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Gangnus, T.

Publications and source records attributed to Gangnus, T..

3 recordsLinked to original sources

3-Hydroxypropanamidines: from antiplasmodial leads to a novel antibacterial scaffold

Arylamino alcohols constitute an established class of antimalarial agents. While this class is best known for its potent antiplasmodial activity, selected members, most notably mefloquine, have also been reported to exhibit antibacterial activity. Structurally related 3-hydroxypropanamidines were developed as highly potent antimalarial agents. Here, we explored the antibacterial activity of three 3-hydroxypropanamidines (4 (BLK278), 5 (BLK280), and 6 (TKK088)) against clinically relevant Gram-positive and Gram-negative bacteria and investigated their cytotoxicity, in vitro pharmacokinetic properties, and proteome-based bacterial response to treatment. We observed good antibacterial activity against Staphylococcus aureus, with 6 (TKK088) displaying the highest activity against multidrug-resistant MRSA and VISA strains. 5 (BLK280) demonstrated the greatest spectrum of activity acting also against clinically relevant Gram-negative strains of Escherichia coli, Acinetobacter baumannii, Klebsiella pneumoniae, Klebsiella aerogenes, and Shigella sonnei. In cytotoxicity assays with HUVEC and HAOSMC cells, 4 (BLK278) and the previously reported 7 (TKK129) showed the most favourable overall profiles among the investigated 3-hydroxypropanamidines. The selectivity indices for S. aureus were below 2.5 with clear cell-type-dependent differences for all compounds including mefloquine, suggesting that improving antibacterial selectivity is an important objective for further optimization. In vitro pharmacokinetics showed high plasma protein binding and good human microsomal and plasma stability for all three 3-hydroxypropanamidines. Gel-based proteomic responses revealed a strong impact on the bacterial cell envelope. The observed acute proteomic responses reflect pleiotropic effects and are consistent with earlier reports implicating F0F1-ATPase as a potential molecular target of mefloquine in Streptococcus pneumoniae.

microbiology↗

Discovery of the first small-molecule extracellular inhibitor of KCa3.1

The ion channel KCa3.1 plays a role in immune regulation, red blood cell function, and is linked to numerous types of cancer. Various animal toxins, such as maurotoxin, bind to the extracellular side of KCa3.1, providing a potential starting point for inhibitor development. We report in this work the discovery of a novel, small-molecule inhibitor, with a micromolar IC50, which was specifically designed to target plasma-membrane KCa3.1 channels from the extracellular side. This compound can serve as a starting point for the development of more selective inhibitors and probes. For the identification of new extracellular inhibitors, molecular dynamics simulations were performed using the experimental structures of KCa3.1 and maurotoxin. The simulations produced a validated binding mode, highlighting key residues involved in the interaction between the toxin and the channel. These findings laid the foundation for the structure-based identification of novel extracellular small-molecule inhibitors of KCa3.1. The Molport database, containing approximately 50 million compounds, was screened using protein-ligand docking, yielding a hit molecule that was experimentally confirmed using patch clamp assays.

pharmacology and toxicology↗

Bradykinin Contributes to Vasogenic Edema in Murine Experimental Cerebral Malaria

Cerebral malaria (CM) due to Plasmodium falciparum (Pf) infection is a major cause of death in African children. Bradykinin (BK) is a mediator of vasogenic edema. It could contribute to the pathogenesis of central nervous system malaria in Kenyan children and P. berghei ANKA (PbA) infected C57BL/6J mice with experimental cerebral malaria. Cleaved plasma high molecular weight kininogen (cHK) is a marker for prior BK release. 40% of children with central nervous system malaria had plasma cHK versus 18% of children with uncomplicated malaria. Wild-type PbA-infected mice had circulating plasma cHK, elevated BK levels, and reduced HK and prekallikrein levels. HK null (Kng1-/-), combined BK B1 and B2 receptor null (Bdkrb1-/- / Bdkrb2-/-), BK B2 (Bdkrb2-/-) or BK B1 (Bdkrb1-/-) receptor null mice were protected from neurologic deterioration and brain edema compared to wild-type mice. F12-/-mice were not protected from neurological deterioration. Prekallikrein null (Klkb1-/-), prolylcarboxypeptidase hypomorphs (Prcpgt/gt), and brain endothelial cell conditional knockout of PRCP (Prcpfl/fl Cre) mice had reduced neurologic deterioration and brain edema. Adjuvant plasma kallikrein inhibition combined with artesunate treatment of PbA-infected mice reversed neurologic deterioration and brain edema and prolonged survival relative to artesunate alone. BK-induced vasogenic edema contributes to human and murine CM.

pathology↗