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Purpose Of Review: Patients with chronic kidney disease characteristically exhibit microcirculatory dysfunction, in combination with vascular damage. Hemodialysis superimposes additional circulatory stress to the microvasculature (repetitive ischemic insults/cumulative damage) resulting in high mortality. Intradialytic monitoring and hemodialysis delivery is currently limited to macrovascular/systemic assessment and detection of intradialytic systemic hypotension. Monitoring of the microcirculation has the potential to provide valuable information on hemodialysis-induced circulatory stress likely to result in end-organ ischemia (with/without systemic hypotension) generating an opportunity to intervene before tissue injury occurs.
Recent Findings: Various noninvasive technologies have been used assessing the microcirculation in hemodialysis patients at rest. Some technologies have also been applied during hemodialysis studying the effects of treatment on the microcirculation. Despite the approach used, results are consistent. Hemodialysis patients have impaired microcirculations with treatment adding additional stress to inadequately regulated vascular beds. Utility/practicality/clinical relevance vary significantly between methodologies.
Summary: Intradialytic monitoring of the microcirculation can provide additional insights into a patient's individual response to treatment. However, this valuable perspective has not been adopted into clinical practice. A microcirculatory view could provide a window of opportunity to enable a precision medicine approach to treatment delivery improving current woefully poor subjective and objective clinical outcomes.
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http://dx.doi.org/10.1097/MNH.0000000000000831 | DOI Listing |
Nat Aging
September 2025
Aging Biomarker Consortium (ABC), Beijing, China.
The global surge in the population of people 60 years and older, including that in China, challenges healthcare systems with rising age-related diseases. To address this demographic change, the Aging Biomarker Consortium (ABC) has launched the X-Age Project to develop a comprehensive aging evaluation system tailored to the Chinese population. Our goal is to identify robust biomarkers and construct composite aging clocks that capture biological age, defined as an individual's physiological and molecular state, across diverse Chinese cohorts.
View Article and Find Full Text PDFBiochem Biophys Res Commun
September 2025
Graduate School of Engineering, Muroran Institute of Technology, Muroran, Hokkaido, 050-8585, Japan. Electronic address:
Amylin aggregation and the resulting fibrotic toxicity are associated with the pathogenesis of type 2 diabetes mellitus (T2DM). This study evaluated the protective effects of rosmarinic acid (RA) against amylin-induced toxicity in a zebrafish model. Healthy zebrafish embryos from cell stages 1-8 were microinjected with a mixture of 50 μM amylin and 20 μM thioflavin-T (ThT) to induce amylin aggregation and fluorescently label fibril deposition.
View Article and Find Full Text PDFElife
September 2025
Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Sickness-induced sleep is a behavior conserved across species that promotes recovery from illness, yet the underlying mechanisms are poorly understood. Here, we show that interleukin-6-like cytokine signaling from the gut to brain glial cells regulates sleep. Under healthy conditions, this pathway promotes wakefulness.
View Article and Find Full Text PDFRes Pract Thromb Haemost
July 2025
Department of Haematology, Jagiellonian University Medical College, Krakow, Poland.
Background: Acquired von Willebrand syndrome (AVWS) is a rare bleeding disorder due to a deficiency of von Willebrand factor (VWF). High shear stress causes stretching and rupture of VWF multimers, leading to functional loss and increased proteolysis. This occurs in cardiovascular diseases, reducing high-molecular-weight multimers (HMWMs).
View Article and Find Full Text PDFDynamic alteration of blood vessel geometry is an inherent feature of the circulatory system. However, while the engineering of multiscale, branched, and interconnected blood vessels has been well explored, mimicking the dynamic behavior (e.g.
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