TY - JOUR
T1 - Inosine-5-monophosphate coordination complex as a unique fluorescence detector for the amino-acids
AU - Aqil, Hafiz Zeshan
AU - Zhu, Yanhong
AU - Khan, Yaqoot
AU - Sandhu, Beenish
AU - Irfan, Muhammad
AU - Li, Hui
N1 - Publisher Copyright:
© 2026 Elsevier B.V. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
PY - 2026/10/25
Y1 - 2026/10/25
N2 - The role of selective determination of the amino acids has remained a big challenge in the field of diagnostics for certain cancer cell lines. Conventional approaches for the selective and sensitive analysis, and detection of the amino acids require cost ineffective techniques like MS (mass spectrometry) and PCR (Polymerase Chain Reactions). In the current study, the selective determination of two aromatic amino acids Trp (Tryptophan) and Tyr (Tyrosine) by a Co(II) inosine-5′-monophospate coordination complex (C-1) was evaluated. Both amino acids are important biomarkers in gastroesophageal cancers and triple negative breast cancer. The assessment of the structure of complex was done by XRD (X-Ray Diffraction), while the phase determination and chirality were determined by PXRD (Powder X-Ray Diffraction) and CD (Circular Dichroism). Among the 20 natural amino acids, selective behavior of C-1 towards l-Tryptophan (Trp) and l-Tyrosine (Tyr) have been observed; the determination of selective binding was determined by both fluorescence and UV-visible spectrographs. Molecular simulations and molecular dynamics highlighted a significant affinity for l-Trp and l-Tyr, which is mediated by metal-ligand coordination and π-π stacking interaction. An important finding was that spontaneous binding was indicated by the shift in Gibbs free energy. The binding constants (kb) for Trp and Tyr were found to be 4.87 × 10³ M⁻¹ and 6.00 × 10⁴ M⁻¹, respectively. The measured detection limits (LOD) for Trp and Tyr, were 0.09 and 0.32 µM, respectively. Notably, current research highlights a green and human friendly single crystal enabled wavelength-resolved quantitative detection of both Trp and Tyr, underscoring the dual-analyte sensing advantage of the present system.
AB - The role of selective determination of the amino acids has remained a big challenge in the field of diagnostics for certain cancer cell lines. Conventional approaches for the selective and sensitive analysis, and detection of the amino acids require cost ineffective techniques like MS (mass spectrometry) and PCR (Polymerase Chain Reactions). In the current study, the selective determination of two aromatic amino acids Trp (Tryptophan) and Tyr (Tyrosine) by a Co(II) inosine-5′-monophospate coordination complex (C-1) was evaluated. Both amino acids are important biomarkers in gastroesophageal cancers and triple negative breast cancer. The assessment of the structure of complex was done by XRD (X-Ray Diffraction), while the phase determination and chirality were determined by PXRD (Powder X-Ray Diffraction) and CD (Circular Dichroism). Among the 20 natural amino acids, selective behavior of C-1 towards l-Tryptophan (Trp) and l-Tyrosine (Tyr) have been observed; the determination of selective binding was determined by both fluorescence and UV-visible spectrographs. Molecular simulations and molecular dynamics highlighted a significant affinity for l-Trp and l-Tyr, which is mediated by metal-ligand coordination and π-π stacking interaction. An important finding was that spontaneous binding was indicated by the shift in Gibbs free energy. The binding constants (kb) for Trp and Tyr were found to be 4.87 × 10³ M⁻¹ and 6.00 × 10⁴ M⁻¹, respectively. The measured detection limits (LOD) for Trp and Tyr, were 0.09 and 0.32 µM, respectively. Notably, current research highlights a green and human friendly single crystal enabled wavelength-resolved quantitative detection of both Trp and Tyr, underscoring the dual-analyte sensing advantage of the present system.
KW - Amino acid detection
KW - Coordination complex
KW - Inosine-5′-monophosphate
KW - Tryptophan
KW - Tyrosine
UR - https://www.scopus.com/pages/publications/105040730691
U2 - 10.1016/j.molstruc.2026.146564
DO - 10.1016/j.molstruc.2026.146564
M3 - Article
AN - SCOPUS:105040730691
SN - 0022-2860
VL - 1373
JO - Journal of Molecular Structure
JF - Journal of Molecular Structure
M1 - 146564
ER -