Background: Cancer cells synthesize substantial amounts of protoporphyrin IX( PPIX) from aminolevulinic acid( ALA). PPIX emits red fluorescence when illuminated under blue light. Photodynamic diagnosis (PDD), based on this phenomenon, is currently used; however, various microorganisms also show the same fluorescence with ALA when illuminated under blue light, resulting in false-positive PDD results.
Purpose And Methods: To avoid misdiagnosis, we incorporated novel systems into the PDD system. ALA, blue light (wavelength, 380-450 nm), different kinds of cell lines, and bacteria were used in this in vitro study. We used a 70% deacetylated chitosan solution (DAC-70 Sol), developed in-house, as an antibacterial agent and prepared ALA/DAC-70 Sol, used as a novel photoimaging agent. The antibacterial function of ALA/DAC-70 Sol was examined in vitro, and the photodiagnostic effects on using the novel systems were clinically evaluated using bile from patients with biliary tract cancer.
Results: DAC-70 Sol demonstrated an effective bactericidal function in vitro. Red fluorescence could clearly be identified, enabling the detection of cancer cells in the bile using ALA/DAC-70 Sol.
Conclusions: Our novel systems have a great potential for use in clinical photodynamic cytodiagnosis( PDCD), which plays an important role in preoperative cancer chemotherapy.
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Psychiatr Pol
October 2024
Uniwersytet Medyczny w Poznaniu.
In 2024, we observe the fortieth anniversary of the publication, where, for the first time, the term of Seasonal Affective Disorder (SAD) was used. Presently, SAD is regarded as a special category of mood disorder. In the American Diagnostic and Statistical Manual of Mental Disorders, fifth edition (DSM-V), the seasonality makes a specifier, "with seasonal pattern", both for recurrent depression or Major Depressive Disorder (MDD), and for Bipolar Disorder (BD).
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Engineering Research Center for Hemp and Product in Cold Region of Ministry of Education, School of Light Industry and Textile, Qiqihar University, Qiqihar 161006, PR China. Electronic address:
From the perspective of sustainable development and practical applications, there is a significant demand for the design of advanced cellulose-based film materials with superior mechanical, optical, and functional properties utilizing environmentally friendly strategies. Herein, biodegradable, mechanically robust and flame-retardant cellulose films with adjustable optical performance were successfully fabricated by in situ synthesis of NH-UiO(Zr)-66 via a DMF-free green process at room temperature. The results indicate that the introduction of NH-UiO(Zr)-66 enables films to realize a desirable flame retardancy (the limiting oxygen index (LOI) increased significantly from 19.
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Key Laboratory of Fermentation Engineering (Ministry of Education), Cooperative Innovation Center of Industrial Fermentation (Ministry of Education & Hubei Province), National "111" Center for Cellular Regulation and Molecular Pharmaceutics, Glyn O. Phillips Hydrocolloid Research Centre at HBUT, School of Life and Health Sciences, Hubei University of Technology, Wuhan, 430068, China; Ministry-of-Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei Key Laboratory of Polymer Materials, College of Health Science and Engineering, School of Materials Science and Engineering, Hubei University, Wuhan 430062, China. Electronic address:
The integration of photothermal therapy (PTT) and gas therapy (GT) on a nanoplatform shows great potential in cancer treatment. In this paper, a tumor-targeted near-infrared/ultraviolet (NIR/UV) triggered PTT/GT synergistic therapeutic nanoplatform, PB-CD-PLL(NF)-FA, was designed based on Prussian blue (PB) nanoparticles, 5-chloro-2-nitrobenzotrifluoro (NF)-grafted polylysine (PLL(NF)), and folic acid (FA). PB serves as a core to load PLL(NF) through host-guest interaction and can further modify FA.
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The first shikimic acid derived fluorescent carbon dots (SACNDs-FITC) for multi-modal detection and simultaneous removal of Hg is revealed. The fluorescence of SACNDs-FITC centered at 520 nm can be selectively quenched by Hg, while the emission centered at 420 nm remains constant which can be used for self-calibration. Naked-eye distinguishable color change from yellow to colourless under daylight and from green to blue under UV light could be observed for SACNDs-FITC in the real-time detection of Hg.
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