imaging chamber with a glass-bottom confocal microscopy coverslip (SPL Life Sciences)
90
Structured Review
SPL Life Sciences
imaging chamber with a glass-bottom confocal microscopy coverslip
Imaging Chamber With A Glass Bottom Confocal Microscopy Coverslip, supplied by SPL Life Sciences, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/imaging+chamber+with+a+glass-bottom+confocal+microscopy+coverslip/imaging+chamber+with+a+glass+bottom+confocal+microscopy+coverslip/pm39983547-82-3-11
Average 90 stars, based on 1 article reviews
Imaging Chamber With A Glass Bottom Confocal Microscopy Coverslip, supplied by SPL Life Sciences, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/imaging+chamber+with+a+glass-bottom+confocal+microscopy+coverslip/imaging+chamber+with+a+glass+bottom+confocal+microscopy+coverslip/pm39983547-82-3-11
Average 90 stars, based on 1 article reviews
imaging chamber with a glass-bottom confocal microscopy coverslip - by Bioz Stars,
2026-10
90/100 stars
Images
Related Articles
Imaging:Article Title: Zinc ions trigger the prion protein liquid-liquid phase separation. Article Snippet: Prion diseases are characterized by the misfolding and conversion of the monomeric prion protein (PrP) to a multimeric aggregated pathogenic form, known as PrPSc.. We and others have recently shown that biomolecular condensates formed via liquid-liquid phase separation of PrP can undergo maturation to solid-like species that resemble pathological aggregates, and this process is modulated by DNA, RNA, and oxidative conditions.. Conversely, the most well-studied ligand of PrP, copper ions, induce liquid-like condensates of PrP that accumulate Cu2+ in vitro, and live PrPC-expressing cells show condensation at the cell surface as triggered by physiologically relevant conditions of Cu2+ and protein concentrations. Confocal Microscopy:Article Title: Zinc ions trigger the prion protein liquid-liquid phase separation. Article Snippet: Prion diseases are characterized by the misfolding and conversion of the monomeric prion protein (PrP) to a multimeric aggregated pathogenic form, known as PrPSc.. We and others have recently shown that biomolecular condensates formed via liquid-liquid phase separation of PrP can undergo maturation to solid-like species that resemble pathological aggregates, and this process is modulated by DNA, RNA, and oxidative conditions.. Conversely, the most well-studied ligand of PrP, copper ions, induce liquid-like condensates of PrP that accumulate Cu2+ in vitro, and live PrPC-expressing cells show condensation at the cell surface as triggered by physiologically relevant conditions of Cu2+ and protein concentrations. Evaporation:Article Title: Zinc ions trigger the prion protein liquid-liquid phase separation. Article Snippet: Prion diseases are characterized by the misfolding and conversion of the monomeric prion protein (PrP) to a multimeric aggregated pathogenic form, known as PrPSc.. We and others have recently shown that biomolecular condensates formed via liquid-liquid phase separation of PrP can undergo maturation to solid-like species that resemble pathological aggregates, and this process is modulated by DNA, RNA, and oxidative conditions.. Conversely, the most well-studied ligand of PrP, copper ions, induce liquid-like condensates of PrP that accumulate Cu2+ in vitro, and live PrPC-expressing cells show condensation at the cell surface as triggered by physiologically relevant conditions of Cu2+ and protein concentrations. |