Related Experiment Video
Updated: Mar 20, 2026

A Protocol for Lentiviral Transduction and Downstream Analysis of Intestinal Organoids
Published on: April 20, 2015
Lentivirus-Based Stable Gene Delivery into Intestinal Organoids
Yoshiaki Maru1, Kaoru Orihashi1, Yoshitaka Hippo2,3
1Division of Molecular Carcinogenesis, Chiba Cancer Center Research Institute, 666-2 Nitona-cho, Chuo-ku, Chiba-shi, Chiba, 260-8717, Japan.
Abstract:
Lentivirus-based gene delivery works efficiently for the majority of mammalian cells cultured under standard two-dimensional conditions. By contrast, intestinal epithelial organoids embedded into three-dimensional extracellular matrix appear to be resistant to lentiviral transduction. We observed that Matrigel, a matrix that reconstitutes a basement membrane and is indispensable for cell survival and proliferation, prevents lentiviruses from binding to intestinal cells. In this chapter, we describe a simple method of a highly efficient gene transduction into intestinal organoids. This method involves organoid dispersion into single intestinal epithelial cells, mixing these individual cells with lentiviral particles, plating on Matrigel, and subsequent re-embedding into Matrigel. Under these conditions, the majority of the cells are exposed to the virus in the absence of the matrix barrier while remaining attached to the matrix. Using a GFP-labeled lentivirus, we demonstrate that this method allows for highly efficient infection of intestinal organoids after overnight incubation of Matrigel-attached cells with lentiviral particles.

