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S Lesage

Publications and source records attributed to S Lesage.

At least 55 records · Page 3Linked to original sources

Autologous bone marrow transplantation is feasible in patients with a prior history of invasive pulmonary aspergillosis.

We report on seven adult leukemic patients who were autografted in spite of a prior history of invasive pulmonary aspergillosis (IPA). Their median age was 41 years (range: 19-61); six patients were male and one female. All seven had acute myeloblastic leukemia (AML) and underwent an autologous marrow transplantation (ABMT) with a marrow purged in vitro by mafosfamide. IPA was suspected prior to ABMT on clinical and radiological features. CT scan confirmed nodular infiltrates and cavitations in six cases. Microbiological documentation consisted of: identification of the fungus from bronchoalveolar lavage: one case, positive antigenemia: one case, positive antibodies: two cases. Prior ABMT patients received amphotericin B for a median total dose of 1915 mg (range: 970-3300). No patient underwent surgery. The median time from diagnosis of IPA to ABMT was 7.3 months (range: 3-10). During ABMT all patients received prophylactic amphotericin B and itraconazole. No patient died from toxicity and no IPA reactivation was observed in any patients. Post-graft, itraconazole was kept on for a median of 3 months (range: 3-5). This study demonstrates that IPA occurring during the management of AML patients is not necessarily a contraindication to subsequent ABMT.

Acute Disease↗

Preparation and successful engraftment of purified CD34+ bone marrow progenitor cells in patients with non-Hodgkin's lymphoma.

From September 1992 to January 1994, we evaluated the use of the CEPRATE SC stem cell concentrator (CellPro, Inc, Bothell, WA) to select CD34+ cells from the bone marrow (BM) of 25 patients with non-Hodgkin's lymphoma in complete remission. This system uses the biotinylated 12.8 IgM MoAb to select CD34+ cells. Cells are retained on an avidin column and detached by agitation. Fifteen patients have been transplanted with the CD34+ purified fraction. The CD34+ purified fraction of the 25 processed BMs contained a median of 0.54% of the original nucleated cells in a volume of 5 to 10 mL. The median concentration of CD34+ cells was 49% (range, 12% to 80%), and the median enrichment of CD34+ cells was 33-fold (range, 9- to 85-fold). This selected CD34+ fraction retained 60% (range, 15% to 95%) of late granulocyte-macrophage colony-forming units (CFU-GM), 55% (range, 12% to 99%) of early CFU-GM, and 31% (range, 2% to 100%) erythroid burst-forming units (BFU-E) corresponding to median enrichments of 22-fold (range, 1- to 71-fold), 19-fold (range, 2- to 58-fold), and 14-fold (range, 2- to 200-fold), respectively. There was a correlation between immune phenotypes and progenitor cells. In the initial buffy-coat fractions, the percentage of CD34+ cells was correlated to the cloning efficiency of both late CFU-GM (P < .05) and early CFU-GM (P < .001). In the final selected fraction, there was a correlation between the percentage of CD34+/CD33- and the cloning efficiency of early CFU-GM (P < .05) and between the percentage of CD34+/CD33+ and the cloning efficiency of late CFU-GM (P < .05). Lymphoma cells positive for t(14; 18) were found by polymerase chain reaction in 9 of 14 buffy coats tested before CD34+ cell purification. In 8 cases, the CD34(+)-selected fraction was found to be negative, and the CD34- fraction was found to be positive. After cryopreservation, the recoveries of progenitor cells in the CD34(+)-purified fraction were 79% for late CFU-GM, 71% for early CFU-GM, and 73% for BFU-E. The 15 patients transplanted with the concentrated CD34+ fraction received a median dose of 1 x 10(6) CD34+ cells/kg (range, 0.3 to 2.96) and 10.62 x 10(4) early CFU-GM/kg (range, 0.92 to 25.55). Median days to recovery to 0.5 x 10(9)/L neutrophils and 50 x 10(9)/L platelets were days 15 (range, 10 to 33) and 23 (range, 11 to 68), respectively.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Linkage analyses of the MODY3 locus on chromosome 12q with late-onset NIDDM.

Non-insulin-dependent diabetes mellitus (NIDDM) is a clinically and genetically heterogeneous disorder. Maturity-onset diabetes of the young (MODY), an autosomal dominant form of NIDDM, has been used as a model for genetic studies of NIDDM. We recently reported linkage between markers on chromosome 12q and diabetes in 25% of our French MODY families. To evaluate if this gene is also implicated in late-onset NIDDM, we performed linkage studies between two markers of the MODY region and diabetes in 172 families with late-onset NIDDM. Both parametric and nonparametric methods were used in a total of 600 affected sib-pairs. Linkage was rejected in this population by all methods, implying that the MODY gene on chromosome 12q is not a major gene for late-onset NIDDM in this population. However, we cannot exclude a modifying role in a polygenic disorder or an important role in some families.

Adult↗

Autologous bone marrow transplantation as consolidation therapy may prolong remission in newly diagnosed high-risk follicular lymphoma: a pilot study of 34 cases.

We evaluated early intensification followed by autologous bone marrow transplantation (ABMT) using marrow purged by mafosfamide in patients with high-risk low-grade follicular lymphoma (LGFL) reaching a status of minimal disease (MD). Thirty-four patients entered the program. All fulfilled at least one of the following criteria at diagnosis: a bulky tumor > 7 cm; three or more adenopathies > 3 cm; massive pleural or peritoneal effusion; massive splenomegaly; B symptoms; platelet count < 100 x 10(9)/l. Twenty-one patients had bone marrow involvement. Twenty-six patients received ACVBP, and eight CVP as front-line therapy. Twenty-one (62%) patients achieved MD status, 18 reached intensification. At 4 years, the time to treatment failure is 55 +/- 9%, and the probability of persisting remission is 75 +/- 11%. Comparison by intention to treat of the 26 patients who received ACVBP as front-line therapy to 14 historical high-risk LGFL similarly treated in our institution without intensification, showed better results for the intensified group (P = 0.04 for both probability of persisting remission and time to treatment failure). These results indicate that early intensification using marrow purged with mafosfamide is a therapeutic option which may bring benefit to patients with high-risk LGFL.

Adult↗

One hundred twenty-five adult patients with primary acute leukemia autografted with marrow purged by mafosfamide: a 10-year single institution experience.

A total of 125 acute leukemia adult patients were autografted with bone marrow (BM) purged by mafosfamide (ASTA Z) during the period of January 1983 to January 1993. The median follow-up period was 64 months (range, 3 to 126). There were 84 acute myeloblastic leukemias (AMLs) and 41 acute lymphoblastic leukemias (ALLs). At time of autologous BM transplantation (ABMT); 64 AMLs were in first complete remission (CR1), and 20 were in second CR (CR2); 35 ALL were in CR1, and 6 were in CR2. The median age of the patients was 33 years (range, 16 to 55). The median interval between achieving CR and autografting was 5 months (range, 1.3 to 23). The pretransplant regimen consisted of cyclophosphamide (120 mg/kg) and total body irradiation. All patients were grafted with autologous BM treated in vitro with mafosfamide used at levels individually adjusted in 95 patients and at a standard dose in 30 patients. The initial richness in granulomacrophagic progenitors (CFU-GM) of the harvested BMs was 5.16 x 10(4) CFU-GM/kg (range, 0.55 to 33). After mafosfamide purging, the residual CFU-GM number was 0.021 x 10(4)/kg (range, 0 to 1.78). The probability of successful engraftment was significantly higher and the time to engraftment was significantly shorter in ALL. Of 33 patients grafted with BM containing no residual CFU-GM, those with AML (n = 22) had platelet recoveries that were significantly longer than those for AML patients receiving BM with residual CFU-GM. At 8 years, patients autografted in CR1 for AML and ALL had a leukemia-free survival (LFS) of 58% and 56%, respectively, with a relapse incidence (RI) of 25% and 37%, respectively. Patients autografted in CR2 for AML had an LFS of 34% and an RI of 48% at 5 years. The incidence of late relapses was significantly higher in ALLs. By multivariate analysis, four factors were found to influence favorably engraftment in addition to a diagnosis of ALL, a younger age, ABMT performed in CR1, the adjusted dose technique of purging, and a shorter interval from CR to ABMT. Two factors were correlated with a better outcome. (1) The LFS was significantly higher and the transplant-related mortality significantly lower in patients who received richer BM. (2) The RI was significantly lower in patients autografted within 150 days from CR. Our results reinforce the view that ABMT is one approach to improve the outcome of adult patients with acute leukemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

In vivo effects of GM-CSF and IL-3 on hematopoietic cell recovery in bone marrow and blood after autologous transplantation with mafosfamide-purged marrow in lymphoid malignancies.

This retrospective study evaluates the impact of GM-CSF and interleukin 3 (IL-3) on bone marrow (BM) and peripheral blood (PB) cell recovery following autologous bone marrow transplantation (ABMT) with mafosfamide-purged BM in patients with lymphoid malignancies compared with a control group receiving no colony-stimulating factor. GM-CSF was administered at 250 micrograms/m2/day (8 patients) as a continuous infusion from day of autologous BMT until the absolute neutrophil count (ANC) reached 0.5 x 10(9)/l for 7 days or until day 30, whichever was first. IL-3 was administered daily starting on the first day of transplant at a dose of 1 microgram/kg/day (6 patients) and 5 micrograms/kg/day (6 patients) for 30 days. CFU-GM and BFU-E were sequentially evaluated in BM and PB at days 7, 14, 21, 28, and 56 post-graft. The neutrophil recovery (ANC > 0.5 x 10(9)/l) was significantly faster in the GM-CSF group compared with IL-3 5 micrograms, IL-3 1 microgram and control group (respectively, days 15, 21, 22, 24) (p < 0.05 to p < 0.01). Similarly, leukocyte recovery was faster in the GM-CSF group compared with control and IL-3 1 microgram groups (p < 0.01 and p < 0.05). No difference was noticed between the two IL-3 groups. Although no difference was observed in platelet recoveries (> 50 x 10(9)/l), it appeared that the GM-CSF group required more units of platelets than either the IL-3 1 microgram or 5 micrograms groups (p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Autologous bone marrow transplantation in ALL: relapse linked to infusion of tumor cells with the back-up marrow.

A 41-year-old female patient with a pre-B ALL expressing 2 BCR/ABL transcripts e1/a2 and b2/a2 underwent autologous bone marrow transplantation (aBMT) with marrow grown in long-term culture (LTC) for consolidation of remission (CR). After failing to engraft on day 54 she received her back-up marrow. She engrafted by day 23 and developed a full-blown leukemic relapse 2 weeks later. She died from tumor progression 3 months after infusion of the backup marrow. Analysis of the BCR/ABL transcripts weakly positive at time of collection of the backup marrow, negative in the LTC marrow and in the patient after infusion of the LTC marrow, again positive from day 29 after infusion of the backup marrow until death, strongly suggests that infusion of residual tumor cells with the backup marrow contributed to the relapse.

Adult↗

[Positive selection of hematopoietic CD 34 stem cells for autograft].

The CD 34 antigen is a glycoprotein found on the surface of hematopoietic stem cells and early committed progenitors. The CE 34 stem cells from 14 samples of bone marrow, cord blood or leucapheresis were isolated using a positive selection procedure involving an anti CD 34 biotinylated monoclonal antibody and an avidin immunoabsorption device. Results showed that in 60 percent of samples, the positively-selected fractions contained more than 70 percent CD 34 cells. Concentration in CFU-GM and BFU-E progenitors increased 15 and 26 fold respectively in the CE 34 enriched samples. Long-term culture of two samples demonstrated that nearly all of the most immature progenitors were recovered in the procedure. These preliminary results showed that the positive selection technique of CD 34 hematopoietic stem cells is now available for use in autologous or allogeneic hematopoietic stem cell transplantation.

Antigens, CD↗

Treatment of adult chronic autoimmune thrombocytopenic purpura with repeated high-dose intravenous immunoglobulin.

Intravenous (i.v.) infusions of Ig concentrates are an effective but expensive treatment for patients with autoimmune thrombocytopenic purpura (AITP). The optimal treatment protocol and the long-term results are uncertain, and the precise mechanism by which the platelet count increases is poorly understood. Twenty adult patients with chronic AITP were enrolled in a prospective study to compare the respective efficacy of two high-dose IVIgG induction regimens (1 g v 2 g/kg body weight) and the long-term effect of six 1 g/kg body weight i.v. IgG reinfusions. An initial response was observed in all 18 evaluable patients: the platelet count increased to a mean value of 251 x 10(9)/L (range 72 to 836 x 10(9)/L) and the mean pretreatment platelet count was multiplied by 14.6. No difference in efficiency was observed between the two i.v. IgG dosages. The degree of the platelet count increment correlated in both groups with the increase in the clearance of antibody-coated red blood cells, measured by an isotopic method, but not with the serum IgG elevation. Treatment was considered to have failed in 11 patients, 90 days after the last i.v. IgG reinfusion (D90), because the platelet counts were comparable with pretreatment values. In contrast, a complete response was observed at D90 in five patients (mean platelet count: 184 x 10(9)/L; range: 150 to 250 x 10(9)/L) and a partial response at D90 was obtained in the remaining two patients (platelet counts: 70 and 104 x 10(9)/L). Five of the 7 responders at D90 kept a platelet count above 50 x 10(9)/L during the entire follow-up period (mean 33 months; range: 5 to 66) with no further treatment; unfortunately, no clinical or biologic criteria were found to be predictive of the long-term response. This study shows that an i.v. IgG infusion regimen of 1 g/kg body weight could safely replace the classical 2 g/kg body weight dosage, at least in patients who do not have life-threatening thrombocytopenia. Moreover, repeated i.v. IgG reinfusion could be an alternative for AITP patients in whom splenectomy is contraindicated.

Adult↗

Familial hyperglycemia due to mutations in glucokinase. Definition of a subtype of diabetes mellitus.

BACKGROUND AND METHODS: Non-insulin-dependent diabetes mellitus (NIDDM) is a genetically heterogeneous disorder. Maturity-onset diabetes of the young, a form of NIDDM with an early age of onset and autosomal dominant inheritance, can result from mutations in glucokinase, a key enzyme of glucose metabolism in beta cells and the liver. We studied 32 French families with maturity-onset diabetes of the young as well as 21 families with late-onset NIDDM to determine the frequency and clinical features of mutations of glucokinase. Fasting plasma glucose concentrations and oral glucose-tolerance tests were used to determine metabolic status. DNA was isolated from lymphocytes, and DNA polymorphisms in the glucokinase gene were tested for linkage with diabetes. Individual exons of the glucokinase gene from one affected member in each family were amplified by the polymerase chain reaction and screened for mutations by analysis of the conformation-dependent polymorphisms of single-stranded DNA and by DNA sequencing. RESULTS: We found substantial evidence of linkage between the glucokinase locus and maturity-onset diabetes of the young but not between this locus and late-onset NIDDM: Sixteen mutations were identified in 18 of the 32 families with maturity-onset diabetes of the young, but none were found in families with late-onset NIDDM: They included 10 mutations that resulted in an amino acid substitution, 3 that resulted in the synthesis of a truncated protein, and 3 that affected RNA processing. The affected subjects with glucokinase mutations usually had mild hyperglycemia that began during childhood, whereas in subjects with maturity-onset diabetes of the young not due to glucokinase mutations, hyperglycemia usually appeared after puberty. CONCLUSIONS: Mutations in glucokinase are the primary cause of hyperglycemia in a substantial fraction of French patients with maturity-onset diabetes of the young and result in a relatively mild form of NIDDM that can be diagnosed in childhood.

Adult↗

Characterization of lymphocyte subpopulations in cord blood.

Twenty-seven cord blood samples from healthy newborns were processed according to a "whole blood" flow cytometric analysis. The CD3-positive T cells were a variable subpopulation representing 44.8 +/- 13.3% of lymphocytes. The majority of the CD3+ cells are CD38+. Newborn T cells have lower levels of both IL-2 receptors and HLA-DR than do adult T cells. The CD4-positive T cells represented 31.0 +/- 10.8% of lymphocytes with a great prevalence of the CD4+/CD45RA+ population. The CD3+/CD8+/CD11b+ cells are increased to 23.4 +/- 7.1% of lymphocytes. The CD57 antigen is not expressed. The NK population, CD16+/CD56+, is increased to 25 +/- 11% of lymphocytes. Of CD19+ cord blood B lymphocytes 68% coexpressed CD5. Thus "suppressive" and "naive" cells are prominently represented in cord blood.

Antigens, CD↗

Deletion of the donor splice site of intron 4 in the glucokinase gene causes maturity-onset diabetes of the young.

Missense and nonsense mutations in the glucokinase gene have recently been shown to result in maturity-onset diabetes of the young (MODY), a subtype of non-insulin-dependent diabetes mellitus with early age of onset. Glucokinase catalyzes the formation of glucose-6-phosphate and is involved in the regulation of insulin secretion and integration of hepatic intermediary metabolism. Nucleotide sequence analysis of exon 4 and its flanking intronic regions of the glucokinase gene, in four hyperglycemic individuals of a MODY family, revealed a deletion of 15 base pairs, which removed the t of the gt in the donor splice site of intron 4, and the following 14 base pairs. This deletion resulted in two aberrant transcripts, which were analyzed by reverse transcription of RNA from lymphoblastoid cells obtained from a diabetic patient. In one of the abnormal transcripts, exon 5 is missing, while in the other, the activation of a cryptic splice site leads to the removal of the last eight codons of exon 4. This intronic deletion in a donor splice site seems to cause a more severe form of glucose intolerance, compared with point mutations described in glucokinase. This might be due to a more pronounced effect on insulin secretion.

Adult↗

Linkage analysis and molecular scanning of glucokinase gene in NIDDM families.

Mutations in the glucokinase gene are a major cause of maturity-onset diabetes of the young. To evaluate the contribution of this gene to the development of late-onset NIDDM, linkage analyses between DNA polymorphisms at the glucokinase locus and NIDDM were performed in 79 multigenerational French families. In addition, all exons and the islet promoter region of glucokinase gene from 1 affected member from each family as well as from 17 unrelated women with previous gestational diabetes were amplified by polymerase chain reaction and screened for mutations by single-strand conformational polymorphism and DNA sequencing. Linkage of glucokinase and NIDDM was significantly rejected under all models tested. However, in 1 family, the lod score was 2.30, and we found a nucleotide substitution at the position -30 in the islet promoter region that cosegregated with diabetes. The proband of this family was a gestational diabetic individual. No other mutation in glucokinase was found in the 79 NIDDM families. We identified a missense mutation (TGG257-->CGG257) in exon 7 of glucokinase gene from 1 of 17 women with gestational diabetes, which was present in all diabetic members of her family. This family is likely to be a cryptic maturity-onset diabetes of the young, as 4 younger members, carrying this mutation, were subsequently found to be hyperglycemic. In conclusion, no evidence was obtained to incriminate glucokinase as a major gene for late age of onset NIDDM. Diabetic families with mutations in glucokinase must be carefully investigated, to differentiate cryptic maturity-onset diabetes of the young from late-onset NIDDM. Furthermore, pregnancy reveals diabetes in women carrying a glucokinase defect.

Adolescent↗

Autologous bone marrow transplantation with marrow purged by mafosfamide in seven patients with myelodysplastic syndromes in transformation (AML-MDS): a pilot study.

Seven patients with acute myeloblastic leukemia (AML) occurring on myelodysplastic syndromes (MDS) were consolidated while in complete remission (CR) by autologous bone marrow transplantation (ABMT) with a marrow purged in vitro by mafosfamide. The median age of population was 44 years (range 39-55). MDS FAB diagnosis was established before progression to AML in five patients: refractory anaemia with excess of blast (RAEB) in three patients, RAEB in transformation (RAEB-t) in one patient, and chronic myelomonocytic leukemia (CMML) in one patient. In the remaining two patients, the diagnosis of MDS (as a secondary malignancy in one) was made retrospectively at time of overt AML. Three out the seven patients had karyotypic abnormalities. The median interval between the obtention of CR and ABMT was 7 months (range 6-18). One patient died from transplant related toxicity. Engraftment occurred at a median of 41 days (range 27-60), for white blood cells (> 10(9)/l) and 120 days (range 60-180) for platelets (> 50 x 10(9)/l). Four patients relapsed at 2.5, 6.8, and 25 months post-ABMT. Two patients are alive and well at 10 and 28 months, respectively. ABMT with marrow purged by mafosfamide is feasible in patients with AML following MDS with a prospect of cure. However, further studies are needed to assess the real value of this approach.

Adult↗

Human glucokinase gene: isolation, characterization, and identification of two missense mutations linked to early-onset non-insulin-dependent (type 2) diabetes mellitus.

DNA polymorphisms in the glucokinase gene have recently been shown to be tightly linked to early-onset non-insulin-dependent diabetes mellitus in approximately 80% of French families with this form of diabetes. We previously identified a nonsense mutation in exon 7 in one of these families and showed that it was the likely cause of glucose intolerance in this dominantly inherited disorder. Here we report the isolation and partial sequence of the human glucokinase gene and the identification of two missense mutations in exon 7, Thr-228----Met and Gly-261----Arg, that cosegregate with early-onset non-insulin-dependent diabetes mellitus. To assess the molecular mechanism by which mutations at these two sites may affect glucokinase activity, the crystal structure of the related yeast hexokinase B was used as a simple model for human beta-cell glucokinase. Computer-assisted modeling suggests that mutation of Thr-228 affects affinity for ATP and mutation of Gly-261 may alter glucose binding. The identification of mutations in glucokinase, a protein that plays an important role in hepatic and beta-cell glucose metabolism, indicates that early-onset non-insulin-dependent diabetes mellitus may be primarily a disorder of carbohydrate metabolism.

Adult↗

Biochemical and physiological studies on two T-kininogen species using monoclonal antibodies.

Rat T-kininogens were characterized in plasma, urine and liver slice incubation medium in different physiological conditions using monoclonal antibodies that allow to distinguish between the two forms of T-kininogen. T-kininogen purified from the plasma of both normal and inflamed Wistar and Sprague-Dawley rats was found to contain the two forms of T-kininogen, TI and TII, separated by non-denaturing polyacrylamide gel electrophoresis. The two forms were also found in the plasma of several strains of normal and inflamed rats, except in the plasma of the Buffalo rat which contained only TII-kininogen. The two forms of T-kininogen were also found in the media in which liver slices from inflamed and non-inflamed wistar rats had been incubated. The urine T-kininogen of normal rats was chiefly TI-kininogen, but both forms were found in the urine of inflamed rats. T-kininogen in the plasma of normal and inflamed rats was further characterized by chromatography on Con A-Ultrogel. In normal plasma, we observed a ratio of non-retained to retained T-kininogen of 0.41. The retained T-kininogen was eluted as two peaks, one eluted with 45 mM and the other with 120 mM alpha-methyl-D-glucoside. The ratio of non-adsorbed to adsorbed T-kininogen in inflamed Wistar rat plasma was 1.40 and the retained material was almost exclusively in a single peak, which eluted with 50 mM alpha-methyl-D-glucoside. The non-adsorbed and adsorbed fractions contained both forms of T-kininogen, but the protein bands in the non-retained fraction had greater mobilities on non-denaturing PAGE. SDS-PAGE analysis of T-kininogen deglycosylated by N-glycosidase F showed a major band with a molecular mass of 50 kDa, whereas the molecular mass of the native form was 66 kDa. We concluded that both forms of T-kininogen exist in the non-inflamed and the inflamed rat plasma, except for the Buffalo rat, and that T-kininogen displays a different chromatographic pattern on Con A-Ultrogel after inflammation suggesting altered glycosylation.

Amidohydrolases↗