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Articles 61 - 63 of 63
Full-Text Articles in Biophysics
Signaling Through Homomeric And Heteromeric Cannabinoid Cb1 Receptors, Guoqing Xiang
Signaling Through Homomeric And Heteromeric Cannabinoid Cb1 Receptors, Guoqing Xiang
Theses and Dissertations
Cannabis (Marijuana) has multiple effects on the human body, such as analgesia, euphoria and memory impairment. Delta-9 tetrahydrocannabinol (D9-THC), the active ingredient in cannabis, binds to cannabinoid receptors, seven-transmembrane G protein-coupled receptors (GPCRs) that mediate a variety of physiological functions. GPCRs were believed to function only in homomeric forms, however, recent findings show that different GPCRs can also form heteromeric complexes that may expand their signaling properties. In this study, we focused on Cannabinoid CB1 receptor (CB1R) heteromers with the mu-opioid receptor (MOR) and the Dopamine type 2 receptor (D2R), respectively. We utilized a variety of techniques, such as the …
Nicotinic Acetylcholine Receptor Dependent Effects Of Nicotine On Hek293t And Hbo Cells, James D. Larsen
Nicotinic Acetylcholine Receptor Dependent Effects Of Nicotine On Hek293t And Hbo Cells, James D. Larsen
Theses and Dissertations
T2R receptors are the classical bitter taste receptors which detect and transduce bitter taste in a subset of taste receptor cells (TRCs). The TRPM5-dependent T2Rs are G-protein coupled receptors (GPCRs) and are linked to G protein, gustducin to initiate an intracellular signaling cascade for the transduction of bitter tastants. Nicotine is bitter. However, at present the transduction mechanisms for the detection of nicotine in are poorly understood. Previous studies from our laboratory using TRPM5 knockout (KO) mice demonstrated that the T2R pathway is insufficient in explaining the taste perception of nicotine. TRPM5 KO mice elicited chorda tympani (CT) taste nerve …
A Journey Towards Understanding Biology Holistically At The Nanoscale, Trevor Moser
A Journey Towards Understanding Biology Holistically At The Nanoscale, Trevor Moser
Dissertations, Master's Theses and Master's Reports
Characterizing biological processes with microscopy techniques that allow one to directly visualize the complexity of life is an important component of understanding both physiological function and structure. The wide spectrum of biological structures from individual proteins to whole ecosystems necessitates that multiple techniques are used to characterize all levels of organization. While existing techniques cover portions of this spectrum, continued improvement of established methods and development of new techniques is needed. This dissertation outlines my journey in enabling new approaches for imaging biosystems at various scales. Chapters 1 and 2 provide motivation for bioimaging and background for the use of …