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- 组织化学S-P法Relationship
- 方法 :应用免疫组织化学S P法检测了 65例ESC和 5 3例癌旁鳞状上皮组织中CEA、CD4 4s和CD4 4v6的表达情况。Methods:65 cases of ESC and 53 cases of squamous epitheliums were examined for CEA,CD44s and CD44v6 proteins through immunohistochemical(S P)method.
- 方法 采用免疫组织化学S-P法检测了64例上皮性卵巢癌, 30例卵巢良性肿瘤和20例正常卵巢组织中PTEN和Ki-67的表达。Methods The expression of PTEN and Ki-67 protein in 64 cases of epithelial ov arian cancer,30 cases of benign ovarian cystoadenoma and 20 cases of normal ovar ian tissue were detected by S-P immunohistochemical method.
- 方法:应用免疫组织化学S蛳P法检测15例结节性甲状腺肿组织、15例腺瘤、43例甲状腺癌组织中p27、PCNA及TTF蛳1的表达。Methods: The expression of p27 and PCNA TTF, 1 were examined immunohistochemically in 15 cases of nodular goiter, 15 cases of adenoma and 43 cases of thyroid carcinoma.
- 组织organization
- 方法采用免疫组织化学S-P法检测64例IDC、15例乳腺导管内癌(ductal carcinoma in situ,DCIS)、15例乳腺良性病变和15例癌旁正常乳腺组织中p57KIP2蛋白的表达。Methods In 64 cases of IDC,15 cases of ductal carcinoma in situ(DCIS),15 cases of benign breast tissue and 15 cases of adjacent normal breast tissues,the expression of p57KIP2 proteins was detected by immunohistochemical S-P methods.
- 组织的organizational
- 除法division
- 组织化学histochemistry
- 组织能力organizing capacity
- 免疫组织化学immunohistochemistry
- 方法:应用DNA缺口未端标记技术和免疫组织化学S-P法,原位观察20例正常大肠黏膜组织、35例大肠腺瘤和60例大肠腺癌组织中的凋亡细胞和Survivin、Ki-67蛋白阳性表达.METHODS:Using terminal deoxynucleotidyl transferase- mediated dUTP nick end labeling (TUNEL) and immuno histochemistry S-P method, the authors examined the expression of survivin, Ki-67 and apoptotic cell in situ in 60 cases of colorectal adenocarcinoma, 35 adenoma and 20 normal colonic mucosa.
- 酶组织化学enzyme histochemistry
- 组织化学的histochemical
- 组织化学地histochemically
- 组织化学图histochemograph
- 显微组织化学microscopic histochemistry
- 植物组织化学phytohistochemistry
- 方法采用免疫组化S-P法、原位杂交方法对58例淋巴瘤组织和10例正常淋巴结的ESM-1蛋白及mRNA进行检测。Methods Immunohistochemistry detection (S-P method) and in situ hybridization method were used to detect the expression of ESM-1 protein and mRNA in 58 cases of lymphoma and 10 cases of normal lymph node.
- 肿瘤组织化学histological chemistry of tumor