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随着分子生物学进展,目前已广泛运用放射性同位素、X线法、荧光法、超速离心、微孔过滤、平衡透析、饱和分析柱层析、免疫化学、电子显微镜及核磁共振等方法研究激素受体,这对仅仅依靠生物效应来决定受体的存在及其作用又深入一步。激素受体与人类疾病的关系日益受到广大学者重视,肿瘤的激素受体也为肿瘤研究者所注目。测定雌激素受体(ER)与孕激素受体(PR)对制定乳腺癌和子宫内膜腺癌的治疗方案,估计内分泌治疗效果是有价值的,并已在临床运用。这对从事卵巢肿瘤研究的广大学者是个启发。卵巢既是性激素的分泌器官,又是其靶器官。卵巢有性激素受体,而
With the development of molecular biology, the use of radioisotopes, X-ray fluorescence, ultracentrifugation, microporous filtration, equilibrium dialysis, saturated analytical column chromatography, immunochemistry, electron microscopy and nuclear magnetic resonance Body, which is one step further to rely solely on biological effects to determine the presence and role of receptors. The relationship between hormone receptors and human diseases is increasingly valued by the majority of scholars, tumor hormone receptors for cancer researchers are also noticed. Determining the therapeutic regimen of estrogen receptor (ER) and progesterone receptor (PR) in the development of breast and endometrial adenocarcinoma is of value in estimating endocrine therapy and is already in clinical use. This is a great inspiration for the majority of scholars engaged in ovarian tumor research. Ovary is both the secretion of sex hormones, but also its target organ. Ovarian sex hormone receptor, and