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人肺癌的肿瘤克隆形成试验。II. 影响软琼脂中集落形成的因素。

Human tumor clonogenic assay for carcinoma of the lung. II. Factors that influence colony formation in soft agar.

作者信息

Kanzawa F, Matsushima Y, Hamburger A W, Ishihara J, Sasaki Y, Shimizu E, Eguchi K, Shinkai T, Saijo N, Miyazawa N

出版信息

Oncology. 1987;44(3):150-5. doi: 10.1159/000226467.

Abstract

The human tumor clonogenic assay (HTCA) has potential value for studies of both the chemosensitivity and biology of human tumors. However, many technical problems including low plating efficiencies and the preparation of sufficient numbers of viable cells remain. In this study, an improved method for disaggregation of solid tumors increased the yield of single cells. Consequently, more than 10 anticancer drugs could be tested in 94 of 168 specimens (56%). Removal of peripheral blood lymphocytes from cell suspensions derived from effusions also improved colony formation. Adequate growth for sensitivity testing (greater than 30 colonies/plate) was obtained in 122 cases (73%), inadequate growth for drug evaluation (5-29 colonies/plate) in 29 cases (17%), and no colony formation (less than 5 colonies/plate) in 17 cases (10%) of the 168 viable samples. The cloning efficiencies of cells derived from primary tumors (median 0.015%) were higher than those of cells derived from metastatic tumors (0.012%), and they varied with the location of the metastatic site. Cloning efficiencies varied markedly from specimen to specimen, and were unaffected by tumor histology, grade of differentiation, patient age, stage of disease, or prior chemotherapy. The HTCA is promising as a potential tool for studying the biology of tumors.

摘要

人类肿瘤克隆形成试验(HTCA)在人类肿瘤的化学敏感性和生物学研究中具有潜在价值。然而,仍然存在许多技术问题,包括接种效率低和制备足够数量的活细胞。在本研究中,一种改进的实体瘤解离方法提高了单细胞产量。因此,168个标本中的94个(56%)可以测试10多种抗癌药物。从积液来源的细胞悬液中去除外周血淋巴细胞也改善了集落形成。168个活样本中,122例(73%)获得了足够的生长用于敏感性测试(每平板大于30个集落),29例(17%)生长不足用于药物评估(每平板5 - 29个集落),17例(10%)无集落形成(每平板少于5个集落)。原发性肿瘤来源的细胞克隆效率(中位数0.015%)高于转移性肿瘤来源的细胞(0.012%),并且它们随转移部位的不同而变化。克隆效率在不同标本之间差异显著,且不受肿瘤组织学、分化程度、患者年龄、疾病分期或先前化疗的影响。HTCA作为研究肿瘤生物学的潜在工具很有前景。

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