thiobarbituric acid reactant materials and antioxidant systems, namely glutathione content, glutathione peroxidase activity, and vitamin and trace element status, in patients with cancer before and after chemotherapy, including Adriamycin. The concentration of thiobarbituric acid reactant materials in plasma of patients with cancer was higher than in controls and was further increased after chemotherapy. Blood glutathione and plasma glutathione peroxidase activity, as well as plasma zinc and selenium in patients with cancer, were decreased, but not further modified by chemotherapy. However, only zinc and selenium levels reached a significant level. In contrast, plasma vitamin E and beta-carotene levels were not significantly increased in patients with cancer. Finally, plasma vitamin A and copper levels were not modified either in patients with cancer or by chemotherapy.
Can interleukin-2 reverse anthracyclin chemoresistance in metastatic soft tissue sarcoma patients. Results of a prospective phase II clinical trial.
Anthracyclin-based chemotherapy is the most efficient chemotherapy for advanced or metastatic soft tissue sarcoma (STS). Development of anthracyclin chemoresistance has been widely documented. In a previous clinical trial, we evaluated a possible reversal of anthracyclin chemoresistance after exposure to subcutaneous IL-2. The current phase II clinical study entered 17 proven metastatic STS patients, refractory to anthracyclin chemotherapy, who received IL-2, and subsequent anthracyclin-based chemotherapy. Subcutaneous IL-2 was administered at 18 million Units/day, 5 days a week for two consecutive weeks. Treatment was administered safely at the full dose for 16 out of 17 patients, and toxicity was mild. One patient had treatment stopped because of rapidly progressive disease. As soon as patients met biological and clinical criteria, chemotherapy was administered. The median delay was 12 days (2-23) from the end of IL-2 administration. Only 13 patients received anthracyclin chemotherapy after IL-2. The other 4 patients did not receive chemotherapy for progressive disease. One partial response was observed out of 13 evaluable patients (7.7% overall response, 95% confidence interval: 0.2 to 36). The overall response rate was 5.9% (95% CI: 0.15 to 29), so the study was stopped due to lack of efficacy. In previous and current studies, a few patients have developed restored anthracyclin chemosensitivity following exposure to IL-2. No conclusive evidence of IL-2 chemoresistance reversal was obtained from this study. Further investigations need to be performed with perhaps a larger group of more carefully selected patients using a different schedule and sequence of combined cytokines and chemotherapy.
[Abdominal intercostal hernia. Report of four cases (author's transl)].
The authors report 4 recent cases of abdominal intercostal hernia and in the light of other cases in the literature, discuss the clinical presentation of this curious and rare disease. Presenting all the characteritics of an uncomplicated hernia, abdominal intercostal hernia is an easy diagnosis on a single clinical examination. Further respiratory and digestive investigations are however essential before undertaking a surgical cure of this hernia at the limit of the thorax and abdomen. Treatment is purely surgical. Instead of the classical treatment by the direct approach, where the risk of relapse is important, one should prefer the transperitoneal approach with use of an inert supple prosthesis. This method gave excellent results with a follow-up of from 1 to 3 years.
[Ligation of the portal vein in a case of cirrhosis complicated by pylethrombosis].
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Coexpression of multidrug resistance involve proteins: a flow cytometric analysis.
Cross resistance to multiple natural cytotoxic products represents a major obstacle in myeloblastic acute leukaemia (AML). Multidrug resistance (MDR) often involves overexpression of plasma membrane drug transporter P-glycoprotein (PGP) or the resistance associated protein (MRP). Recently, a protein overexpressed in a non-PGP MDR lung cancer cell line and termed lung resistance related protein (LRP) was identified. These proteins are known to be associated with a bad prognosis in AML. We have developed a triple indirect labelling analysed by flow cytometry to detect the coexpression of these proteins. Since no cell line expressing all three antigens is known, we mixed K562 cells (resistant to Adriblastine, PGP+, MRP-, LRP-) with GLC4 cells (resistant to Adriblastine, PGP-, MRP+, LRP+) to create a model system to test the method. The antibodies used were UIC2 for PGP, MRPm6 for MRP and LRP56 for LRP. They were revealed by Fab'2 coupled with Fluoresceine-isothiocyanate, Phycoerythrin or Tricolor with isotype specificity. Cells were fixed and permeabilized after PGP labelling because MRPm6 and LRP56 recognize intracellular epitopes. PGP and LRP were easily detected. MRP is expressed at relatively low levels and was more difficult to detect because in the triple labelling the non specific staining was higher than in a single labelling. Despite the increased background in the triple labelling we were able to detect coexpression of PGP, MRP, LRP by flow cytometry. This method appears to be very useful to detect coexpression of markers in AML. Such coexpression could modify the therapeutic approach with revertants.
PKH26 probe in the study of the proliferation of chemoresistant leukemic sublines.
Proliferative status and multidrug resistance status are key predictors of therapeutic outcome in acute myeloid leukemia. Although classical methods for proliferative assessment such as tritiated thymidine or BrdUrd incorporation, are correlated with treatment outcome, they are time consuming and difficult to standardize. As an alternative, we have evaluated the use of a dye dilution method using PKH26 to determine rate and extent proliferation in drug sensitive and resistant cell lines. When cells labelled with this fluorescent membrane intercalating dye divide, each resulting daughter cell receives half of the dye. Using flow cytometric analysis, it is possible to estimate the number of cells having undergone different numbers of cell divisions. Four different questions were addressed in these studies: a) does PKH26 give stable and reproducible labelling? b) does labelling with PKH26 alter cellular proliferation characteristics? c) is PKH26 a substrate for PGP and MRP? d) does PKH26 labelling alter PGP expression and/or PGP activity? We found that PKH26 labelling is stable, reproducible and has no effect on cell proliferation. It does not modify PGP activity or expression, nor does it appear to be a substrate for PGP or MRP, since the rate of decrease in fluorescence intensity is similar for sensitive and resistant cells which are proliferating at the same rate. Using the dye dilution method, it is possible to simultaneously assess PGP, proliferative status, and level of PGP expression. We conclude that the methods developed here provide a simpler, more complete means for assessment of the effects of the drug therapy on sensitive and resistant cell populations in patients with hematologic malignancies.