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Biomedical subjects

Misa Nakamura

Publications and source records attributed to Misa Nakamura.

At least 19 recordsLinked to original sources

Lack of association between BRAF V600E mutation and mitogen-activated protein kinase activation in papillary thyroid carcinoma.

The BRAF V600E mutation has been identified in a high proportion of papillary thyroid carcinoma (PTC). In cell lines and a transgenic mouse model it has been demonstrated that the mutation constitutively activates the mitogen-activated protein kinase (MAPK) pathway but in human PTC samples its effects remain unexamined. Herein the correlation of BRAF mutation and MAPK activation was examined in 42 human PTC samples. Activating mutations of the BRAF gene and all three RAS genes were detected by polymerase chain reaction-direct sequencing, and RET/PTC1 rearrangements were screened by nested reverse transcription-polymerase chain reaction. MAPK activation was assessed by immunohistochemistry and western blot analysis. Twenty-eight cases (66.7%) of BRAF V600E mutation, three cases (7.1%) of RET/PTC1 rearrangement but no cases of RAS genes mutation were identified. Activated MAPK was found in six cases (14.3%) with only two cases of mutant BRAF. In total 7.1% of PTC with BRAF mutation had activated MAPK. Furthermore, BRAF mutations were more prevalent in patients > or =45 years, but did not correlate with aggressive clinical behaviors. Absence of association between BRAF mutation and activation of MAPK pathway in PTC suggests the presence of mechanisms that downregulate MAPK activation.

Adult↗

Expression of calcitonin receptor in rat mammary gland during lactation.

Calcitonin (CT) and calcitonin receptor (CTR) have been reported to play an important role in mammary tissue during pregnancy, lactation, and involution. In the present study, the expression and distribution of CTR mRNA in rat mammary tissue during pregnancy and lactation were investigated. As measured by real-time RT-PCR, CTR mRNA levels were increased only slightly during pregnancy, but increased markedly immediately postpartum and remained elevated through lactation, with the highest levels observed 14 days postpartum. In situ hybridization analysis showed that intense CTR mRNA signals were detected in the whole mammary gland. We performed immunohistochemistry to determine distribution of CTR in the mammary epithelium. CTR has been reported to act as an amylin receptor when heterodimerized with receptor activity modifying protein-1 (RAMP1) or RAMP3. mRNA expression of RAMP1 and RAMP3 in mammary tissue decreased during pregnancy and lactation, and amylin mRNA was undetectable, suggesting that up-regulated CTR in lactating mammary tissues binds CT rather than amylin. In primary cultures of mammary cells isolated from rat dams 14 days postpartum, CT produced a statistically significant decrease in thymidine incorporation. These results suggest that up-regulation of CTR during lactation may contribute to inhibition of mammary epithelial cell proliferation.

Animals↗

Nitric oxide in breast cancer: induction of vascular endothelial growth factor-C and correlation with metastasis and poor prognosis.

PURPOSE: Metastasis to regional lymph nodes through the lymphatic vessels is a common step in the progression of cancer. Recent evidence suggests that tumor production of vascular endothelial growth factor-C (VEGF-C) promotes lymphagiogenesis, which in turn promotes lymphatic metastasis. Nitric oxide (NO) may also increase metastatic ability in human cancers. EXPERIMENTAL DESIGN: Nitrite/nitrate levels and VEGF-C production were assessed in MDA-MB-231 breast cancer cells after induction and/or inhibition of NO synthesis. Formation of nitrotyrosine, a biomarker for peroxynitrate formation from NO in vivo, was analyzed in primary human breast carcinoma with long-term follow-up. The relationship between nitrotyrosine levels and lymph node status, VEGF-C immunoreactivity, and other established clinicopathologic variables, as well as prognosis, was analyzed. RESULTS: Production of nitrite/nitrate and VEGF-C in MDA-MB-231 cells was increased by treatment with the NO donor DETA NONOate. The NO synthase inhibitor N(G)-nitro-l-arginine methyl ester eliminated this increase. High-grade nitrotyrosine staining was observed in 57.5% (65 of 113) of the invasive breast carcinomas. Nitrotyrosine levels were significantly correlated with VEGF-C immunoreactivity and lymph node metastasis. Survival curves determined by the Kaplan-Meier method showed that high nitrotyrosine levels were associated with reduced disease-free and overall survival. In multivariate analysis, high nitrotyrosine levels emerged as a significant independent predictor for overall survival. CONCLUSIONS: Our data showed a role for NO in stimulating VEGF-C expression in vitro. Formation of its biomarker nitrotyrosine was also correlated with VEGF-C expression and lymph node metastasis. Furthermore, high nitrotyrosine levels may serve as a significant prognostic factor for long-term survival in breast cancer.

Alkenes↗

Nitric oxide in papillary thyroid carcinoma: induction of vascular endothelial growth factor D and correlation with lymph node metastasis.

PURPOSE: Vascular endothelial growth factor-D (VEGF-D) plays an important role in lymph node metastasis via lymphangiogenesis in papillary thyroid carcinoma (PTC). Although PTC metastasizes to regional lymph nodes at a high frequency, the regulation of VEGF-D expression is largely unknown. EXPERIMENTAL DESIGN: Nitrite/nitrate levels and VEGF-D production were assessed in K1 papillary thyroid carcinoma cells after induction and/or inhibition of nitric oxide (NO) synthesis. Formation of nitrotyrosine, a biomarker for peroxynitrate formation from NO in vivo, was analyzed in primary human PTC. RESULTS: The production of nitrite/nitrate and VEGF-D in K1 cells was increased by treatment with the NO donor, (Z)-1-[N-(2-aminoethyl)-N-(2-ammonioethyl)amino]diazen-1-ium-1,2-diolate (DETA NONOate). The NO synthase inhibitor N(G)-nitro-l-arginine methyl ester inhibited the increase in nitrate/nitrite and eliminated the increase in VEGF-D. High-grade nitrotyrosine staining was observed in 51.8% (29 of 56) of PTCs. Nitrotyrosine levels were significantly correlated with VEGF-D immunoreactivity and lymph node metastasis. CONCLUSIONS: Our data showed a role for NO in stimulating VEGF-D expression in vitro. The formation of its biomarker, nitrotyrosine, was also correlated with VEGF-D expression in human PTC. NO may induce lymph node metastasis via VEGF-D stimulation in PTC.

Adolescent↗

Myoepithelial carcinoma arising in an adenomyoepithelioma of the breast: case report with immunohistochemical and mutational analysis.

Adenomyoepithelioma (AME) of the breast is an uncommon tumor characterized by biphasic proliferation of both epithelial and myoepithelial cells. In rare instances, the epithelial, the myoepithelial or both components of an AME may become malignant. Described herein is the case of a 69-year-old woman who presented with myoepithelial carcinoma of the breast in an AME. Malignancy of myoepithelial component (MEC) was evidenced by the presence of cytological atypia, high mitotic rate, necrosis and local invasion. Immunohistochemical study demonstrated strong expression of P53 and phosphorylated extracellular signal-regulated kinase 1/2 in MEC. Laser capture microdissection technique and mutational analysis further revealed point mutation of the p53 gene (T-->G transversion at codon 270) in this population, but not in glandular epithelial cells or adjacent normal ductal epithelium. No mutations in exons 1 and 2 of the K-, H-, and N-ras genes were identified in any of the neoplastic component. To the authors' knowledge this is the first report of a mutation in the p53 gene in a malignant AME of the breast.

Aged↗

Immunohistochemical analysis of thyroid-specific transcription factors in thyroid tumors.

Thyroid transcription factor 1 (TTF1), thyroid transcription factor 2 (TTF2) and paired box gene 8 (Pax8) are demonstrated to play a crucial role for the differentiation and organogenesis of thyroid follicular cells. Their roles in thyroid carcinogenesis are not very clear. Because dedifferentiation is a common process in thyroid carcinogenesis, thyroid-specific transcription factors seem also to be involving in thyroid carcinogenesis. The purpose of the present paper was to investigate their expression in a broad spectrum of follicular cell tumors in different degrees of differentiation, from well-differentiated benign follicular adenoma to anaplastic carcinoma. Medullary (C cell) carcinoma was also included in the investigation. Results of immunohistochemical staining showed that nuclear localization of these transcription factors was gradually decreased corresponding to the progressive dedifferentiation of thyroid tumors. Also, abnormal cytoplasmic accumulation of TTF2 and Pax8 was detected in many tumors samples, which may indicate a subtle regulation mechanism on the function of these transcription factors. In conclusion, abnormal expression of TTF1, TTF2 and Pax8 was closely related to thyroid tumorigenesis.

Adenoma↗

Adrenomedullin: a tumor progression factor via angiogenic control.

Adrenomedullin (ADM) is a 52-amino acid peptide with structural homology to calcitonin gene-related peptide (CGRP) initially isolated from human pheochromocytoma. ADM is synthesized and is secreted from many mammalian tissues, including the adrenal medulla, endothelial and vascular smooth muscle cells, as well as the myocardium and central nervous system. ADM has been implicated as a mediator of several diseases such as cardiovascular and renal disorders, sepsis, inflammation, diabetes and cancer. ADM is also expressed in a variety of tumors, including breast, endometrial and prostate cancer. ADM has been shown to be a mitogenic factor capable of stimulating growth of several cancer cell types. In addition, ADM is a survival factor for certain cancer cells and an indirect suppressor of the immune response. ADM plays an important role in environments subjected to low oxygen tension, which is a typical feature of solid tumors. Under these conditions, ADM is up regulated and acts as a potent angiogenic factor promoting neovascularization. The major focus of this review will be on the role of ADM in cancer, with emphasis on its utility in diagnostic and prognostic terms, along with its relevance as a therapeutic target.

Adrenomedullin↗

Calcitonin inhibits invasion of breast cancer cells: involvement of urokinase-type plasminogen activator (uPA) and uPA receptor.

There is a growing body of evidence indicating that calcitonin (CT) and calcitonin receptor (CTR) are involved in the regulation of cell growth, differentiation, and survival and in tissue development. However, the precise functional role of CT/CTR in breast cancer is still unknown. It is well established that the urokinase plasminogen activator (uPA) system plays an important role in breast cancer invasion and metastasis. The goal of this study was to investigate the effects of CT on regulation of the uPA system and invasive capacity of breast cancer cells. In the highly invasive MDA-MB-231 cell line, 10(-8) M CT decreased both uPA and uPAR mRNA and protein expression which was associated with inhibition of the extracellular signal-regulated kinase (ERK) 1/2 pathway. Furthermore, two weeks of CT administration to nude mice inhibited the expression of uPA mRNA in primary tumors by 25% (P<0.05), as compared to control, untreated animals. CT also inhibited the invasiveness of MDA-MB-231 cells by 37% (10(-8) M CT, P<0.05), as determined by a Matrigel invasion assay. To the best of our knowledge, this is the first report describing a direct effect of CT on breast cancer cell invasion. Our data might suggest a close link between CT signaling, the uPA-mediated pathway, and breast cancer invasion.

Animals↗

Endo180 binds to the C-terminal region of type I collagen.

Type I collagen is a fibril-forming heterotrimer composed of two alpha1 and one alpha2 chains and plays a crucial role in cell-matrix adhesion and cell differentiation. Through a comprehensive differential display screening of oncogenic ras target genes, we have shown that the alpha1 chain of type I collagen (col1a1) is markedly down-regulated by the ras oncogene through the mitogen-activated protein kinase pathway. Although ras-transformed cells are no longer able to produce and secrete endogenous collagen, they can still adhere to exogenous collagen, suggesting that the cells express a collagen binding factor(s) on the cell surface. When the region of col1a1 encompassing the C-terminal glycine repeat and C-prodomain (amino acids 1000-1453) was affinity-labeled with human placental alkaline phosphatase, the secreted trimeric fusion protein could bind to the surface of Ras-transformed cells. Using biochemical purification followed by matrix-assisted laser desorption/ionization mass spectrometry analysis, we identified this collagen binding factor as Endo180 (uPARAP, CD280), a member of the mannose receptor family. Ectopic expression of Endo180 in CosE5 cells followed by in situ staining and quantitative binding assays confirmed that Endo180 indeed recognizes and binds to placental alkaline phosphatase. The interaction between Endo180 and the C-terminal region of type I collagen appears to play an important role in cell-matrix adhesion.

Alkaline Phosphatase↗

Angiotensin II AT2 receptor localization in cardiovascular tissues by its antibody developed in AT2 gene-deleted mice.

In contrast to well-established physiological roles of the angiotensin II type 1 receptor (AT1), the significance of the type 2 receptor (AT2) remains largely unclear. AT2-knockout (AT2KO) mice have a phenotype associated with mild hypertension. This implies that AT2 has a role for the regulation of blood pressure. To gain insight into the mechanism by which AT2 regulates systemic blood pressure, we have investigated the expression of the AT2 receptor protein in adult rat cardiovascular tissues, using a newly developed polyclonal anti-AT2 antiserum that was successfully obtained in the AT2KO mice by immunizing with a peptide fragment of the receptor protein. In blood vessels, a stronger immunoreactivity was observed in endothelial cells than in the muscular media of resistant arteries. In the thoracic aorta, AT2 was observed only in muscular media. Abundant AT2 immunoreactivity was detected in perivascular nerve fibers. In the heart, positive immunostaining for AT2 was restricted to the coronary blood vessels. These data suggest that AT2 expressed in the vascular endothelial cells and muscular media in resistant arteries may play a pivotal role in systemic blood pressure regulation. AT2 was observed for the first time in the perivascular nerve fibers and may also play a role in neuronal blood pressure regulation.

Animals↗

Lymph vessel density correlates with nodal status, VEGF-C expression, and prognosis in breast cancer.

Metastasis to the regional lymph nodes through the lymphatic vessels is a common step in the progression of cancer and an important prognostic factor in many types of cancer. Recent evidence suggests that VEGF-C promotes lymphangiogenesis, and that tumor lymphangiogenesis in turn promotes lymphatic metastasis. We have studied the role of LVD in breast cancer, and examined whether LVD is associated with lymph node metastasis, VEGF-C expression, or prognosis. In addition, we examined whether VEGF-C mRNA transcript levels were associated with lymph node metastasis and LVD. We began by investigating the lymphatics in primary human breast carcinoma with long-term follow-up (113 cases of invasive ductal and other breast cancers) by quantitative immunohistochemical staining for podoplanin. We then analyzed the relationship between LVD and lymph node status as well as VEGF-C immunoreactivity and other established clinicopathological parameters. The relationship between LVD and prognosis was also studied. VEGF-C mRNA transcript levels were examined by quantitative real-time RT-PCR, in 55 invasive ductal breast carcinomas. This was followed by an analysis of the relationship between VEGF-C mRNA transcript levels and lymph node metastasis as well as LVD. Mean LVD of 'hot spots' was 10.2 +/- 7.4/each case. LVD was significantly correlated with lymph node metastasis (p < 0.0001), VEGF-C immunoreactivity (p = 0.0084), and podoplanin positive lymphatic invasion (p < 0.0001). Survival curves determined by the Kaplan-Meier method and univariate analysis demonstrated that high LVD was associated with both worse disease free survival (p = 0.0033) and overall survival (p = 0.0391). VEGF-C mRNA transcript levels were also correlated with lymph node metastasis (p = 0.0074) and LVD (p = 0.0409). Increased LVD was correlated with lymph node metastasis and VEGF-C expression. High LVD may be a significant unfavorable prognostic factor for long-term survival in breast cancer.

Adult↗

VEGF-D expression and lymph vessels play an important role for lymph node metastasis in papillary thyroid carcinoma.

Papillary thyroid carcinoma frequently metastasizes to regional lymph nodes, and lymph node metastasis increases the risk of local regional relapse. Recent evidence suggests that vascular endothelial growth factor-D (VEGF-D) promotes lymphangiogenesis, which in turn promotes lymphatic metastasis. Therefore, the role of VEGF-D messenger RNA transcript levels and VEGF-D immunoreactivity in lymph node metastasis in papillary thyroid carcinoma was investigated. In addition, the role of blood vascular vessel, lymph vessel, and Flt-4-positive vessel densities were studied in relation to their suspected association with lymph node metastasis, and with VEGF-D expression. VEGF-D messenger RNA transcript levels by quantitative real-time reverse transcription-polymerase chain reaction and VEGF-D immunoreactivity by immunohistochemistry in 49 papillary thyroid carcinomas were also studied. This was followed by quantitative immunohistochemical staining for CD34, podoplanin, and Flt-4. Lymph node metastasis was significantly correlated with VEGF-D messenger RNA transcript levels (P=0.027) and VEGF-D immunoreactivity (P=0.019). Increased lymph vessel density was also correlated with VEGF-D expression and lymph node metastasis. In conclusion, our findings indicate that VEGF-D expression and increased lymph vessel density may have an important role for lymph node metastasis in papillary thyroid carcinoma.

Adolescent↗

Combined small-cell carcinoma of the stomach: p53 and K-ras gene mutational analysis supports a monoclonal origin of three histological components.

Primary small-cell carcinoma (SmCC) is extremely rare in stomach. We reported an autopsy case of combined gastric SmCC with p53 and K-ras mutational analysis. Histologically, the tumour was composed of well-differentiated adenocarcinoma surrounding the central dominant SmCC component with scattered nests of squamous cell carcinoma. Immunohistochemically, all the neoplastic components revealed strong expression for p53 protein. Based on these findings, we hypothesized that these histologically different components originated from a same progenitor cell that possessed p53 mutation. Using Laser-capture microdissection technique and mutational analysis, we identified the same point mutations of p53 gene (A-->G transversion in codon 239) and K-ras gene (G-->A transversion in codon 13) in all the neoplastic components, but not in the adjacent normal gastric epithelium. Our results strongly support a hypothesis that the combined SmCC of stomach in this case was of monoclonal origin.

Adenocarcinoma↗

Urokinase-type plasminogen activator system and breast cancer (Review).

Malignant tumors have a capacity to degrade the extracellular matrix (ECM) by controlled proteolysis. One proteolytic system involved in these processes is the urokinase-type plasminogen activator (uPA) system, which consists of uPA, uPA receptor (uPAR) and uPA inhibitors 1 and 2 (PAI-1 and PAI-2). In the past two decades, study of the uPA system in human breast cancer has yielded valuable insights. Increased levels of uPA, PAI-1 and uPAR have been reported to be associated with poor prognosis in patients with breast cancer. Furthermore, uPA and PAI-1 may be new prognostic markers for axillary node-negative patients. To date, a growing body of evidence has suggested that uPA system promotes tumor metastasis by several different mechanisms, not just by breaking down the ECM. This article is focused on reviewing the current understanding of uPA system members as prognostic markers in breast cancer, and their cellular localization and tissue distribution. Correlations of the uPA system with other informative markers of breast cancer are also discussed.

Breast Neoplasms↗

Calcitonin receptor gene and breast cancer: quantitative analysis with laser capture microdissection.

There is a growing body of evidence indicating that calcitonin (CT) and its receptor (CTR) is involved in cell growth, differentiation and tissue development. Using laser capture microdissection (LCM) and real-time reverse transcription polymerase chain reactions (RT-PCR), we have investigated CTR mRNA expression in 60 primary breast cancers, including 14 pairs of matched cancers and unaffected ductal epithelia from the same patients. Our results demonstrate that CTR mRNA was constantly expressed in normal ductal epithelium and in breast cancer. In the 14 cases where matched samples were available, a decrease in CTR mRNA expression was found in 9 breast cancers (64.3%), an increased CTR expression in 2 cases (14.3%) and no significant change in 3 cases (21.4%). In 60 cases of primary breast cancers, decreased CTR expression was found in 44 (73.3%), increased CTR expression was detected in 10 cases (16.7%) and no change was observed in 6 cases (10%). Decreased CTR expression was found more often in cases with lymph node metastasis (p = 0.0498) and lymphatic invasion (p = 0.0179). Also there was a decreased CTR expression in cases with an extensive intraductal component (p = 0.0543) and a high nuclear grade (p = 0.1934), although this was not statistically significant. Overall, we conclude that CTR mRNA was constantly expressed in unaffected ductal epithelium, whereas decreased CTR mRNA expression was frequently found in breast cancers, particularly in cases with lymph node metastasis and lymphatic invasion. These results suggest that CTR might be of great potential significance in breast cancer progression.

Adult↗

Flt-4-positive vessel density correlates with vascular endothelial growth factor-d expression, nodal status, and prognosis in breast cancer.

PURPOSE: Metastasis to the regional lymph nodes through the lymphatic vessels is a common step in the progression of cancer and an important prognostic factor in many types of cancer. Recent evidence suggests that tumor lymphangiogenesis promotes lymphatic metastasis, and that the presence of Flt-4 on tumor blood and lymphatic vessels may play a important role in mediating lymphangiogenic factor-induced neovascularization. We assessed flt-4-positive vessel density (FVD) in breast cancer, and examined whether FVD associates with lymph node metastasis, VEGF-D expression, or prognosis. EXPERIMENTAL DESIGN: One hundred three invasive breast carcinomas with long-term follow-up were included in our study. Flt-4 was assessed using immunohistochemistry, then we analyzed the relationship between FVD and lymph node status, as well as VEGF-D expression and other established clinicopathological parameters. The relationship between FVD and prognosis was also investigated. RESULTS: Mean FVD of "hot spot" was 29.3 +/- 22.5 for each case. FVD was correlated significantly with lymph node metastasis (P < 0.0001), VEGF-D expression (P = 0.0019), tumor size (P = 0.0015), estrogen receptor (P = 0.0211), progesterone receptor (P = 0.0462), and c-erbB-2 (P = 0.0326). Survival curves determined by the Kaplan-Meier method and univariate analysis demonstrated that high FVD was associated with both worse disease-free survival (P = 0.0035) and overall survival (P = 0.0336). CONCLUSIONS: Increased FVD was correlated with lymph node metastasis and VEGF-D expression. High FVD may be a significant unfavorable prognostic factor for long-term survival in breast cancer. It is possible that Flt-4 becomes a target for antiangiogenic therapy to breast cancer.

Adult↗

Differentiation, proliferation and retinoid receptor status of papillary carcinoma of the thyroid.

Messenger RNA expression of retinoic acid receptors (RARalpha, RARbeta and RARgamma) and retinoid X receptors (RXRalpha, RXRbeta and RXRgamma) was examined using reverse transcription-polymerase chain reaction in 42 papillary thyroid carcinomas (PTCs). A loss of mRNA expression was observed in 18 cases of the 42 PTCs, including three cases for RARalpha, 14 cases for RARbeta, six cases for RXRalpha and five cases for RXRbeta. The expressions of RARgamma and RXRgamma were found in all 42 PTCs. Based on Ki 67/MIB1 labeling index (LI), the 42 PTCs were classified into Group A (20 cases; LI = 0-2%), Group B (17 cases; LI = 2-5%) and Group C (5 cases; LI > 5%). The PTCs of groups B and C showed solid, trabecular or scirrhous arrangements, infiltrative growth, loss of cellular polarity and cohesiveness more frequently, but capsulated growth pattern less frequently, when compared with PTCs of Group A. They also showed more frequent extrathyroidal extension than Group A. However, no significant differences were identified in sex, age, nodal status and tumor size. Loss of expression for one or more retinoid receptors frequently occurred in groups B and C. These results suggest that the loss of retinoid receptors might occur during the loss of differentiation and tumor progression of PTC.

Adult↗

Microwave cell death: Immunohistochemical and enzyme histochemical evaluation.

In Japan, microwave coagulation therapy (MCT) has been used for the management of primary and metastatic liver cancer. Needle biopsy examination from the lesion has frequently shown the presence of nucleated cancer cells in histopathological examinations, prompting the conclusion that cancer cells are not completely eliminated by microwave therapy, whereas computed tomography and ultrasonography examinations show tumor regression. To determine whether microwave-treated tissue contains functionally viable cells, an examination of the Na+-K+-ATPase protein and its activity using immunohistochemical and enzyme histochemical methods were carried out in microwave-treated rat liver. Four concentric, morphologically identifiable zones around the microwave probe needle appeared 2 days after treatment. Zone A, which was between the innermost spongy zone and the outer necrotic zone, contained only slight morphological alterations in the hepatocytes, which had slightly hyperchromatic nuclei and mildly eosinophilic cytoplasm. The hepatocytes in zone A were found to be positive for the Na+-K+-ATPase antigenicity but negative for enzyme activity, indicating that zone A was undergoing cell death, although morphologically this was not discernible. This type of cell death caused by microwave treatment is morphologically different from previously known types of cell death, either oncosis or apoptosis.

Animals↗