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Updated: Feb 5, 2026

In Vitro Differentiation of Human Mesenchymal Stem Cells into Functional Cardiomyocyte-like Cells
Published on: August 9, 2017
Amide-Forming Ligations at Physiological pH for the Encapsulation of Human Mesenchymal Stem Cells
Matilde Piras1, Simone Ponta2, Philipp Fisch2
1Laboratory of Organic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zürich, 8093 Zürich, Switzerland.
None:
The development of rapid, chemoselective covalent bond-forming reactions enables the assembly of hydrogel scaffolds suitable for applications in cellular encapsulation. We previously reported that amide-forming ligations between potassium acyltrifluoroborates (KATs) and hydroxylamines produce robust hydrogels that have excellent cytocompatibility, but the requirement for somewhat acidic conditions for efficient hydrogel assemblies limited their application to robust cell types. To overcome this constraint, we have recently found that quinolinium acyltrifluoroborates (QATs) serve as highly efficient reaction partners for amide-forming reactions at neutral pH. In this article, we document the construction of poly(ethylene glycol) (PEG)-derived hydrogels by efficient cross-linking of QAT-functionalized macromers with a partner hydroxylamine-functionalized macromer. Gelation occurs at physiological pH in under 2 min, offering a rapid and facile approach to the immobilization of delicate stromal cells. The cytocompatibility of the cross-linking was demonstrated by in situ gelation in the presence of human mesenchymal stem cells and sustained cell viability for 7 days. Facile incorporation of a cyclic cell adhesion peptide, simply by including the reaction partner in the gelation reactions, illustrated that the desired components can be introduced into the gels without further elaboration.
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The DCC-promoted synthesis of amides begins with the protonation of DCC by carboxylic acid. The protonation makes it a better acceptor. Next, the addition of carboxylate to the protonated carbodiimide gives a reactive acylating agent.
Subsequently, the amine acts as a nucleophile that attacks the acylating agent to form a tetrahedral intermediate. In the...
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Amides to Carboxylic Acids: Hydrolysis
Acid-catalyzed hydrolysis:
Hydrolysis of amides under acidic conditions yields carboxylic acids. Since the reaction occurs slowly, hydrolysis requires the conditions of heat.
The mechanism begins with the protonation of the carbonyl oxygen by the acid catalyst. The protonation makes the amide carbonyl carbon more...