Ultra-inert lanthanide chelates as mass tags for multiplexed bioanalysis

Author:

Polasek Miloslav1ORCID,David Tomáš1ORCID,Šedinová Miroslava1ORCID,Myšková Aneta1ORCID,Kuneš Jaroslav1ORCID,Maletinska Lenka2ORCID,Pohl Radek3ORCID,Dračínský Martin4ORCID,Mertlíková-Kaiserová Helena1,Čížek Karel1,Klepetářová Blanka1,Litecká Miroslava5,Kaňa Antonín6ORCID,Sýkora David6ORCID,Jaroš Adam1ORCID,Straka Michal1ORCID

Affiliation:

1. Institute of Organic Chemistry and Biochemistry of the CAS

2. Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Flemingovo nám. 2, 16610 Prague 6

3. IOCB

4. Institute of Organic Chemistry and Biochemistry ASCR, v.v.i.

5. Institute of Inorganic Chemistry of the CAS

6. University of Chemistry and Technology Prague

Abstract

Abstract Coordination compounds of lanthanides are indispensable in biomedical applications as MRI contrast agents and radiotherapeutics. However, since the introduction of the chelator DOTA four decades ago, there has been only limited progress on improving their thermodynamic stability and kinetic inertness, which are essential for safe in-vivo use. Here, we present ClickZip, an innovative synthetic strategy employing a coordination-templated formation of a 1,5-triazole bridge that improves kinetic inertness up to a million-fold relative to DOTA, expanding utility of lanthanide chelates beyond traditional uses. Acting as unique mass tags, the ClickZip chelates can be released from (biological) samples by acidic hydrolysis, chromatographically distinguished from interfering lanthanide species, and sensitively detected by mass spectrometry. Lanthanides enclosed in ClickZip chelates are chemically almost indistinguishable, providing a more versatile alternative to chemically identical isotopic labels for multiplexed analysis. The bioanalytical potential is demonstrated on tagged cell-penetrating peptides in vitro, and anti-obesity prolactin-releasing peptides in vivo.

Publisher

Research Square Platform LLC

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