Results 91 to 100 of about 304 (166)
Tau Pathology in Alzheimer's Disease Uniquely Affects Sulcal Depths
Objective Though it is widely known that tau deposition affects brain structure, the precise localization of these effects is poorly understood, especially in relation to gyral and sulcal anatomy. We investigated whether tau pathology in Alzheimer's disease (AD) preferentially affects sulci, and particularly sulcal depths.
Samira A. Maboudian +10 more
wiley +1 more source
ЮлÑÑ ÐеонÑдÑвна; ÐаÑÑоналÑний авÑаÑÑйний ÑнÑвеÑÑиÑÐµÑ Ð®ÑинеÑÑ +1 more
openalex +1 more source
The incubation of primary astrocytes with fAuNCs‐BSA induces: (A) long‐term effects including fAuNCs‐BSA internalization, red cell fluorescence, differentiation, upregulation of Ca2+ signaling, Cl‐current, and cell volume regulation. B) Short‐term (200 ms) stimulation with UV LED light increases in Ca2+ signaling and inhibition of K+ current. Astrocyte
Roberta Fabbri +21 more
wiley +1 more source
ABSTRACT Rolling‐circle amplification (RCA) is a completely synthetic and rapid mechanism for scaling‐up bulk DNA that eliminates requirements for large‐scale bacterial fermentation. Several reports have described the surprising ability of large unprocessed (hyperbranched) rolling circle‐amplified DNA (RCA DNA) to effectively transfect cultured cells ...
Evelina Loghin +8 more
wiley +1 more source
Phenazine‐Based Synthetic Biology to Signal Between Cells and Electrodes
ABSTRACT Bioelectronic systems that enable seamless communication between electronic devices and living systems represent a transformative frontier in biotechnology. Among available methodologies, redox based signaling offers unique advantages due to its ubiquity in biology and compatibility with standard electrochemical equipment, expanding on ...
Eric VanArsdale +8 more
wiley +1 more source
ABSTRACT Biopharmaceutical manufacturing requires robust analytics and process controls throughout production to insure high yield of quality products. New methodologies for rapidly accessing and integrating data‐rich information from complex dynamic biological environments are of great interest.
Kayla Chun +8 more
wiley +1 more source
СеÑгÑй ÐлекÑандÑовиÑ; ÐаÑÑоналÑний авÑаÑÑйний ÑнÑвеÑÑиÑÐµÑ ÐнаÑÑк +2 more
openalex +1 more source

