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Biomedical subjects

A Kurose

Publications and source records attributed to A Kurose.

At least 19 recordsLinked to original sources

ATM activation and histone H2AX phosphorylation as indicators of DNA damage by DNA topoisomerase I inhibitor topotecan and during apoptosis.

Damage that engenders DNA double-strand breaks (DSBs) activates ataxia telangiectasia mutated (ATM) kinase through its auto- or trans-phosphorylation on Ser1981 and activated ATM is one of the mediators of histone H2AX phosphorylation on Ser139. The present study was designed to explore: (i) whether measurement of ATM activation combined with H2AX phosphorylation provides a more sensitive indicator of DSBs than each of these events alone, and (ii) to reveal possible involvement of ATM activation in H2AX phosphorylation during apoptosis. Activation of ATM and/or H2AX phosphorylation in HL-60 or Jurkat cells treated with topotecan (Tpt) was detected immunocytochemically in relation to cell cycle phase, by multiparameter cytometry. Exposure to Tpt led to concurrent phosphorylation of ATM and H2AX in S-phase cells, whereas G1 cells were unaffected. Immunofluorescence (IF) of the S-phase cells immunostained for ATM-S1981P and gammaH2AX combined was distinctly stronger compared to that of the cells stained for each of these proteins alone. However, because of the relatively high ATM-S1981P IF of G1 cells, the ratio of IF of S to G1 cells, that is, the factor that determines competence of the assay in distinction of cells with DSBs, was 2- to 3-fold lower for ATM-S1981P alone, or for ATM-S1981P and gammaH2AX IF combined, than for gammaH2AX alone. ATM activation concurrent with H2AX phosphorylation, likely triggered by induction of DSBs during DNA fragmentation, occurred during apoptosis. The data suggest that frequency of activated ATM and phosphorylated H2AX molecules, per apoptotic cell, is comparable.

Antineoplastic Agents↗

Synchronization in the cell cycle by inhibitors of DNA replication induces histone H2AX phosphorylation: an indication of DNA damage.

Several methods to synchronize cultured cells in the cell cycle are based on temporary inhibition of DNA replication. Previously it has been reported that cells synchronized this way exhibited significant growth imbalance and unscheduled expression of cyclins A and B1. We have now observed that HL-60 cells exposed to inhibitors of DNA replication (thymidine, aphidicolin and hydroxyurea), at concentrations commonly used to synchronize cell populations, had histone H2AX phosphorylated on Ser-139. This modification of H2AX, a marker of DNA damage (induction of DNA double-strand breaks; DSBs), was most pronounced in S-phase cells, and led to their apoptosis. Thus, to a large extent, synchronization was caused by selective kill of DNA replicating cells through induction of replication stress. In fact, similar synchronization has been achieved by exposure of cells to the DNA topoisomerase I inhibitor camptothecin, a cytotoxic drug known to target S-phase cells. A large proportion of the surviving cells 'synchronized' by DNA replication inhibitors at the G1/S boundary had phosphorylated histone H2AX. Inhibitors of DNA replication, thus, not only selectively kill DNA replicating cells, induce growth imbalance and alter the machinery regulating progression through the cycle, but they also cause DNA damage involving formation of DSBs in the surviving ('synchronized') cells. The above effects should be taken into account when interpreting data obtained with the use of cells synchronized by inhibitors of DNA replication.

Aphidicolin↗

Extent of constitutive histone H2AX phosphorylation on Ser-139 varies in cells with different TP53 status.

In response to DNA damage by genotoxic agents, histone H2AX is phosphorylated on Ser-139. However, during the cell cycle, predominantly in S and G(2)M phase, histone H2AX is also phosphorylated in untreated normal and tumour cells. This constitutive H2AX phosphorylation is markedly reduced by exposure of cells to the reactive oxygen species scavenger N-acetyl-L-cysteine. Therefore, it appears likely that constitutive H2AX phosphorylation reflects the ongoing oxidative DNA damage induced by the reactive oxygen species during progression through the cell cycle. Because the tumour suppressor p53 (tumour protein p53) is known to induce transcription of genes associated with cell response to oxidative stress, we have compared the intensity of constitutive H2AX phosphorylation, and the effect of N-acetyl-L-cysteine on it, in cells with different tumour protein p53 status. These were human lymphoblastoid cell lines derived from WIL2 cells: TK6, a p53 wt line, NH32, a tumour protein p53 knock-out derived from TK6, and WTK1, a WIL2-derived line that expresses a homozygous mutant of tumour protein p53. Also tested were the tumour protein p53-null promyelocytic HL-60 cells. The degree of constitutive H2AX phosphorylation was distinctly lower in NH32, WTK1 and HL-60 compared to TK6 cells in all phases of the cell cycle. Also, the degree of attenuation of constitutive H2AX phosphorylation by N-acetyl-L-cysteine was less pronounced in NH32, WTK1, and HL-60, compared to TK6 cells. However, the level of reactive oxygen species detected by the cells' ability to oxidize carboxyl-dichlorodihydrofluorescein diacetate was not significantly different in the cell lines studied, which would suggest that regardless of tumour protein p53 status, the level of oxidative DNA damage was similar. The observed higher level of constitutive H2AX phosphorylation in cells harbouring wt tumour protein p53 may thus indicate that tumour protein p53 plays a role in facilitating histone H2AX phosphorylation, an important step in the mobilization of the DNA repair machinery at the site of DNA double-strand breaks.

Acetylcysteine↗

Simultaneous quantification of prostaglandins in human synovial cell-cultured medium using liquid chromatography/tandem mass spectrometry.

A liquid chromatographic-tandem mass spectrometric (LC/MS-MS) method was developed for the simultaneous quantification of prostaglandin (PG) E(2), PGF(2alpha), 6-keto-PGF(lalpha) and thromboxane (TX) B(2). These eicosanoids and their deuterium derivatives, using as internal standards, were extracted by solid-phase extraction and analyzed using LC/MS-MS in the selected reaction-monitoring (SRM) mode. A good linear response over the range of 10 pg to 10 ng for each eicosanoid was demonstrated. The accuracy of added eicosanoids ranged from 94.1 to 106.6% and coefficients of variation ranged from 0.62 to 7.8%. Furthermore, we applied this method for the determination of eicosanoids in the human synovial cell-cultured medium, stimulated by lipopolysaccharide (LPS). LPS produced each eicosanoid and they increased in a time-dependent manner. The production levels after 24 h stimulation were 6-keto-PGF(1alpha) > PGE(2) > TXB(2) >> PGF(2alpha). This simultaneous quantification method is so useful to clarify the function of synovial cells in rheumatoid arthritis (RA).

Calibration↗

Effects of paclitaxel on cultured synovial cells from patients with rheumatoid arthritis.

BACKGROUND: Proliferation of synovial cells is considered to play a key role in rheumatoid arthritis (RA). Using paclitaxel, a unique antineoplastic agent known to suppress collagen-induced arthritis, we conducted an in vitro study of cell kinetics on cultured synovial cells from patients with RA. METHODS: Alterations of the cell cycle of cultured fibroblast-like synovial cells (FLSs) from patients with RA were studied using flow cytometry and laser scanning cytometry. Apoptosis and accumulation of cyclin concerning effects of paclitaxel were detected. RESULTS: Paclitaxel induced arrest of the cell cycle at G2/M phase and apoptosis in FLSs. The late stage of apoptosis was determined by the positivity of terminal deoxynucleotidyl transferase assay. Morphological observation by combined usage of both annexin V and propidium iodide on FLSs on a slide glass showed early apoptotic changes in detail. FLSs arrested at G2/M phase showed marked accumulation of cyclin B1. The effects of paclitaxel decreased on FLSs, which diminished proliferative activity. CONCLUSIONS: These data indicate that paclitaxel induces cell arrest at G2/M phase followed by apoptosis in human FLSs, which have high proliferative activity, and possible therapeutic effects of paclitaxel on RA.

Adult↗

Genetic changes in colorectal carcinoma tumors with liver metastases analyzed by comparative genomic hybridization and DNA ploidy.

BACKGROUND: Liver metastases are found in 10% of primary colorectal malignancies, and they affects the prognosis of patients with colorectal carcinoma. The authors investigated DNA copy number aberrations by using comparative genomic hybridization (CGH) and DNA ploidy alterations by using flow cytometry (FCM) in patients with primary colorectal carcinoma (primary tumors). To determine whether there are characteristic DNA copy number alterations that contribute to liver metastasis, cytogenetic aberrations were examined by CGH and FCM. METHODS: The authors analyzed 35 primary tumors, including 16 primary tumors with liver metastasis, by using CGH and FCM. RESULTS: Increases in DNA copy numbers were detected in 6q (5 of 16 tumors), 7q (6 of 16 tumors), 8q (7 of 16 tumors), 9p (5 of 16 tumors), 13q (8 of 16 tumors), 20p (9 of 16 tumors), and 20q (15 of 16 tumors) in primary tumors with liver metastases. Decreases in DNA copy numbers were found in 17p (5 of 16 tumors), 18p (6 of 19 tumors), 18q (8 of 16 tumors), and 22q (5 of 16 tumors). In contrast, primary tumors without liver metastasis showed gains in chromosome arms 8q (2 of 19 tumors), 13q (2 of 19 tumors), 20p (6 of 19 tumors), and 20q (5 of 19 tumors); however, they showed no gains in 6q or 7q and showed losses in chromosome arms 17p (2 of 19 tumors), 18p (4 of 19 tumors), 18q (6 of 19 tumors), and 22q (5 of 19 tumors). There was a significant difference in the frequency of DNA copy number gains and losses in 6q (P < 0.05), 7q (P < 0.01), 8q (P < 0.05), 13q (P < 0.05), and 20q (P < 0.01), respectively, between primary tumors with and without liver metastases. The differences in the DNA index were not significant between the two groups of primary tumors. CONCLUSIONS: In liver metastases of primary tumors from patients with colorectal carcinoma, a correlation between DNA copy number aberrations and gains of chromosome arms 6q, 7q, 8q, 13q, and 20q is suggested.

Chromosome Aberrations↗

Desmoplastic cerebral astrocytoma of infancy intermingling with atypical glial cells.

Despite the rarity of desmoplastic cerebral astrocytoma of infancy (DCAI), it has distinct clinical and pathological features. The present case is a typical DCAI except for its detection and operational age and intermingling with pleomorphic glial cells. In this case, although a cystic lesion of the right temporal lobe was noticed when the patient was 6 months old, it was not regarded as a tumor and wasn't removed until he was 9 years old. It is quite unusual that a DCAI was able to exist in the cerebrum for 9 years. However, no metastasis occurred and distinct macroscopic and microscopic features of the tumor were not different from typical DCAI except for an intermingling with pleomorphic glial cells. Furthermore, even in the pleomorphic areas, the absence of necrosis and an MIB-1 index of 2.9% indicated non-aggressive growth. These features of the present case may provide additional information as to the character of DCAI, which generally has a favorable prognosis.

Antigens, Nuclear↗

Dilated cardiomyopathy in Noonan's syndrome: a first autopsy case.

The first autopsy case of dilated cardiomyopathy associated with Noonan's syndrome is described. A 9-month-old girl with Noonan's syndrome died from cardiac failure. Autopsy showed biatrial and biventricular enlargement of the heart. The posterior half of the ventricular septum and right ventricular wall were remarkably thin. Other parts of the wall were nearly normal in thickness, but both ventricular cavities were dilated. Microscopically, the myocardium of both ventricles consisted of mainly abnormally thinned, elongated, and loosely arranged myocardial fibers lacking immunoreactivity to anti-dystrophin antibody. Myocardial disarray was not found except for where it normally existed. The abnormal changes of the myocardial fibers were considered to be primary. Common cardiomyopathy associated with Noonan's syndrome is a hypertrophic type. Various types of cardiovascular abnormality associated with Noonan's syndrome, including dilated cardiomyopathy, might be disclosed by further investigation and precise diagnosis of Noonan's syndrome.

Cardiomyopathy, Dilated↗

Thrombin inhibitor ameliorates secondary damage in rat brain injury: suppression of inflammatory cells and vimentin-positive astrocytes.

The effects of the thrombin inhibitor argatroban on the number of inflammatory cells and reactive astrocytes were investigated in a rat brain injury model. Gelatin sponge soaked with thrombin inhibitor (treatment group) or saline (control group) was placed in the brain defect to assess the infiltration of inflammatory cells by hematoxylin-eosin and immunohistochemical staining. Expression of polymorphonuclear leukocytes (PMNs) and monocyte/macrophage (Mo/Mo) cells, and vimentin (VIM)-positive astrocytes and glial fibrillary acidic protein (GFAP)-positive astrocytes were compared between groups. In the treatment group, infiltration of both PMNs and Mo/Mo cells, and the number of VIM-positive astrocytes were significantly reduced, but the number of GFAP-positive astrocytes was not different from the control group. Thrombin inhibitor suppresses the infiltration of inflammatory cells and excessive gliosis caused by VIM-positive astrocytes, but not expression of GFAP-positive astrocytes, suggesting minimization of secondary brain damage and promotion of the conditions required for neural regeneration.

Animals↗

Laser scanning cytometry allows detection of cell death with morphological features of apoptosis in cells stained with PI.

Laser scanning cytometry (LSC), a newly developed technology, allowed simple detection of dead cells with morphological features of apoptosis for cells stained with only propidium iodide (PI). HeLa cells were treated with Adriamycin (ADM, 0.5 or 1.0 microgram/ml). A PI fluorescence value (representing DNA content) versus PI fluorescence peak (representing chromatin condensation) cytogram of LSC made it possible to segregate cells with high PI fluorescence peak from others in a cell population and concomitantly to analyze the relationship between the cells and the cell cycle. A fraction of the cells manifesting hypercondensation of chromatin was exclusively present in a cell population treated with ADM. Visual inspection of the cells defined in the cytogram revealed morphological features of apoptosis. LSC analysis facilitates monitoring effects of anticancer drugs on a cell population, because nuclear DNA staining with PI is simple and rapid.

Antibiotics, Antineoplastic↗

Sample preparation from paraffin-embedded tissue specimens for laser scanning cytometric DNA analysis.

We have developed a simple, rapid method for isolating cells from a block of formalin-fixed, paraffin-embedded tissue specimen for laser scanning cytometric (LSC) DNA analysis by using a grater. The scraping-like tissue samples were obtained by grating a paraffin-embedded tissue block. The grated samples were collected, put into a small plastic tube, and deparaffinized with xylene. Subsequently, the samples were immersed in 100% ethanol to remove the xylene. After using a syringe with a 26-gauge needle and filtering through 40-microm nylon mesh, the cells suspended in ethanol were dropped directly onto a glass slide. As a result, isolated cells adhered tightly to the glass slide. The slides mounted with isolated cells were treated with 0.1% pepsin in 0.1 N HCl for 1 h at 37 degrees C and then 0.1% RNase for 10 min at room temperature. The slides were dipped in propidium iodide (25 microg/ml) to stain DNA and sealed with nail varnish. The coefficients of variation for histograms were small enough to detect an aneuploid peak close to the diploid peak.

Aneuploidy↗

Methods for automatic multiparameter analysis of fluorescence in situ hybridized specimens with a laser scanning cytometer.

Multiparameter laser scanning cytometry has been applied to the automatic counting of probe spots and the simultaneous measurement of cellular DNA for fluorescence in situ hybridization (FISH) prepared specimens counterstained with propidium iodide. Relatively low resolution imaging, highly variable probe fluorescence, spectral overlap of probe with counterstain fluorescence, and autofluorescence required the development of an image processing method to detect and isolate FISH probe spots. Inability to properly apportion detected probe spots because of overlapping probe spot images in the same cell required development of a method to eliminate cell data whenever spots in that cell could not be reliably isolated. Laser scanning cytometry incorporating these methods to determine per cell probe spot count and DNA is demonstrated on tissue cultures and peripheral blood cells using different centromeric FISH probes with either FITC or Spectrum Green labeling.

Cells, Cultured↗

Intracellular localization of cyclin B1 during the cell cycle in glioma cells.

We investigated cyclin B1 expression during the cell cycle in human glioma cells cultured under asynchronous growing condition by two cytometry techniques: flow cytometry (FCM) and laser scanning cytometry (LSC). FCM analysis revealed the specific accumulation of cyclin B1 in G2/M phase with a wide intercellular variation (Dunphy WG: Trend Cell Biol 4:202-207, 1994). It is noteworthy that LSC, which is characterized by rapid quantitative analysis followed by imaging, allows morphological observation of the intracellular distribution of cyclin B1 as a function of cell cycle position cell by cell (Hunter T: Cell 75:839-841, 1993). Cyclin B1 was virtually undetectable in cells from G0/G1 phase to mid S phase, but became visible in the cytoplasm in late S phase. As cells proceeded within G2 phase, the level of cyclin B1 rapidly increased in the perinuclear region of the cytoplasm, but cyclin B1 was still faintly present in the nucleus. Cyclin B1 appeared in the nucleus at the mitotic phase. Then the nuclear membrane was disrupted and cyclin B1 was distributed evenly in the cell. The level of cyclin B1 was maximum in metaphase. However, it abruptly degraded at the end of metaphase, and subsequently G1 cells were cyclin B1 negative.

Cell Cycle↗

DNA ploidy analysis by laser scanning cytometry (LSC) in colorectal cancers and comparison with flow cytometry.

We evaluated laser scanning cytometry (LSC) by comparing nuclear DNA ploidy determined by LSC and by flow cytometry (FCM) in 77 samples of human colorectal cancer from 48 patients. Both methods revealed an aneuploid peak in 30 (62.5%) of the cases, although two samples that were aneuploid by LSC were diploid by FCM and two others were diploid by LSC and aneuploid by FCM. The concordance rate for nuclear DNA ploidy was 91.7% in the 48 patients and 87.0% for the 77 samples. The DNA index was also highly correlated between two methods (r2 = 0.97, P < 0.001). We concluded that LSC provides DNA histograms equivalent to FCM for surgical specimens and has potential clinical application in pathology.

Aneuploidy↗

Immunohistochemical detection of p21waf1/cip1/sdi1 and p53 proteins in formalin-fixed, paraffin-embedded tissue sections of colorectal carcinoma.

Wild-type p53 protein is a critical participant in G1 cell cycle arrest through the induction of waf1/cip1/sdi1 gene product p21, but mutant p53 proteins have lost transcriptional activity. To know whether the view obtained from studies using cultured cells is adaptable to human solid tumors, the authors immunohistochemically stained p21 and p53 in formalin-fixed, paraffin-embedded tissue sections from 67 cases of colorectal carcinoma. Of these, 54 cancers showed positive staining of p53, whereas p21-positive cells were identified in 46 tumors. However, the proportion of cells positive for these proteins varied considerably among cases, and moreover wide variation in p21 immunoreactivity was noted within the same tumor. Although there was an inverse relationship between p21 and p53 staining in tumors, namely, p21-positive cells were p53 negative and vice versa, an intermingling of tumor cells expressing concomitantly both genes was noted in 34 (51%) of 67 tumors. In these tumors, both proteins were usually moderately stained, but tumor cells intensely coexpressing both were found in one sample. This study supports the notion that although p21 expression is regulated by p53 under physiological conditions, it can be regulated by an additional pathway(s) in solid malignant tumors.

Carcinoma↗

Monosomy of chromosome 18 detected by fluorescence in situ hybridization in colorectal tumors.

BACKGROUND: At least two different evolutional pathways of colorectal cancer, namely the adenoma-carcinoma sequence and de novo carcinogenesis, have been indicated. However, whether there is a difference between them in affected chromosomes and genes has not yet been elucidated. Chromosomal examination is expected to provide a clue to an answer to this question. In this study, the relation of aberrations in chromosome 18 to type of colorectal cancer was examined. METHODS: Numeric aberrations in chromosome 18 were investigated in 71 colorectal tumors by means of fluorescence in situ hybridization, using an alphoid satellite DNA probe specific for the pericentromeric region on chromosome 18. RESULTS: The loss of one chromosome 18 was found in 33% (6 of 18) of patients with early cancer, excluding those with cancer in an adenoma. The loss was frequent in early colorectal carcinomas without foci of adenoma (four of six patients, 67%), whereas monosomy 18 was not significant in those with foci of adenoma except for patients with a hereditary background. Specimens exhibiting monosomy 18 were macroscopically classified as flat lesions, but the converse was not true. No adenoma showed monosomy 18. It was encountered in 44% of nine cancers with invasion to the muscularis propria. However, no significant subpopulation of monosomy 18 was present in cancers penetrating through the serosa or adventitia in which polysomic populations were often identified alternatively. Furthermore, tetrasomy for this chromosome was exclusive in these advanced cancers. CONCLUSIONS: The loss of chromosome 18 is closely related to colorectal cancers without foci of adenoma.

Adenoma↗

Intratumoral regional heterogeneity of DNA ploidy patterns in colorectal carcinomas.

There is no agreement on the evaluation of intratumoral DNA ploidy heterogeneity, and its clinical significance remains controversial. We categorized intratumoral ploidy heterogeneity in an effort to avoid confusion and misunderstanding among investigators. We classified the heterogeneity into 3 major types (Types A, B and C) and a combined type (Type D), based on the intratumoral distribution profiles of DNA aneuploid lines identified by flow cytometry in 52 cases of colorectal cancer with intratumoral DNA ploidy heterogeneity selected from a consecutive series. Every carcinoma examined in this study fell into one of the 4 categories: Twenty-six tumors (50%) were classified as Type A, 6 (11%) as Type B, 2 (3%) as Type C, and 18 (36%) as Type D. We discussed the mechanisms of DNA ploidy heterogeneity evolution within a tumor, and also proposed a pathway to these types of DNA ploidy heterogeneity as an aid to understanding the relationship between tumor progression and DNA ploidy changes.

Carcinoma↗

Estimation of S-phase fraction in tumor tissue sections by immunohistochemical staining of PCNA.

We describe a method for measuring the size of the S-phase fraction in human tumor tissue sections using an antibody to PCNA (PC10). Although treatment with Triton X-100 before fixation extracted a large amount of PCNA from the cells even in frozen tissue sections, PCNA remained exclusively in S-phase cells. Immunohistochemical staining of PCNA after the detergent treatment allowed estimation of the S-phase fraction in solid tumors. The validity of the method was directly proven by double staining of bromodeoxyuridine (BrdU) and PCNA in HeLa cells. The PCNA-positive cells were identical with BrdUrd-positive cells after the detergent treatment. In contrast, almost all HeLa cells in the exponentially growing phase were positive for PC10 without treatment with Triton X-100.

Female↗