Purpose: Obstructive sleep apnea hypopnea syndrome (OSAHS) is characterized by the aggravation of upper airway constriction or obstruction, and it is associated with high incidence of various metabolic diseases and high mortality. Continuous positive airway pressure (CPAP) is now recommended as the first-line therapy for OSAHS, but its application is limited by its unsatisfactory patient tolerance. Previous studies have showed that high flow nasal cannula (HFNC) may improve symptoms in some patients with OSAHS. Therefore, the aim of the present study was to evaluate the effect of HFNC on OSAHS in a larger cohort than in previous research and to study the details of its therapeutic characteristics.
Methods: Polysomnography recording with and without HFNC was performed in 56 OSAHS patients with a wide spectrum of disease severity. Subgroups were divided by different treatment response criteria to identify the effect of this device.
Results: Of 56 patients enrolled, 9 were of mild severity (AHI, 5 to <15 events/h), 30 were of moderate severity (AHI, 15 to <30 events/h), and 17 patients were severe (AHI ≥ 30 events/h); 34 patients were younger than 50 years old and 22 patients were older than 50 years old. AHI decreased significantly (from 26.9 ± 14.7 to 21.5 ± 17.0 events/h, p < 0.001) after HFNC treatment in general. The subjects of responder group accounted for 21%. There was a negative correlation between the difference of AI and the difference of HI in nonresponder group before and after HFNC treatment, and the negative correlation was strong (Pearson's test, r = - 0.804, p = 0.000). Of the patients with mild to moderate severity, 76% achieved any AHI reduction and 24% of patients achieved at least 50% reduction in AHI. Older patients (the age of responder group 52.6 ± 11.7 vs. nonresponder group 43.7 ± 12.1 years old, p < 0.05), especially patients older than 50 years, had a better response rate (≤ 50 years 9% vs. > 50 years 41%, p = 0.007).
Conclusion: HFNC may be useful in treating patients with OSAHS, especially older patients and those with mild to moderate severity. HFNC may be an alternative treatment when patients are intolerant of CPAP.
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http://dx.doi.org/10.1007/s11325-021-02453-6 | DOI Listing |
Anal Chim Acta
May 2025
Laboratory of Organic Chemistry, Wageningen University & Research, Stippeneng 4, Wageningen, 6708 WE, the Netherlands; Wageningen Food Safety Research, Wageningen University & Research, Akkermaalsbos 2, Wageningen, 6708 WB, the Netherlands. Electronic address:
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Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Av. Diagonal 645, Barcelona, E-08028, Spain.
Background: Ambient Mass Spectrometry (AMS) encompasses a group of techniques that have emerged as powerful strategies for direct, in-situ and high-throughput analysis, also in compliance with the principles of green analytical chemistry. Swab Touch Spray-Mass Spectrometry (Swab TS-MS) is a home-made AMS technique that involves the use of a medical swab as sampling tool and electrospray probe. To date, Swab TS-MS has been applied only for the analysis of small molecules, especially in forensic and medical fields, leaving the analysis of peptides and proteins still unexplored.
View Article and Find Full Text PDFJ Genet Eng Biotechnol
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Department of Veterinary Parasitology, College of Veterinary Science, Lala Lajpat Rai University of Veterinary and Animal Sciences, Hisar, Haryana 125004, India.
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Department of Ecology, University of Chicago, Chicago, Illinois 60637, USA.
Understanding how the auxin hormone signaling pathway components come together to orchestrate cellular responses is key to engineering the growth and development of maize. Although a variety of techniques exist to measure auxin activities in plants, many are time- and resource-intensive or do not easily allow for high-throughput quantitative measurement of component libraries. The AuxInYeast system is a synthetic biology tool that facilitates complex biochemical analysis of the auxin hormone signaling pathway from essentially any plant.
View Article and Find Full Text PDFCold Spring Harb Protoc
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Department of Biology, Whitman College, Walla Walla, Washington 99362, USA
The AuxInYeast system is a synthetic biology tool that facilitates complex biochemical analysis of the plant auxin hormone signaling pathway. As a plant synthetic biology chassis, yeast offers rapid growth, well-established genetic and biochemical tools, and core eukaryotic cellular machinery compatible with heterologous plant gene expression. The AuxInYeast system for maize consists of yeast cells containing the minimal necessary set of plant auxin signaling parts: a receptor (ZmTIR1/AFB), repressor (ZmIAA), corepressor (REL2), transcription factor (ZmARF), and auxin response -element (auxRE).
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