Publications by authors named "M Pieper"

Aims: Sodium-glucose co-transporter 2 inhibitors (SGLT2i) show a cardioprotective effect in heart failure and myocardial infarction, pathologies often associated with low-grade inflammation. This cross-sectional study aims to investigate whether low-grade inflammation regulates SGLT2 expression and function in human vasculature, heart, and endothelial cells (ECs).

Methods And Results: Human internal thoracic artery (ITA), left ventricle (LV) specimens, and cultured porcine coronary artery ECs were used.

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Biomedical applications such as drug delivery, tissue engineering, and functional surface coating rely on switchable adsorption and desorption of specialized guest molecules. Poly(dehydroalanine), a polyzwitterion containing pH-dependent positive and negative charges, shows promise for such reversible loading, especially when integrated into a gel network. Herein, we present the fabrication of poly(dehydroalanine)-derived gels of different size scales and evaluate them with respect to their practical use in biomedicine.

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Article Synopsis
  • * In experiments with mice, SGLT2 knockout mice showed only mild heart dysfunction, while EMPA significantly improved heart function and reduced fibrosis, edema, and oxidative stress in both normal and SGLT2 knockout mice.
  • * The study suggests that EMPA's protective effects come from its interaction with the sodium hydrogen exchanger 1 (NHE1) and nitric oxide (NO) pathways rather than through SGLT2 inhibition, highlighting the importance of targeting NHE1 for heart failure treatment. *
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Glycans, composed of linked monosaccharides, play crucial roles in biology and find diverse applications. Enhancing their enzymatic synthesis can be achieved by immobilizing enzymes on materials such as microgels. Here, we present microgels with immobilized glycosyltransferases, synthesized through droplet microfluidics, immobilizing enzymes either via encapsulation or postattachment.

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