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Dive into the research topics where Kristoffer Rosenstand is active.

Publication


Featured researches published by Kristoffer Rosenstand.


British Journal of Pharmacology | 2016

Endothelin-1 shifts the mediator of bradykinin-induced relaxation from NO to H2 O2 in resistance arteries from patients with cardiovascular disease.

Thomas Leurgans; Maria Bloksgaard; Jonathan R. Brewer; Luis A. Bagatolli; Maise Høigaard Fredgart; Kristoffer Rosenstand; Maria Lyck Hansen; Lars Melholt Rasmussen; Akhmadjon Irmukhamedov; Jo G. R. De Mey

We tested the hypothesis that in resistance arteries from cardiovascular disease (CVD) patients, effects of an endothelium‐dependent vasodilator depend on the contractile stimulus.


American Journal of Physiology-heart and Circulatory Physiology | 2017

Imaging and modeling of acute pressure-induced changes of collagen and elastin microarchitectures in pig and human resistance arteries

Maria Bloksgaard; Thomas Leurgans; Bart Spronck; Maarten Heusinkveld; Bjarne Thorsted; Kristoffer Rosenstand; Inger Nissen; Ulla Melchior Hansen; Jonathan R. Brewer; Luis A. Bagatolli; Lars Melholt Rasmussen; Akhmadjon Irmukhamedov; Koen D. Reesink; Jo G. R. De Mey

The impact of disease-related changes in the extracellular matrix (ECM) on the mechanical properties of human resistance arteries largely remains to be established. Resistance arteries from both pig and human parietal pericardium (PRA) display a different ECM microarchitecture compared with frequently used rodent mesenteric arteries. We hypothesized that the biaxial mechanics of PRA mirror pressure-induced changes in the ECM microarchitecture. This was tested using isolated pig PRA as a model system, integrating vital imaging, pressure myography, and mathematical modeling. Collagenase and elastase digestions were applied to evaluate the load-bearing roles of collagen and elastin, respectively. The incremental elastic modulus linearly related to the straightness of adventitial collagen fibers circumferentially and longitudinally (both R2 ≥ 0.99), whereas there was a nonlinear relationship to the internal elastic lamina elastin fiber branching angles. Mathematical modeling suggested a collagen recruitment strain (means ± SE) of 1.1 ± 0.2 circumferentially and 0.20 ± 0.01 longitudinally, corresponding to a pressure of ~40 mmHg, a finding supported by the vital imaging. The integrated method was tested on human PRA to confirm its validity. These showed limited circumferential distensibility and elongation and a collagen recruitment strain of 0.8 ± 0.1 circumferentially and 0.06 ± 0.02 longitudinally, reached at a distending pressure below 20 mmHg. This was confirmed by vital imaging showing negligible microarchitectural changes of elastin and collagen upon pressurization. In conclusion, we show here, for the first time in resistance arteries, a quantitative relationship between pressure-induced changes in the extracellular matrix and the arterial wall mechanics. The strength of the integrated methods invites for future detailed studies of microvascular pathologies.NEW & NOTEWORTHY This is the first study to quantitatively relate pressure-induced microstructural changes in resistance arteries to the mechanics of their wall. Principal findings using a pig model system were confirmed in human arteries. The combined methods provide a strong tool for future hypothesis-driven studies of microvascular pathologies.


Vascular Biology 2017 - North American Vascular Biology Organisation | 2017

Correction for shrinkage during histological processing allows retrieval of the wall to lumen ratio of biobanked human reistance arteries

Maria Bloksgaard; Kristoffer Rosenstand; Inger Nissen; Niels Marcussen; Jo G. R. De Mey


Journal of Vascular Research | 2017

Media - to -lumen ratio and contractility of resistance arteries from cardiovascular disease patients

Jo G. R. De Mey; Thomas Leurgans; Susanne Hansen; Katrine Dueholm Nissen; Inger Nissen; Kristoffer Rosenstand; Akhmadjon Irmukhamedov; Lars Riber; Lars Melholt Rasmussen; Maria Bloksgaard


Journal of Vascular Research | 2017

Collagen recruitment at low pressure limits distension of human resistance arteries

Maria Bloksgaard; Kristoffer Rosenstand; Jonathan R. Brewer; Koen D. Reesink; Lars Melholt Rasmussen; Akhmadjon Irmukhamedov; Jo G. R. De Mey


Journal of Vascular Research | 2017

Shrinkage significantly influences morphometric evaluation of the wall to lumen ratio

Maria Bloksgaard; Kristoffer Rosenstand; Inger Nissen; Niels Marcussen; Jo G. R. De Mey


9th Annual Meeting Danish Society for Pharmacology | 2017

Determinants of the Maximal contractile Reactivity of Pericardial Resistance Arteries from Cardio-Thoracic Surgery Patients

Maria Bloksgaard; Jo G. R. De Mey; Susanne Hansen; Maria Lyck Hansen; Akhmadjon Irmukhamedov; Pia Jensen; Thomas Leurgans; Niels Marcussen; Isabel Nguyen; Inger Nissen; Katrine Dueholm Nissen; Simone Rørdam Preil; Lars Melholt Rasmussen; Lars Riber; Kristoffer Rosenstand


Meeting on Endothelium-Dependent Hyperpolarizations in Health and Disease | 2015

Microarchitecture of the internal elastic lamina (IEL) in human resistance arteries from different vascular beds

Maria Bloksgaard; Thomas Leurgans; Kristoffer Rosenstand; Inger Nissen; Jonathan R. Brewer; Akhmadjon Irmukhamedov; Lars Melholt Rasmussen; Jo G. R. De Mey


ISRA 2014: International Symposium on Resistance Arteries | 2014

Pericardial resistance arteries show biaxial mechanics and pressure dependent microarchitecture of the extracellular matrix

Maria Bloksgaard; Thomas Leurgans; Kristoffer Rosenstand; Pia Jensen; Maria Lyck Hansen; Jonathan R. Brewer; Luis A. Bagatolli; Niels Marcussen; Akhmadjon Irmukhamedov; Lars Melholt Rasmussen; Jo G. R. De Mey


Vascular Biology 2013: North American Vascular Biology Organisation meeting | 2013

Elastin and Mechanics of Pig Pericardial Resistance Arteries (pPRA)

Maria Bloksgaard; Thomas Leurgans; Kristoffer Rosenstand; Jonathan R. Brewer; Luis A. Bagatolli; Akhmadjon Irmukhamedov; Lars Melholt Rasmussen; Jo G. R. De Mey

Collaboration


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Jo G. R. De Mey

University of Southern Denmark

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Maria Bloksgaard

University of Southern Denmark

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Thomas Leurgans

University of Southern Denmark

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Inger Nissen

University of Southern Denmark

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Jonathan R. Brewer

University of Southern Denmark

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Luis A. Bagatolli

University of Southern Denmark

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Niels Marcussen

Odense University Hospital

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Maria Lyck Hansen

Odense University Hospital

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