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Biology subjects

Salmenkari, H.

Publications and source records attributed to Salmenkari, H..

2 recordsLinked to original sources

Long-chain polyphosphates induce glomerular microthrombi and exacerbate LPS-induced acute kidney injury in mouse

Polyphosphates are evolutionarily conserved anionic polymers mediating pleiotropic functions in eukaryotes and prokaryotes, depending on their chain-length. Bacteria typically synthetize long-chains, while human platelets harbour exclusively medium-chains. Polyphosphate-mediated lung and liver-injury have been reported in experimental mouse models but their effects on the kidney remain undefined. Here we assessed kidney histopathology and cytokine levels following intravenous administration of medium-chain (P100) and long-chain (P700) polyphosphates and their synergistic effects with lipopolysaccharides (LPS) in mice. We found that P700 induced albuminuria, renal Kim-1 and Lcn2 transcription, focal renal damage with glomerular microthrombi, tubular degeneration, granular phenotype of slit diaphragm components nephrin and ZO1, and enlarged electron dense vesicles in podocyte cytoplasm indicating lysosome swelling. P700 combined with LPS induced marked multifocal acute tubular necrosis in the cortex, and augmented LPS-induced proinflammatory cytokine levels. No notable effects were seen with P100, indicating that PolyP-mediated kidney injury development is dependent on chain-length. We conclude that long-chain polyphosphates may play a procoagulant role behind kidney injury, by inducing microthrombi characteristic of thrombotic microangiopathy and augmenting cytokine levels under inflammatory conditions.

pathology↗

Free acid β-hydroxybutyrate supplementation does not ameliorate dextran sodium sulfate-induced colitis similar to ketogenic diet in male mice

High-fat, low-carbohydrate ketogenic diets have been found to alleviate experimental colitis in rodents. These diets lead to increased endogenous production and utilization of ketone bodies, such as {beta}-hydroxybutyrate (BHB), and supplementation with exogenous ketones has arisen as a potential alternative to ketogenic diets. This study aimed to investigate how continuous high-dose feeding with free acid BHB influences experimental colitis compared to a ketogenic diet with the hypothesis that BHB would also alleviate the inflammation. We fed nine-week-old C57BL/6J male mice for four weeks with one of three diets: a low-fat control diet, a ketogenic diet, or a low-fat diet supplemented with free acid R-BHB and then induced colonic inflammation with dextran sodium sulfate (DSS). We assessed macroscopic and histological changes in the colon, intestinal permeability to fluorescein isothiocyanate dextran, colonic mRNA expression of tight junction proteins and inflammatory markers, fecal calprotectin, and microbiota composition. While the ketogenic diet alleviated DSS-induced weight loss, macroscopic changes, and histological lesions, the BHB-supplemented diet did not have the same effect. The pre-DSS composition of the microbiota was drastically different between the diet groups which may partly explain the different outcomes. In conclusion, high-dose supplementation with free acid BHB may not produce the same benefits as ketogenic diet in the context of colonic inflammation.

pharmacology and toxicology↗