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L C Chan

Publications and source records attributed to L C Chan.

At least 73 records · Page 4Linked to original sources

Absence of microsatellite instability in primary myelodysplastic syndrome.

Using polymerase chain reaction (PCR), we examined a panel of 10 microsatellite markers (BAT26, BAT40, D2S123, D4S171, D8S87, D10S197, D12S89, Tp53, D18S58, PLCpr) covering nine chromosomal arms for microsatellite instability (MSI) in 29 patients with primary MDS. Bone marrow DNA was compared with corresponding constitutional DNA derived from buccal epithelial cells. Apart from BAT26 and BAT40 that were mononucleotide (poly A) repeats, the others were dinucleotide (CA) repeats. The patients comprised 10 cases of refractory anemia (RA), three cases of refractory anemia with ringed sideroblasts (RARS), nine cases of refractory anemia with excess of blasts (RAEB), four cases of refractory anemia with excess of blasts in transformation (RAEBt), and three cases of chronic myelomonocytic leukemia (CMML). Serial samples were available in seven patients, in which four showed transformation into higher disease grade or acute myeloid leukemia (AML). Genetic alterations at one locus (three at D2S123, one at D4S171) were evident in four cases, and loss of heterozygosity at Tp53 was detected in one case. Accordingly, none of the 29 patients with primary MDS nor the seven with disease progression in this study exhibited MSI. This shows that MSI may not be important in the pathogenesis or progression of MDS in contrast to other genetic mechanisms, notably recurrent chromosomal abnormalities that dysregulate the expression or function of genes controlling cell growth, differentiation and apoptosis.

Aged↗

Immortalization of human prostate epithelial cells by HPV 16 E6/E7 open reading frames.

BACKGROUND: The exact pathogenesis for prostate cancer is not known. Progress made in prostate cancer research has been slow, largely due to the lack of suitable in vitro models. Here, we report our work on the immortalization of a human prostate epithelial cell line and show that it can be used as a model to study prostate tumorigenesis. METHODS: Replication-defective retrovirus harboring the human papillomavirus (HPV) type 16 E6 and E7 open reading frames was used to infect primary human prostate epithelial cells. Polymerase chain reaction, followed by Southern hybridization for the HPV 16 E6/E7, Western blot for prostatic acid phosphatase, telomeric repeat amplification protocol assay for telomerase activity, two-dimensional gels for cytokeratins, and cytogenetic analysis were undertaken to characterized the infected cells. RESULTS: The retrovirus-infected cell line, HPr-1, continued to grow in culture for more than 80 successive passages. Normal primary cells failed to proliferate after passage 6. HPr-1 cells bore close resemblance to normal primary prostate epithelial cells, both morphologically and biochemically. However, they possessed telomerase activity and proliferated indefinitely. Cytogenetic analysis of HPr-1 cells revealed a human male karyotype with clonal abnormalities and the appearance of multiple double minutes. CONCLUSIONS: The HPr-1 cells expressed prostatic acid phosphatase and cytokeratins K8 and K18, proving that they were prostate epithelial cells. They were benign in nude mice tumor formation and soft agar colony formation assay. The HPr-1 cell line is an in vitro representation of early prostate neoplastic progression.

Acid Phosphatase↗

Atypical chronic myeloid leukemia with der(20)t(17;20)(q21;q13).

We present a case of atypical chronic myeloid leukemia that developed blastic transformation four months after initial presentation, with the blast cells showing multilineage antigen expression. A novel karyotypic abnormality, der(20)t(17;20)(q21;q13), was found in bone marrow cells at diagnosis. The potential role of such an aberration in leukemogenesis is discussed.

Adult↗

Distinct leukemia phenotypes in transgenic mice and different corepressor interactions generated by promyelocytic leukemia variant fusion genes PLZF-RARalpha and NPM-RARalpha.

Acute promyelocytic leukemia (APL) is characterized by a specific chromosome translocation involving RARalpha and one of four fusion partners: PML, PLZF, NPM, and NuMA genes. To study the leukemogenic potential of the fusion genes in vivo, we generated transgenic mice with PLZF-RARalpha and NPM-RARalpha. PLZF-RARalpha transgenic animals developed chronic myeloid leukemia-like phenotypes at an early stage of life (within 3 months in five of six mice), whereas three NPM-RARalpha transgenic mice showed a spectrum of phenotypes from typical APL to chronic myeloid leukemia relatively late in life (from 12 to 15 months). In contrast to bone marrow cells from PLZF-RARalpha transgenic mice, those from NPM-RARalpha transgenic mice could be induced to differentiate by all-trans-retinoic acid (ATRA). We also studied RARE binding properties and interactions between nuclear corepressor SMRT and various fusion proteins in response to ATRA. Dissociation of SMRT from different receptors was observed at ATRA concentrations of 0.01 microM, 0.1 microM, and 1.0 microM for RARalpha-RXRalpha, NPM-RARalpha, and PML-RARalpha, respectively, but not observed for PLZF-RARalpha even in the presence of 10 microM ATRA. We also determined the expression of the tissue factor gene in transgenic mice, which was detected only in bone marrow cells of mice expressing the fusion genes. These data clearly establish the leukemogenic role of PLZF-RARalpha and NPM-RARalpha and the importance of fusion receptor/corepressor interactions in the pathogenesis as well as in determining different clinical phenotypes of APL.

Animals↗

Absence or low number of telomere repeats at junctions of dicentric chromosomes.

Human ovarian surface epithelial (HOSE) cells transfected with the E6 and E7 oncogenes of the human papilloma virus (PV) do not express measurable telomerase activity. Relative to untransfected control cells, HOSE-PV cells have an extended in vitro lifespan characterized by a very high frequency of telomeric associations (TAs) of chromosomes. In order to study the role of telomere shortening in the formation of TAs, we studied the telomere length in 120 dicentric chromosomes in HOSE-PV cells by using quantitative fluorescence in situ hybridization. Forty percent of the dicentric chromosomes had no fluorescence signal at the junction site, and in the remainder the fluorescence at the junction was less than at corresponding unjoined ends. These observations support a critical role of telomere shortening in the development of TAs and the subsequent genetic instability observed in a majority of tumor cells.

Cells, Cultured↗

Cytogenetics and molecular genetics of childhood leukemia.

Childhood leukemia is the commonest form of childhood cancer and represents clonal proliferation of transformed hemopoietic cells as a result of genetic changes. Molecular characterization of these changes, in particular chromosomal translocations, has yielded a wealth of information on the mechanisms of leukemogenesis. These findings have also allowed the development of sensitive assays for the identification of underlying molecular defects, which is applicable to disease diagnosis and to monitor response to treatment. Genetic alterations in childhood leukemia are powerful prognostic indicators. TEL-AML1 fusion and hyperdiploidy >50 chromosomes are associated with a good prognosis in childhood acute lymphoblastic leukemia, whereas BCR-ABL fusion and MLL rearrangements are associated with a poor prognosis. Hence cytogenetic and molecular genetic classification of childhood leukemia will significantly improve the ability of clinicians to predict therapeutic response and prognosis, which paves the way for risk stratification based on clinical and genetic features. Finally, deciphering of genetic lesions in leukemia has allowed elucidation of the molecular basis of current treatment, as typified by the success of all-trans retinoic treatment in acute promyelocytic leukemia, and has identified targets for novel therapeutic approaches. It is envisaged that efforts in characterization of molecular defects in childhood leukemia will ultimately be translated into better clinical outcome for patients.

Biomarkers, Tumor↗

Beta-fibrinogen gene G/A-455 polymorphism in relation to fibrinogen concentrations and ischaemic heart disease in Chinese patients with type II diabetes.

AIMS/HYPOTHESIS: We investigated the relation between the G/A-455 (Hae III) beta-fibrinogen gene polymorphism and plasma fibrinogen concentration and its role in ischaemic heart disease in 264 Chinese patients with Type II (non-insulin-dependent) diabetes mellitus and 182 non-diabetic control subjects. METHODS: The G/A-455 polymorphism was determined in genomic DNA using polymerase chain reaction and Hae III restriction enzyme digestion. Fibrinogen was measured with the Claus method. RESULTS: Fibrinogen concentrations were higher in diabetic patients (3.3 +/- 0.5 vs 2.5 +/- 0.9 g/l in controls, p < 0. 0001) and in women (p < 0.03 vs men). Allele frequency of the variant A allele was 27 % in both diabetic patients and control subjects' similar to findings in Caucasians. In control subjects, the AA genotype was associated with higher fibrinogen concentrations (2.8 +/- 0.38 g/l vs 2.5 +/- 0.5 in GG or GA, p < 0.03), contributing to 4 % of the variance in plasma fibrinogen. The genotype effect was smaller and not significant among non-smokers, women and diabetic patients. Higher fibrinogen concentrations and AA genotype frequency were found in diabetic patients with ischaemic heart disease (p < 0.05 and p < 0.005, respectively vs unaffected patients). In a multiple logistic regression model, AA genotype, age and mean arterial pressure were associated with ischaemic heart disease, with odds ratios of 4.19 (p < 0.01), 1.05 (p < 0.0001) and 1.03 (p < 0.03), respectively. CONCLUSION/INTERPRETATION: The G/A-455 polymorphism is a genetic determinant of fibrinogen concentrations and ischaemic heart disease in this Chinese cohort. It also interacts with environmental influences associated with smoking, the female sex and Type II diabetes in determining plasma fibrinogen concentrations. [Diabetologia (1999) 42: 1250-1253]

Age Factors↗

The role of trisomy 8 in the pathogenesis of chronic eosinophilic leukemia.

A case of chronic eosinophilic leukemia (CEL) manifesting as spinal cord compression by an extradural eosinophilic chloroma in a 32-year-old Chinese man was presented, who subsequently developed extramedullary transformation at the skin and then peritoneal cavity. Cytogenetic study of bone marrow cells at diagnosis showed a clonal karyotypic abnormality of trisomy 8 (+8), which on fluorescence in situ hybridization (FISH) was shown to be present in a clone of abnormal eosinophils, hence showing the neoplastic nature of the eosinophilic proliferation. There was another population of abnormal eosinophils that did not show +8. At blastic transformation, all blast cells in ascitic fluid were shown by FISH to harbor +8. These findings suggest that +8 in this case may have arisen from clonal evolution and is not the primary genetic event in leukemogenesis, but +8 most probably imparts a further survival advantage to the clone responsible for subsequent blastic transformation.

Adult↗

Trisomy 21 as the sole acquired karyotypic abnormality in acute myeloid leukemia and myelodysplastic syndrome.

We report five cases of myeloid disorders in which trisomy 21 (+21) was found as the sole acquired karyotypic abnormality, comprising two cases of acute myeloid leukemia (AML) and three cases of myelodysplastic syndrome (MDS). In this series, MDS patients with +21 presented as high grade disease, which included two cases of refractory anemia with excess of blasts (RAEB) and one case of refractory anemia with excess of blasts in transformation (RAEBt), and showed rapid disease progression. Significant thrombocytopenia was observed in all three patients, and bone marrow examination showed a marked reduction in megakaryocytes. AML patients with +21 included one case each of AML-M2 and M4. Despite the poor prognosis reported in AML patients with +21 as the sole abnormality, the patient in our series who was able to complete intensive treatment was cured of disease. The role of +21 in leukemogenesis is reviewed.

Acute Disease↗

Complex variant 15;17 translocations in acute promyelocytic leukemia. A case report and review of three-way translocations.

Complex variant 15;17 translocations are increasingly recognized in acute promyelocytic leukemia (APL). We report a novel three-way translocation in APL involving chromosomes 15, 17, and X in the form of t(X;17;15)(q13;q12;q21). Southern blot analysis showed retinoic acid receptor alpha (RARA) gene rearrangement at intron 2. Clinical and morphologic findings are typical of APL, and a complete remission was attained with a course of conventional chemotherapy. A review of three-way complex variants of 15;17 translocation in the literature reveals 21 published cases in addition to ours. PML/RARA fusion was observed in all 8 cases in which molecular genetic analysis had been performed. More cases need to be analyzed to determine if clustering to particular chromosomal bands occurs in variant translocations, and whether APL cases harboring complex 15;17 variants differ clinically from those with classical 15;17 translocation.

Adult↗

Tetraploid acute promyelocytic leukemia with large bizarre blast cell morphology.

We describe a case of atypical acute promyelocytic leukemia (APL) with a tetraploid clone and multiple karyotypic abnormalities in addition to the translocation (15;17)(q22;q21). Microscopically, the leukemic cells were highly heterogeneous in morphology and granularity, being bizarre and large in size compared with classical APL blasts. The patient responded to treatment with chemotherapy and all-trans-retinoic acid, at diagnosis and at relapse 10 months later. He is currently in clinical and molecular remission, 3 years after initial diagnosis. Tetraploidy in association with large and bizarre blasts has not been previously reported in APL. Although tetraploidy and complex karyotypic aberrations confer a poor prognosis in other types of acute myeloid leukemia, in the presence of t(15;17) they did not appear to affect the prognosis, inasmuch as the clinical features and treatment outcome in our case followed those of APL in general.

Adult↗