NANOSCALE QUANTIFICATION OF THE BIOPHYSICAL CHARACTERIZATION OF COMBRETASTATIN A-4-TREATED TUMOR CELLS USING ATOMIC FORCE MICROSCOPY.

Nanoscale quantification of the biophysical characterization of combretastatin A-4-treated tumor cells using atomic force microscopy.

As an inhibitor of microtubule assembly, combretastatin A-4 (CA-4)-induced biological motovox scooter parts responses in tumor cells have been well known, but the corresponding changes in nano-biophysical properties were not investigated given the lack of an ideal tool.Using AFM technique, we investigated the alteration of nano-biophysical properti

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A semi-supervised approach of short text topic modeling using embedded fuzzy clustering for Twitter hashtag recommendation

Abstract Social media stands as a crucial information source across various real-world argento romano countertop challenges.Platforms like Twitter, extensively used by news outlets for real-time updates, categorize news via hashtags.These hashtags act as pivotal meta-information for linking tweets to underlying themes, yet many tweets lack them, po

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Understanding the Effects of Spacecraft Trajectories through Solar Coronal Mass Ejection Flux Ropes Using 3DCOREweb

This study investigates the impact of spacecraft positioning and trajectory on in situ signatures of coronal mass ejections (CMEs).Employing the 3DCORE model, a 3D flux rope model that can generate in situ profiles for any given point in space and time, we conduct forward modeling to analyze such signatures for various latitudinal and longitudinal

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Metabolomic profiling of overnight peritoneal dialysis effluents predicts the peritoneal equilibration test type

Abstract This study primarily aimed to evaluate whether peritoneal equilibration test (PET) results can be predicted through the metabolomic analysis of overnight peritoneal dialysis (PD) effluents.From a total of 125 patients, overnight PD effluents on the day of the first PET after PD initiation were analyzed.A modified 4.25% dextrose PET was per

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