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Youngson Joe

Publications and source records attributed to Youngson Joe.

3 recordsLinked to original sources

Relative increase in leukemia-specific DNA in peripheral blood plasma from patients with acute myeloid leukemia and myelodysplasia.

Using loss of heterozygosity (LOH) and X-chromosome inactivation, we compared peripheral blood (PB) plasma with bone marrow (BM) cells in detecting genomic abnormalities in patients with acute myeloid leukemia (AML) and myelodysplastic syndrome (MDS). We detected LOH in the PB plasma of all 45 patients who had cytogenetically documented chromosomal abnormalities (5q-, 7-, +8, 17-, or 20-). BM cells from the same patients showed LOH in 89% of patients with MDS and 70% of patients with AML. Posttherapy samples from 16 of these patients demonstrated complete concordance between LOH and cytogenetics in detecting residual disease in 15 samples. Of the 16 samples, 4 showed LOH in plasma with normal BM morphology. Using X-chromosome inactivation, clonality was detectable in 19 (73%) of 26 BM samples, whereas all PB plasma samples showed clonality. These data support the conclusion that PB plasma is enriched by tumor-specific DNA and can replace BM cells for studying genomic abnormalities.

Adult↗

Use of plasma DNA in detection of loss of heterozygosity in patients with multiple myeloma.

BACKGROUND: Deletions or structural abnormalities in chromosomes 11 and 13 have been shown to be important in predicting clinical behavior in patients with multiple myeloma (MM). However, cytogenetic analysis in MM is frequently difficult because of poor yield of informative metaphases and the disease is frequently patchy, which complicates fluorescent in situ hybridization studies. OBJECTIVES: The purpose of this study was to explore the potential of using peripheral plasma DNA for the detection of loss of heterozygosity (LOH) in chromosomes 11 and 13 in patients with MM. METHODS: Peripheral blood (PB) plasma of 81 patients with MM, was used as a source of DNA for the detection of LOH at chromosomes 13q14 (D13S319 and D13AFMaw301wb5), and 11q21 (D11S2179) using polymerase chain reaction. RESULTS: Only 62 of the studied patients were informative for the two 13q microsatellite markers and 16 (26%) of these patients showed LOH. Only seven (11%) of 61 patients with informative D11S2179 microsatellite maker showed LOH. Purified plasma cells (PCs) from six bone marrow (BM) samples using anti-CD138-coated magnetic beads showed identical results to those detected in DNA isolated from PB plasma. Three patients with LOH underwent autologous BM transplantation, and two of three reverted to a normal state (no LOH) after transplantation. Seven of the patients with 13q LOH in PB plasma had <10% PCs (PCs) in their BM at the time of testing. CONCLUSION: PB plasma appears to be enriched by tumor-specific DNA and can be used to detect chromosomal abnormalities in patients with MM. Further studies are needed to establish the clinical relevance of this approach in comparison with other techniques.

Adult↗

Differences in CD33 intensity between various myeloid neoplasms.

We measured the concentration of CD33 antigen on the surface of cells in 315 bone marrow (BM) samples and 114 corresponding peripheral blood (PB) samples from patients with various leukemias (acute myeloid leukemia [AML], chronic myelogenous leukemia [CML], myeloproliferative disorder [MPD] other than CML, myelodysplastic syndrome [MDS]) and from control subjects. Overall CD33 intensity in total CD33+ cells was significantly higher in BM than in PB. CD33 intensity in total BM CD33+ cells differed significantly with the type of disease. The median number of CD33 molecules per cell was highest in AML, followed by MDS, CML, and control subjects and lowest in MPD. When only CD34+/CD33+ cells were examined, CD33 molecules per cell were highest in CD34+ cells in AML and lowest in MPD (P = .027). Patients with AML or MDS younger than 60 years had significantly higher intensity of CD33 expression on CD34+ cells than patients 60 years or older. Levels of CD33 intensity did not correlate with cytogenetics in patients with AML or MDS. There was no correlation between CD33 intensity and response to therapy or overall survival in 35 patients treated with protocols including Mylotarg. These data demonstrate variation in CD33 intensity between various leukemias.

Aminoglycosides↗