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Updated: May 5, 2026

The In Ovo Chick Chorioallantoic Membrane CAM Assay as an Efficient Xenograft Model of Hepatocellular Carcinoma
Published on: October 9, 2015
In vitro neuraotropic growth of cholangiocarcinoma: an experimental study
Yu-Xue Wang1, Wei Liu, Xin-Yu Tan
1Department of Emergency Medicine, Xiang Ya Hospital, Central South University, Changsha 410008, China.
Objective:
Perineural invasion of cholangiocarcinoma happens in the early stage of the disease but is often not recognized until its later stages. Research about the behaviour and mechanism of perineural invasion by cholangiocarcinoma is urgently needed for a useful new model. The aim of this work is to establish a novel model to address the problem.
Design:
Neural cells and cholangiocarcinoma cells were co-cultured to mimic the neurotropic invasion of cholangiocarcinoma.
Setting:
Human embryonic stem cells were induced to form neural cells by glial cell-derived neurotropic factor and retinoic acid; neural cells and cholangiocarcinoma cells were co-cultured in Transwell chamber.
Participants:
Human embryonic stem cells and cholangiocarcinoma cells were applied.
Main Outcome Measures:
Paired t-test was used to compare the counts of penetrating cholangiocarcinoma cells in co-culture and control group.
Results:
Formation of neurospheres and neural-like cells were observed following induction at 24 and 48 h, respectively; synapses were viewed to protrude from neural-like cell bodies after incubation for 96 h. Forty-eight hours after incubation, immunocytochemical staining of the cells showed that synaptophysin and glial fibrillary acidic protein were expressed in the neuron-like cells and gliocytes-like cells, respectively. The cholangiocarcinoma cells that had penetrated through the Matrigel/polyethylene terephthalate membrane from the upper chamber to the lower chamber of the Transwell in the co-culture group were significantly more numerous than those in the control group (68 ± 8.3/field versus 46 ± 5.7/field, P < 0.05).
Conclusion:
The novel model is a valuable tool to study the perineural invasion of cholangiocarcinoma.
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