Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Rapid Catalyst Capture Enables Metal-Free Parahydrogen-Based Hyperpolarized Contrast Agents

View through CrossRef
Hyperpolarization techniques based on the use of parahydrogen provide orders of magnitude signal enhancement for magnetic resonance spectroscopy and imaging. The main drawback limiting widespread applicability of parahydrogen-based techniques in biomedicine is the presence of organometallic compounds (the polarization transfer catalysts) in solution with hyperpolarized contrast agents. These catalysts are typically complexes of platinum-group metals and their administration in vivo should be avoided. Herein, we show how extraction of a hyperpolarized compound from an organic phase to an aqueous phase combined with a rapid (less than 10 seconds) Ir-based catalyst capture by metal scavenging agents can produce pure parahydrogen-based hyperpolarized contrast agents as demonstrated by high-resolution nuclear magnetic resonance (NMR) spectroscopy and inductively coupled plasma atomic emission spectroscopy (ICP-AES). The presented methodology enables fast and efficient means of producing pure hyperpolarized aqueous solutions for biomedical and other uses.
Title: Rapid Catalyst Capture Enables Metal-Free Parahydrogen-Based Hyperpolarized Contrast Agents
Description:
Hyperpolarization techniques based on the use of parahydrogen provide orders of magnitude signal enhancement for magnetic resonance spectroscopy and imaging.
The main drawback limiting widespread applicability of parahydrogen-based techniques in biomedicine is the presence of organometallic compounds (the polarization transfer catalysts) in solution with hyperpolarized contrast agents.
These catalysts are typically complexes of platinum-group metals and their administration in vivo should be avoided.
Herein, we show how extraction of a hyperpolarized compound from an organic phase to an aqueous phase combined with a rapid (less than 10 seconds) Ir-based catalyst capture by metal scavenging agents can produce pure parahydrogen-based hyperpolarized contrast agents as demonstrated by high-resolution nuclear magnetic resonance (NMR) spectroscopy and inductively coupled plasma atomic emission spectroscopy (ICP-AES).
The presented methodology enables fast and efficient means of producing pure hyperpolarized aqueous solutions for biomedical and other uses.

Related Results

Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct Introduction Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Single-Chain Fluorinated Catalysts for Efficient SABRE Pyruvate Hyperpolarization and <100 ppb Iridium in Aqueous Solutions
Single-Chain Fluorinated Catalysts for Efficient SABRE Pyruvate Hyperpolarization and <100 ppb Iridium in Aqueous Solutions
Signal Amplification by Reversible Exchange (SABRE) delivers rapid and inexpensive NMR hyperpolarization using iridium-catalyzed transfer from parahydrogen. For biomedical translat...
Hyperpolarized MRI theranostics in cancer
Hyperpolarized MRI theranostics in cancer
Hyperpolarized magnetic resonance imaging (MRI) has emerged as a transformative tool in cancer diagnostics, enabling real-time, non-invasive assessment of tumor metabolism. By empl...
Improving the biocompatibility of parahydrogen hyperpolarized [1-13C]pyruvate
Improving the biocompatibility of parahydrogen hyperpolarized [1-13C]pyruvate
ParaHydrogen Induced Polarization is a hyperpolarization method much less technically demanding and affordable than d-DNP. The Side Arm Hydrogenation method allowed to obtain hyper...
Characterization of Distinctive In Vivo Metabolism between Enhancing and Non-Enhancing Gliomas Using Hyperpolarized Carbon-13 MRI
Characterization of Distinctive In Vivo Metabolism between Enhancing and Non-Enhancing Gliomas Using Hyperpolarized Carbon-13 MRI
The development of hyperpolarized carbon-13 (13C) metabolic MRI has enabled the sensitive and noninvasive assessment of real-time in vivo metabolism in tumors. Although several stu...
Pd-based bimetallic catalysts for parahydrogen-induced polarization in heterogeneous hydrogenations
Pd-based bimetallic catalysts for parahydrogen-induced polarization in heterogeneous hydrogenations
Abstract. Production of hyperpolarized catalyst-free gases and liquids by heterogeneous hydrogenation with parahydrogen can be useful for various technical as well as biomedical ap...
Biodiesel Production from Canola Oil Using TiO2CaO as a Heterogenous Catalyst
Biodiesel Production from Canola Oil Using TiO2CaO as a Heterogenous Catalyst
Biodiesel is one of the renewable energy sources that is an alternative to fossil diesel that is non-toxic and produces less CO emissions. Transesterification process is a conventi...

Back to Top