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Host-Gated Enzymatic Release (H-GER) Enables Colorimetric Transduction for Enzyme Measurement.


ABSTRACT: We introduce Host-Gated Enzymatic Release (H-GER) as an alternative colorimetric signal transduction mechanism for measuring amylase activity. This assay uses a visually colored complex formed when hydroxypropyl-γ-cyclodextrin (HP-γ-CD) binds to the aggregachromic dye CRANAD-2, with the HP side chains playing a key role in the complexation. The analytical capability of this visually addressable assay relies on changes in dye dispersity, triggered by the enzymatic release of gated CRANAD-2 from HP-γ-CD host. Upon cleavage of HP-γ-CD, the freed dye clusters in the aqueous environment, resulting in a sequence of color changes observed by the naked eye. The H-GER assay demonstrated a limit of detection of 154 U/mL for α-amylase. Analysis based on Michaelis-Menten kinetics and molecular dynamics simulations revealed that the H-GER assay exhibits good enzymatic specificity, despite showing reduced catalytic efficiency. These results demonstrate that H-GER is an effective and potentially valuable signal transduction mechanism that expands the current toolbox for developing in vitro colorimetric assays targeting specific enzymatic activities.

SUBMITTER: Zhang Z 

PROVIDER: S-EPMC12442016 | biostudies-literature | 2025 Sep

REPOSITORIES: biostudies-literature

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Host-Gated Enzymatic Release (H-GER) Enables Colorimetric Transduction for Enzyme Measurement.

Zhang Zeyu Z   Liu Wen W   Huang Qing Q   Zhong Xiang X   Gu Jin J   Segerman Ruby R   Choi Jordan J   Wang Xing X   Jin Zhicheng Z  

ACS applied materials & interfaces 20250901 36


We introduce Host-Gated Enzymatic Release (H-GER) as an alternative colorimetric signal transduction mechanism for measuring amylase activity. This assay uses a visually colored complex formed when hydroxypropyl-γ-cyclodextrin (HP-γ-CD) binds to the aggregachromic dye CRANAD-2, with the HP side chains playing a key role in the complexation. The analytical capability of this visually addressable assay relies on changes in dye dispersity, triggered by the enzymatic release of gated CRANAD-2 from H  ...[more]

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