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PMID: 3192508 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Individual human tumors in short-term micro-organ cultures: chemosensitivity testing by fluorescent cytoprinting.

In vitro cellular & developmental biology : journal of the Tissue Culture Association ·Vol. 24 ·No. 11 ·1988-11-00 ·Pages 1137-46

Rotman B, Teplitz C, Dickinson K, Cozzolino JP

Abstract

Using innovative approaches, we addressed several problems often associated with in vitro chemosensitivity testing of individual human tumors: 1) obtaining a high rate of evaluability; 2) excluding participation of nonmalignant stromal and vascular components usually present in tumor specimens; 3) preserving cell-to-cell interactions present in the original tumor; 4) assessing drug-induced cytotoxicity without sacrificing the tumor culture. To circumvent these problems, tumor specimens were processed as follows: i) tissue (fresh or cryopreserved) was mechanically or enzymatically dissociated under mild conditions into cellular clusters (termed micro-organs); ii) large micro-organs were separated by a brief decantation, resuspended, and then exposed to fluorescein acetate to visualize (under naked eye) viable micro-organs; iii) fluorescent (i.e., viable) micro-organs were collected using a Pasteur pipette, and then planted on a solid support made of cellulose fibers impregnated with collagen. Since tumor micro-organs have been previously shown to consist solely of malignant cells, the procedure described here not only preserves a critical portion of the tumor architecture but eliminates at the onset necrotic tissue and nonmalignant cellular components that could interfere with the chemosensitivity testing. Drug-induced cytotoxicity was measured by "fluorescent cytoprinting", a novel, nondestructive procedure for assessing micro-organ viability in situ. The key feature of fluorescent cytoprinting is that cytotoxic effects are not measured against control cultures but against a baseline provided by a cytoprint of the same culture before drug addition. Using three experimental designs, we tested the potential of the method for clinical applications. The results using 469 human malignant tumors showed that the micro-organ culture assay can distinguish individual tumor chemosensitivity profiles with an overall success rate of 96%. For three commonly used chemotherapeutic drugs, the observed frequency of responding tumors was found to be comparable to previously reported clinical results using single agents.

MeSH Terms
Antineoplastic Agents/pharmacology Cell Survival/drug effects Fluorescein Fluoresceins Humans Microscopy, Fluorescence Necrosis Neoplasms/drug therapy,pathology Organ Culture Techniques Time Factors
Chemicals
Antineoplastic Agents Fluoresceins Fluorescein
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rotman B
Brown University, Division of Biology and Medicine, Providence, Rhode Island 02912.
Teplitz C
Dickinson K
Cozzolino J P
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Article Info
Journal
In vitro cellular & developmental biology : journal of the Tissue Culture Association
Abbr.
In Vitro Cell Dev Biol
ISSN
0883-8364
Published
1988-11-00
Pages
1137-46
Language
English
Region
United States
NLM ID
8506951
Subset
IM
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