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Objective: To determine whether a slower, flexible titration regimen of semaglutide would improve adherence and reduce gastrointestinal adverse events (GI-AEs) compared with the label-recommended regimen in patients with type 2 diabetes (T2D).
Research Design And Methods: A total of 104 patients with T2D were randomized to label-recommended titration (0.25 mg, 0.5 mg, 1 mg at 4-week intervals) or flexible titration (starting at 0.0675 mg [measured as five clicks made by the dose selector dial], with gradual increases by 0.0675 mg/week and delays for GI-AEs) for 26 weeks.
Results: While final doses were similar between groups, only 2% of patients in the flexible arm withdrew due to GI-AEs vs. 19% in the label arm (P = 0.005). The flexible arm reported less nausea (45.1% vs. 64.2%; P = 0.051) and asthenia (9.8% vs. 24.5%; P = 0.047), with fewer days experiencing nausea (2.88 vs. 6.3 days; P = 0.017). HbA1c and BMI changes were similar between groups.
Conclusions: Slower, flexible titration improved adherence and reduced adverse events without compromising efficacy.
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http://dx.doi.org/10.2337/dc25-0690 | DOI Listing |
Anal Chim Acta
October 2025
College of Marine Science, University of South Florida, St. Petersburg, USA. Electronic address:
Background: Total alkalinity (A) is a fundamental parameter in understanding the oceanic cycling of carbon dioxide (CO). Measurements of the A of natural waters are typically obtained through single- or multi-step titrations using a strong acid, with the endpoint pH determined via potentiometry or spectrophotometry. Conventional A determinations are labor-intensive and require precise knowledge of the sample's weight or volume.
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August 2025
Chemistry Department, Bowling Green State University, Bowling Green, Ohio, 43403, USA.
Self-organizing macrocyclic receptor-sensors for phosphorus oxyanions, phosphates, and phosphonates comprising imine moieties were prepared by condensation of dipyrrolylmethane dicarbaldehyde with diethylene triamine. The incorporation of flexible ethylene moieties endows the macrocycle with unprecedented flexibility and ability to accommodate numerous phosphorus oxyanions from orthophosphate to large anions such as ATP or phosphonate glyphosate. The anion binding was elucidated by NMR titrations, low-temperature NMR, and NOESY NMR.
View Article and Find Full Text PDFInt J Biol Macromol
August 2025
Department of New Biology, Daegu Gyeongbuk Institute of Science & Technology (DGIST), Daegu 42988, Republic of Korea. Electronic address:
IscU, a key scaffold protein mediating the biogenesis of iron‑sulfur (FeS) clusters, exhibits metamorphic characteristics crucial for its versatile and efficient function. Previous studies have demonstrated that IscU has two interconverting conformations: the structured state (S-state) and the disordered state (D-state), each contributing to its distinct functionality and interaction network. Despite its physiological importance, the precise mechanism underpinning the maintenance of IscU's unique structural heterogeneity has remained elusive.
View Article and Find Full Text PDFCommun Biol
August 2025
Human and Animal Physiology, Wageningen University & Research, Wageningen, The Netherlands.
Cardiovascular diseases are often associated with impairment in mitochondrial function. However, existing respirometry measuring mitochondrial function are limited by the necessity of fresh tissue samples. This study develops a method with tailored substrate-inhibitor titration (TSIT) of mitochondrial electron transport complexes (ETC) to measure mitochondrial function in frozen cardiac samples using high-resolution respirometry.
View Article and Find Full Text PDFBiosens Bioelectron
November 2025
State Key Laboratory of Chemical Safety, College of Control Science and Engineering, China University of Petroleum (East China), Qingdao, 266580, China. Electronic address:
Wearable biochemical sensors enabling non-invasive monitoring of biomarkers in bodily fluids play a pivotal role in advancing personalized healthcare. The state-of-the-art wireless and wearable biochemical sensors still suffer from large form factors, poor detection accuracy due to sample-to-sample variation, short and weak wireless communication, and difficulty to integrate with data processing algorithm on a system level. To solve these problems, this work develops an all-range wireless and wearable biochemical sensing platform which can be integrated in a diaper for monitoring four urine biomarkers (dimethylamine, creatinine, glucose, and H) with two switchable wireless modes.
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