Lipid-mediated Wnt protein stabilization enables serum-free culture of human organ stem cells

Publication date

2017

Authors

Tüysüz, Nesrin
van Bloois, LouisISNI 000000039297447X
van den Brink, Stieneke
Begthel, Harry
Verstegen, Monique M A
Cruz, Luis J
Hui, Lijian
van der Laan, Luc J W
de Jonge, Jeroen
Vries, Robert

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Article
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Abstract

Wnt signalling proteins are essential for culture of human organ stem cells in organoids, but most Wnt protein formulations are poorly active in serum-free media. Here we show that purified Wnt3a protein is ineffective because it rapidly loses activity in culture media due to its hydrophobic nature, and its solubilization requires a detergent, CHAPS (3-[(3-cholamidopropyl) dimethylammonio]-1-propanesulfonate), that interferes with stem cell self-renewal. By stabilizing the Wnt3a protein using phospholipids and cholesterol as carriers, we address both problems: Wnt activity remains stable in serum-free media, while non-toxic carriers allow the use of high Wnt concentrations. Stabilized Wnt3a supports strongly increased self-renewal of organ and embryonic stem cells and the serum-free establishment of human organoids from healthy and diseased intestine and liver. Moreover, the lipophilicity of Wnt3a protein greatly facilitates its purification. Our findings remove a major obstacle impeding clinical applications of adult stem cells and offer advantages for all cell culture uses of Wnt3a protein.

Keywords

SDG 3 - Good Health and Well-being

Citation

Tüysüz, N, van Bloois, L, van den Brink, S, Begthel, H, Verstegen, M M A, Cruz, L J, Hui, L, van der Laan, L J W, de Jonge, J, Vries, R, Braakman, E, Mastrobattista, E, Cornelissen, J J, Clevers, H & Ten Berge, D 2017, 'Lipid-mediated Wnt protein stabilization enables serum-free culture of human organ stem cells', Nature Communications, vol. 8, 14578. https://doi.org/10.1038/ncomms14578