Photocatalytic manipulation of Ca 2+ signaling for regulating cellular and animal behaviors via MOF-enabled H 2 O 2 generation

Author:

Zhang Zherui1ORCID,Luo Yuhao2ORCID,Ma Yuanhong1,Zhou Yaofeng3,Zhu Dingcheng1ORCID,Shen Wanhua2ORCID,Liu Junqiu1ORCID

Affiliation:

1. College of Material, Chemistry, and Chemical Engineering, Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Hangzhou Normal University, Hangzhou 311121, China.

2. Zhejiang Key Laboratory of Organ Development and Regeneration, College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, Zhejiang 310036, China.

3. Westlake University, Shilongshan Rd. Cloud Town, Xihu District, Hangzhou, Zhejiang, China.

Abstract

The in situ generation of H 2 O 2 in cells in response to external stimulation has exceptional advantages in modulating intracellular Ca 2+ dynamics, including high controllability and biological safety, but has been rarely explored. Here, we develop photocatalyst-based metal-organic frameworks (DCSA-MOFs) to modulate Ca 2+ responses in cells, multicellular spheroids, and organs. By virtue of the efficient photocatalytic oxygen reduction to H 2 O 2 without sacrificial agents, photoexcited DCSA-MOFs can rapidly trigger Ca 2+ outflow from the endoplasmic reticulum with single-cell precision in a repeatable and controllable manner, enabling the propagation of intercellular Ca 2+ waves (ICW) over long distances in two-dimensional and three-dimensional cell cultures. After photoexcitation, ICWs induced by DCSA-MOFs can activate neural activities in the optical tectum of tadpoles and thighs of spinal frogs, eliciting the corresponding motor behaviors. Our study offers a versatile optical nongenetic modulation technique that enables remote, repeatable, and controlled manipulation of cellular and animal behaviors.

Publisher

American Association for the Advancement of Science (AAAS)

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