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PMID: 3621199 Published · ppublish English Journal Article

Novel intrapulmonary model for orthotopic propagation of human lung cancers in athymic nude mice.

Cancer research ·Vol. 47 ·No. 19 ·1987-10-01 ·Pages 5132-40

McLemore TL, Liu MC, Blacker PC, Gregg M, Alley MC, Abbott BJ, Shoemaker RH, Bohlman ME, Litterst CC, Hubbard WC

Abstract

A major impediment to the study of human lung cancer pathophysiology, as well as to the discovery and development of new specific antitumor agents for the treatment of lung cancer, has been the lack of appropriate experimental animal models. This paper describes a new model for the propagation of human lung tumor cells in the bronchioalveolar regions of the right lungs of athymic NCr-nu/nu mice via an intrabronchial (i.b.) implantation procedure. Over 1000 i.b. implantations have been performed to date, each requiring 3 to 5 min for completion and having a surgery-related mortality of approximately 5%. The model was used successfully for the orthotopic propagation of four established human lung cancer cell lines including: an adenosquamous cell carcinoma (NCI-H125); an adenocarcinoma (A549); a large cell undifferentiated carcinoma (NCI-H460), and a bronchioloalveolar cell carcinoma (NCI-H358). When each of the four cell lines was implanted i.b. using a 1.0 X 10(6) tumor cell inoculum, 100 +/- 0% (SD) tumor-related mortality was observed within 9 to 61 days. In contrast, when the conventional s.c. method for implantation was used at the same tumor cell inoculum, only minimal (2.5 +/- 5%) tumor-related mortality was observed within 140 days (P less than 0.001). Similarly, when a 1.0 X 10(5) or 1.0 X 10(4) cell inoculum was used, a dose-dependent, tumor-related mortality was observed when cells were implanted i.b. (56 +/- 24% or 25 +/- 17%) as compared with the s.c. method (5 +/- 5.7% or 0.0 +/- 0%) (P less than 0.02 and P less than 0.05, respectively). Most (greater than 90%) of the lung tumors propagated by i.b. implantation were localized to the right lung fields as documented by necropsy and/or high-resolution chest roentgenography techniques which were developed for these studies. The intrapulmonary model was also used for establishment and propagation of xenografts derived directly from enzymatically digested, fresh human lung tumor specimens obtained at the time of diagnostic thoracotomy and representing all four major lung cancer cell types as well as a bronchioloalveolar cell carcinoma. Approximately 35% (10 of 29) of the fresh primary human lung tumor specimens and 66% (2 of 3) of tumors metastatic to the lung were successfully propagated i.b. at a 1.0 X 10(6) tumor cell inoculum, whereas only 20% (1 of 5) of the specimens were successfully grown in vivo via the s.c. route from a 1.0 X 10(7) tumor cell inoculum.(ABSTRACT TRUNCATED AT 400 WORDS)

MeSH Terms
Animals Cell Line Disease Models, Animal Female Humans Lung Neoplasms/pathology Mice Mice, Inbred BALB C Mice, Inbred DBA Mice, Nude Neoplasm Transplantation Transplantation, Heterologous
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
McLemore T L
Liu M C
Blacker P C
Gregg M
Alley M C
Abbott B J
Shoemaker R H
Bohlman M E
Litterst C C
Hubbard W C
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
1987-10-01
Pages
5132-40
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
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