A Rigid, Mono(Aquated) Mn(II)-Based Complex as MRI Contrast Agent for the Liver and Brain Vasculature Imaging

Abstract A new macrocyclic ligand (PCCy4A) featuring a lipophilic cyclohexylamine pendant arm and its corresponding Mn(II) complex {Na2[Mn(PCCy4A)]} have been developed. The complex exhibited high thermodynamic stability (log KMnL = 16.81 and pMn = 9.44 at [L] = [Mn] = 10−5 M, 25 °C), significant kinetic inertness [t1/2 = 63 h, at pH 6.0 (MES buffer)] when exposed to a 25-fold excess of Zn(II) ions, and excellent relaxivity (r1 = 3.14 mM−1 s−1, 1.41 T, 37 °C), which further increased 6-fold in the presence of serum albumin, demonstrating strong albumin affinity (69%; KA = 3.16 × 103 M−1). This results in a substantial boost in MRI signal intensity within the mouse brain vasculature at a dose of 0.08 mmol/kg. During T1-weighted imaging, 220% brightness enhancement was observed in the liver. Thus, Na2[Mn(PCCy4A)] was identified as a highly effective, multipurpose MRI contrast agent with the bio-friendly Mn ion.

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Publication Details

Journal
Journal of Medicinal Chemistry
Published
2026-09-11
DOI
https://doi.org/10.1021/acs.jmedchem.6c02169
Primary Topic
Lanthanide and Transition Metal Complexes
Type
article
Field-Weighted Citation Impact
0.00

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article

A Rigid, Mono(Aquated) Mn(II)-Based Complex as MRI Contrast Agent for the Liver and Brain Vasculature Imaging

Geetanjali Deka, Priyanka Bhat, Arisha Arora, Chandan Mukherjee et al.
Journal of Medicinal Chemistry
Lanthanide and Transition Metal Complexes
article

A Rigid, Mono(Aquated) Mn(II)-Based Complex as MRI Contrast Agent for the Liver and Brain Vasculature Imaging

Geetanjali Deka, Priyanka Bhat, Arisha Arora, Chandan Mukherjee, Harsh Kumar Rawat, S. Senthil Kumaran, Hari Mohan
article en

Abstract

Abstract A new macrocyclic ligand (PCCy4A) featuring a lipophilic cyclohexylamine pendant arm and its corresponding Mn(II) complex {Na2[Mn(PCCy4A)]} have been developed. The complex exhibited high thermodynamic stability (log KMnL = 16.81 and pMn = 9.44 at [L] = [Mn] = 10−5 M, 25 °C), significant kinetic inertness [t1/2 = 63 h, at pH 6.0 (MES buffer)] when exposed to a 25-fold excess of Zn(II) ions, and excellent relaxivity (r1 = 3.14 mM−1 s−1, 1.41 T, 37 °C), which further increased 6-fold in the presence of serum albumin, demonstrating strong albumin affinity (69%; KA = 3.16 × 103 M−1). This results in a substantial boost in MRI signal intensity within the mouse brain vasculature at a dose of 0.08 mmol/kg. During T1-weighted imaging, 220% brightness enhancement was observed in the liver. Thus, Na2[Mn(PCCy4A)] was identified as a highly effective, multipurpose MRI contrast agent with the bio-friendly Mn ion.

Journal of Medicinal Chemistry
Indian Institute of Technology Guwahati (IN), All India Institute of Medical Sciences (IN), Maharshi Dayanand University (IN)
Department of Biotechnology, Ministry of Science and Technology, India, Indian Institute of Technology Guwahati
Openalex Percentile: Top 24%
Lanthanide and Transition Metal Complexes
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A Rigid, Mono(Aquated) Mn(II)-Based Complex as MRI Contrast Agent for the Liver and Brain Vasculature Imaging — Geetanjali Deka, Priyanka Bhat, et al. · Journal of Medicinal Chemistry (2026) | TGRS Research Map | TGRS