A 3D culture system for evaluating the combined effects of cisplatin and anti-fibrotic drugs on the growth and invasion of lung cancer cells co-cultured with fibroblasts

Author:

Pan Huei-Jyuan1ORCID,Lee Chia-Wei1ORCID,Wu Li-Yu2,Hsu Heng-Hua1ORCID,Tung Yi-Chung1ORCID,Liao Wei-Yu34ORCID,Lee Chau-Hwang12ORCID

Affiliation:

1. Research Center for Applied Sciences, Academia Sinica 1 , Taipei 11529, Taiwan

2. Institute of Biophotonics, National Yang Ming Chiao Tung University 2 , Taipei 11221, Taiwan

3. Department of Internal Medicine, National Taiwan University Hospital 3 , Taipei 10002, Taiwan

4. Department of Internal Medicine, College of Medicine, National Taiwan University 4 , Taipei 10002, Taiwan

Abstract

Fibrosis and fibroblast activation usually occur in the tissues surrounding a malignant tumor; therefore, anti-fibrotic drugs are used in addition to chemotherapy. A reliable technique for evaluating the combined effects of anti-fibrotic drugs and anticancer drugs would be beneficial for the development of an appropriate treatment strategy. In this study, we manufactured a three-dimensional (3D) co-culture system of fibroblasts and lung cancer cell spheroids in Matrigel supplemented with fibrin (fibrin/Matrigel) that simulated the tissue microenvironment around a solid tumor. We compared the efficacy of an anticancer drug (cisplatin) with or without pretreatments of two anti-fibrotic drugs, nintedanib and pirfenidone, on the growth and invasion of cancer cells co-cultured with fibroblasts. The results showed that the addition of nintedanib improved cisplatin's effects on suppressing the growth of cancer cell spheroids and the invasion of cancer cells. In contrast, pirfenidone did not enhance the anticancer activity of cisplatin. Nintedanib also showed higher efficacy than pirfenidone in reducing the expression of four genes in fibroblasts associated with cell adhesion, invasion, and extracellular matrix degradation. This study demonstrated that the 3D co-cultures in fibrin/Matrigel would be useful for assessing the effects of drug combinations on tumor growth and invasion.

Funder

Ministry of Science and Technology, Taiwan

Publisher

AIP Publishing

Subject

Biomedical Engineering,Biomaterials,Biophysics,Bioengineering

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