Toward Cell‐Specific Molecular MRI: Modulating Chemical Exchange Saturation Transfer Contrast With Manganese

ABSTRACT Chemical exchange saturation transfer (CEST) MRI enables sensitive detection of low‐concentration metabolites in vivo, but its biological interpretation is limited by the composite nature of the signal, which reflects contributions from multiple cell types. In the brain, these include intracellular metabolites in neurons and glial cells, as well as semisolid macromolecular pools. Here, we introduce MangaCEST, a strategy that uses manganese (Mn 2 + )‐induced intracellular relaxation changes to modulate the contributions of different cell populations to the CEST spectrum. Mn 2 + enters the cytoplasm via calcium‐permeable channels and accumulates in excitable cells in an activity‐dependent manner, shortening water T 1 and selectively reducing CEST contrast. Comparison of CEST Z‐spectra with or without Mn 2 + enables MangaCEST to isolate Mn‐sensitive signal components and differentially analyze intracellular contributions. To provide a cell‐type‐weighted Mn 2 + effect in a well‐defined biological framework, we focused on the cerebellum, where preferential neuronal accumulation of Mn 2 + is well documented. In the developing chick embryo in vivo, Mn 2 + caused significant T 1 shortening (∼28%) and frequency‐dependent CEST spectrum changes. Differential spectra showed attenuation at 3–4 ppm, consistent with contributions from neuronal‐associated metabolite pools. These findings suggest that MangaCEST may represent a promising strategy for disentangling cellular contributions to molecular MRI signals in the brain.

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Journal
Angewandte Chemie International Edition
Published
2026-09-09
DOI
https://doi.org/10.1002/anie.1291856
Primary Topic
Lanthanide and Transition Metal Complexes
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article
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Toward Cell‐Specific Molecular MRI: Modulating Chemical Exchange Saturation Transfer Contrast With Manganese

Angelo Bifone, Eleonora Cavallari, Valeria Bitonto, Morgana Giachello
Angewandte Chemie International Edition
Lanthanide and Transition Metal Complexes
article

Toward Cell‐Specific Molecular MRI: Modulating Chemical Exchange Saturation Transfer Contrast With Manganese

Angelo Bifone, Eleonora Cavallari, Valeria Bitonto, Morgana Giachello
article en

Abstract

ABSTRACT Chemical exchange saturation transfer (CEST) MRI enables sensitive detection of low‐concentration metabolites in vivo, but its biological interpretation is limited by the composite nature of the signal, which reflects contributions from multiple cell types. In the brain, these include intracellular metabolites in neurons and glial cells, as well as semisolid macromolecular pools. Here, we introduce MangaCEST, a strategy that uses manganese (Mn 2 + )‐induced intracellular relaxation changes to modulate the contributions of different cell populations to the CEST spectrum. Mn 2 + enters the cytoplasm via calcium‐permeable channels and accumulates in excitable cells in an activity‐dependent manner, shortening water T 1 and selectively reducing CEST contrast. Comparison of CEST Z‐spectra with or without Mn 2 + enables MangaCEST to isolate Mn‐sensitive signal components and differentially analyze intracellular contributions. To provide a cell‐type‐weighted Mn 2 + effect in a well‐defined biological framework, we focused on the cerebellum, where preferential neuronal accumulation of Mn 2 + is well documented. In the developing chick embryo in vivo, Mn 2 + caused significant T 1 shortening (∼28%) and frequency‐dependent CEST spectrum changes. Differential spectra showed attenuation at 3–4 ppm, consistent with contributions from neuronal‐associated metabolite pools. These findings suggest that MangaCEST may represent a promising strategy for disentangling cellular contributions to molecular MRI signals in the brain.

Angewandte Chemie International Edition
University of Turin (IT)
Clean water and sanitation
Openalex Percentile: Top 23%
Lanthanide and Transition Metal Complexes
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Toward Cell‐Specific Molecular MRI: Modulating Chemical Exchange Saturation Transfer Contrast With Manganese — Angelo Bifone, Eleonora Cavallari, et al. · Angewandte Chemie International Edition (2026) | TGRS Research Map | TGRS