Area of research
Materials Chemistry · Oncology
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Metal complexes synthesis and properties, and Radiopharmaceutical Chemistry and Applications.
The recovery and separation of lithium by using solvent extraction methods
Transdermal Hydrogen Sulfide Delivery Enabled by Open-Metal-Site Metal–Organic Frameworks
Limiting Mrs2-dependent mitochondrial Mg2+ uptake induces metabolic programming in prolonged dietary stress
Metal Coordination Complexes as Therapeutic Agents for Ischemia-Reperfusion Injury
Preserving and enhancing mitochondrial function after stroke to protect and repair the neurovascular unit: novel opportunities for nanoparticle-based drug delivery
Construction of the Bioconjugate Py‐Macrodipa‐PSMA and Its In Vivo Investigations with Large <sup>132/135</sup>La<sup>3+</sup> and Small <sup>47</sup>Sc<sup>3+</sup> Radiometal Ions
Metal Complexes as Antifungals? From a Crowd-Sourced Compound Library to the First <i>In Vivo</i> Experiments
Advancing Chelation Strategies for Large Metal Ions for Nuclear Medicine Applications
H<sub>2</sub>BZmacropa-NCS: A Bifunctional Chelator for Actinium-225 Targeted Alpha Therapy
<sup>225</sup>Ac-MACROPATATE: A Novel α-Particle Peptide Receptor Radionuclide Therapy for Neuroendocrine Tumors
Chelating Rare-Earth Metals (Ln<sup>3+</sup>) and <sup>225</sup>Ac<sup>3+</sup> with the Dual-Size-Selective Macrocyclic Ligand Py<sub>2</sub>-Macrodipa
Towards the stable chelation of radium for biomedical applications with an 18-membered macrocyclic ligand
Harnessing <b>α</b>-Emitting Radionuclides for Therapy: Radiolabeling Method Review
Py-Macrodipa: A Janus Chelator Capable of Binding Medicinally Relevant Rare-Earth Radiometals of Disparate Sizes
Therapeutic and Diagnostic Applications of Multimetallic Rhenium(I) Tricarbonyl Complexes
Tuning the Kinetic Inertness of Bi<sup>3+</sup> Complexes: The Impact of Donor Atoms on Diaza-18-Crown-6 Ligands as Chelators for <sup>213</sup>Bi Targeted Alpha Therapy
Biocompatible metal–organic frameworks for the storage and therapeutic delivery of hydrogen sulfide
Accessing lanthanide-based, <i>in situ</i> illuminated optical turn-on probes by modulation of the antenna triplet state energy
Chelating the Alpha Therapy Radionuclides <sup>225</sup>Ac<sup>3+</sup> and <sup>213</sup>Bi<sup>3+</sup> with 18-Membered Macrocyclic Ligands Macrodipa and Py-Macrodipa
A suitable time point for quantifying the radiochemical purity of 225Ac-labeled radiopharmaceuticals
Emergence of repurposed drugs as modulators of MCU channel for clinical therapeutics
Metal complexes as a promising source for new antibiotics
Endoplasmic reticulum stress: an arising target for metal-based anticancer agents
Macrocyclic Ligands with an Unprecedented Size-Selectivity Pattern for the Lanthanide Ions
The cell-permeable mitochondrial calcium uniporter inhibitor Ru265 preserves cortical neuron respiration after lethal oxygen glucose deprivation and reduces hypoxic/ischemic brain injury
Nontoxic Cobalt(III) Schiff Base Complexes with Broad‐Spectrum Antifungal Activity
Exploring the In Vivo and In Vitro Anticancer Activity of Rhenium Isonitrile Complexes
Tuning the Separation of Light Lanthanides Using a Reverse-Size Selective Aqueous Complexant
A Selective and Cell-Permeable Mitochondrial Calcium Uniporter (MCU) Inhibitor Preserves Mitochondrial Bioenergetics after Hypoxia/Reoxygenation Injury
In Vivo Anticancer Activity of a Rhenium(I) Tricarbonyl Complex
Expanding and Improving the Toolkit of Mitochondrial Calcium Uptake Inhibitors
Ruthenium Coordination Complexes as Tools for Studying Biological Hydrogen Sulfide
CAREER: Active Feedback to Control Dynamic Quantum Phases
Ruthenium Coordination Complexes as Tools for Studying Biological Hydrogen Sulfide
CAREER: A Toolkit to Modulate the Mitochondrial Calcium Uptake Machinery