Matches in SemOpenAlex for { <https://semopenalex.org/work/W4377094013> ?p ?o ?g. }
- W4377094013 endingPage "8366" @default.
- W4377094013 startingPage "8357" @default.
- W4377094013 abstract "Ganoderma is a prize medicinal macrofungus with a broad range of pharmaceutical values. To date, various attempts have been made to cultivate Ganoderma to improve the production of secondary metabolites with pharmacological activity. Among the adopted techniques, protoplast preparation and regeneration are indispensable. However, the evaluation of protoplasts and regenerated cell walls usually relies on electron microscopy assays, which require time-consuming and destructive sample preparation and merely provide localized information in the selected area. In contrast, fluorescence assays enable sensitive real-time detection and imaging in vivo. They can also be applied to flow cytometry, providing a collective overview of every cell in a sample. However, for macrofungi such as Ganoderma, the fluorescence analysis of protoplasts and regenerated cell walls is difficult owing to the hindrance of the homologous fluorescent protein expression and the lack of an appropriate fluorescence marker. Herein, a specific plasma membrane probe, TAMRA perfluorocarbon nucleic acid probe (TPFN), is proposed for the nondestructive and quantitative fluorescence analysis of cell wall regeneration. Exploiting the perfluorocarbon membrane-anchoring chains, hydrophilic nucleic acid linker, and fluorescent dye TAMRA, the probe is proven to be selective, soluble, and stable, enabling rapid fluorescence detection of a protoplast sample free of transgenic expression or immune staining. Based on the TPFN and flow cytometry techniques, a quantitative approach is constructed to monitor the process of cell wall growth in a fast, quantitative, and high-throughout manner, and the obtained results are consistent with those of conventional electron microscopy. In principle, with slight modifications or integration, the proposed probe and approach can be adapted to the preparation of cell protoplasts, inspection of cell wall integrity under environmental stress, and programmable membrane engineering for cytobiology and physiology research." @default.
- W4377094013 created "2023-05-20" @default.
- W4377094013 creator A5010160476 @default.
- W4377094013 creator A5013878129 @default.
- W4377094013 creator A5014746308 @default.
- W4377094013 creator A5043036592 @default.
- W4377094013 creator A5064530138 @default.
- W4377094013 creator A5071061445 @default.
- W4377094013 creator A5074370403 @default.
- W4377094013 creator A5080387049 @default.
- W4377094013 creator A5082020105 @default.
- W4377094013 creator A5085181370 @default.
- W4377094013 date "2023-05-19" @default.
- W4377094013 modified "2023-10-10" @default.
- W4377094013 title "Nondestructive and Quantitative Analysis of Cell Wall Regeneration in the Medicinal Macrofungus <i>Ganoderma lingzhi</i> by a Membrane-Fusing Fluorescent Probe" @default.
- W4377094013 cites W1904671412 @default.
- W4377094013 cites W1969955354 @default.
- W4377094013 cites W1972861698 @default.
- W4377094013 cites W1978162855 @default.
- W4377094013 cites W1983054726 @default.
- W4377094013 cites W2013412105 @default.
- W4377094013 cites W2019870681 @default.
- W4377094013 cites W2038204439 @default.
- W4377094013 cites W2039774973 @default.
- W4377094013 cites W2051994007 @default.
- W4377094013 cites W2053691294 @default.
- W4377094013 cites W2067314522 @default.
- W4377094013 cites W2088608216 @default.
- W4377094013 cites W2093862878 @default.
- W4377094013 cites W2097994838 @default.
- W4377094013 cites W2106874982 @default.
- W4377094013 cites W2108595511 @default.
- W4377094013 cites W2117916227 @default.
- W4377094013 cites W2118067388 @default.
- W4377094013 cites W2143913679 @default.
- W4377094013 cites W2192343616 @default.
- W4377094013 cites W2312746380 @default.
- W4377094013 cites W2535196167 @default.
- W4377094013 cites W2603334614 @default.
- W4377094013 cites W2749677529 @default.
- W4377094013 cites W2754482168 @default.
- W4377094013 cites W2755362350 @default.
- W4377094013 cites W2804938909 @default.
- W4377094013 cites W2909695019 @default.
- W4377094013 cites W2955666773 @default.
- W4377094013 cites W2999624451 @default.
- W4377094013 cites W2999664232 @default.
- W4377094013 cites W3007526207 @default.
- W4377094013 cites W3011431481 @default.
- W4377094013 cites W3117668926 @default.
- W4377094013 cites W3171922820 @default.
- W4377094013 cites W3194781272 @default.
- W4377094013 cites W4225321571 @default.
- W4377094013 cites W4281750266 @default.
- W4377094013 cites W4306878780 @default.
- W4377094013 cites W4313528058 @default.
- W4377094013 doi "https://doi.org/10.1021/acs.analchem.3c01016" @default.
- W4377094013 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37202872" @default.
- W4377094013 hasPublicationYear "2023" @default.
- W4377094013 type Work @default.
- W4377094013 citedByCount "0" @default.
- W4377094013 crossrefType "journal-article" @default.
- W4377094013 hasAuthorship W4377094013A5010160476 @default.
- W4377094013 hasAuthorship W4377094013A5013878129 @default.
- W4377094013 hasAuthorship W4377094013A5014746308 @default.
- W4377094013 hasAuthorship W4377094013A5043036592 @default.
- W4377094013 hasAuthorship W4377094013A5064530138 @default.
- W4377094013 hasAuthorship W4377094013A5071061445 @default.
- W4377094013 hasAuthorship W4377094013A5074370403 @default.
- W4377094013 hasAuthorship W4377094013A5080387049 @default.
- W4377094013 hasAuthorship W4377094013A5082020105 @default.
- W4377094013 hasAuthorship W4377094013A5085181370 @default.
- W4377094013 hasConcept C121332964 @default.
- W4377094013 hasConcept C12554922 @default.
- W4377094013 hasConcept C153911025 @default.
- W4377094013 hasConcept C169274487 @default.
- W4377094013 hasConcept C171056886 @default.
- W4377094013 hasConcept C173749725 @default.
- W4377094013 hasConcept C185592680 @default.
- W4377094013 hasConcept C24107716 @default.
- W4377094013 hasConcept C2779178360 @default.
- W4377094013 hasConcept C41625074 @default.
- W4377094013 hasConcept C553184892 @default.
- W4377094013 hasConcept C55493867 @default.
- W4377094013 hasConcept C62520636 @default.
- W4377094013 hasConcept C86803240 @default.
- W4377094013 hasConcept C91881484 @default.
- W4377094013 hasConcept C95444343 @default.
- W4377094013 hasConceptScore W4377094013C121332964 @default.
- W4377094013 hasConceptScore W4377094013C12554922 @default.
- W4377094013 hasConceptScore W4377094013C153911025 @default.
- W4377094013 hasConceptScore W4377094013C169274487 @default.
- W4377094013 hasConceptScore W4377094013C171056886 @default.
- W4377094013 hasConceptScore W4377094013C173749725 @default.
- W4377094013 hasConceptScore W4377094013C185592680 @default.
- W4377094013 hasConceptScore W4377094013C24107716 @default.
- W4377094013 hasConceptScore W4377094013C2779178360 @default.
- W4377094013 hasConceptScore W4377094013C41625074 @default.