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1.
Journal of Zhejiang University. Medical sciences ; (6): 335-341, 2016.
Article in Chinese | WPRIM | ID: wpr-239581

ABSTRACT

To investigate the expression of CD10 in tumor-associated fibroblasts (TAF) in colorectal adenomas and its relation to cancerization and recurrence of adenoma.Tissue samples of low-grade adenoma (=50), high-grade adenoma (=50) and colorectal adenocarcinoma (=50) were collected, and tissue samples at the distal margin of corresponding colorectal lesions were taken as controls. The expression of CD10 in the stromal TAFs, and the expressions of β-catenin, Ki-67, p53 and CyclinD1 in tumor cells were detected by immunohistochemistry (Envision). The correlation of CD10 expression in stromal TAFs with the expressions of β-catenin, Ki-67, p53 and CyclinD1 in tumor cells was analyzed by Spearmen. One hundred samples of low-grade colorectal adenoma were collected, including 57 non-recurrent cases and 43 recurrent cases (16 cases of recurrent adenoma and 27 cases of recurrent adenocarcinoma); the expression of stromal TAF CD10 were determined and compared among groups.There was no TAF in normal colorectal mucosa. The expression rates of TAF CD10 in low-grade adenoma, high-grade adenoma and colorectal adenocarcinoma were 22%, 50% and 78%, respectively (all<0.05). The expression of Ki-67 and β-catenin in low-grade adenoma, high-grade adenoma, colorectal adenocarcinoma was on a rising trend (all<0.01). The expression of CyclinD1 in high-grade adenoma was higher than that in colorectal adenocarcinoma and low-grade adenoma (all>0.05). The expression of p53 in colorectal adenocarcinoma and high-grade adenoma was higher than that in low grade adenoma (all<0.01). The expression of TAF CD10 was correlated with the expression of p53, Ki-67 and β-catenin-nucleus(=0.264、0.307、0.320, all<0.01),but not correlated with CyclinD1 and β-catenin-membrane (=0.012、-0.073, all>0.05). The TAF CD10 level was significantly higher in low-grade adenoma with recurrence than that in those without recurrence (<0.05).The expression of CD10 in recurrent colorectal adenocarcinoma was higher than that in recurrent adenoma (<0.05).The expression of TAF CD10 is increased gradually in the process of adenoma-cancer, indicating that it may play an important role in the canceration of adenoma. Adenomas with high expression of CD10 TAF are likely to be recurrent and cancerized, and detection of TAF CD10 combined with p53, Ki-67 and β-catenin may be of value in predicting canceration or recurrence of colorectal adenoma.


Subject(s)
Humans , Adenocarcinoma , Chemistry , Genetics , Adenoma , Chemistry , Genetics , Biomarkers, Tumor , Cancer-Associated Fibroblasts , Chemistry , Carcinogenesis , Chemistry , Colorectal Neoplasms , Chemistry , Genetics , Cyclin D1 , Disease Progression , Immunohistochemistry , Ki-67 Antigen , Neoplasm Grading , Neoplasm Recurrence, Local , Chemistry , Neprilysin , Predictive Value of Tests , Tumor Suppressor Protein p53 , beta Catenin
2.
Chinese Journal of Pathology ; (12): 719-724, 2015.
Article in Chinese | WPRIM | ID: wpr-359032

ABSTRACT

<p><b>OBJECTIVE</b>To compare the biological characteristics of colorectal cancer associated fibroblasts (CAFs) with normal fibroblasts (NFs).</p><p><b>METHODS</b>CAFs and NFs were isolated from fresh specimens of colorectal cancer and their paired normal colon tissue and cultured by tissue explant method. Light microscopy, quantitative polymerase chain reaction (qPCR), Western blot, immunofluorescence microscopy, electron microscopy and flow cytometry were used to identify isolated fibroblasts and to explore their characteristics of activation and growth.</p><p><b>RESULTS</b>Primary colorectal CAFs and NFs were isolated and cultured successfully. NFs showed spindled morphology and were arranged in interlacing or spiral bundles. CAFs were polygonal or spindle, but were fatter than NFs. They were distributed randomly and arranged irregularly, and had obvious actin expression. CAFs and NFs both expressed fibronectin, but not E-cadherin, CD31 and caldesmon. qPCR showed that CAFs expressed more fibroblast activation protein (FAP) and less fibroblast specific protein 1 (FSP1) than that of NFs. There was no difference in the expression of α-SMA between NFs and CAFs by Western blot. α-SMA was bundled in parallel to the long axis of the cell by immunofluorescence. By electron microscopy, CAFs but not NFs showed dense myofilament that was arranged regularly. Flow cytometry showed that the percentage of S- and G2-phase in CAFs were significantly lower than that in NFs. mRNA expression of transforming growth factor β1, stromal derived factor 1 (SDF-1) and platelet derived growth factor (PDGF)-D in CAFs were lower while that for PDGFC was higher than that in NFs. That indicated the proliferation of CAFs was inhibited and the secretion of some cytokines was different when compared with NFs.</p><p><b>CONCLUSIONS</b>CAFs show differences with NFs in morphology, characteristics of activation and secretion of some cytokines. The proliferation of CAFs is down regulated as compared with NFs.</p>


Subject(s)
Humans , Blotting, Western , Cell Movement , Cell Proliferation , Colorectal Neoplasms , Pathology , Fibroblasts , Cell Biology , Flow Cytometry , Fluorescent Antibody Technique , Primary Cell Culture , Tumor Cells, Cultured
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