Understanding the molecular energy metabolism of single cells in the nucleolus stress response induced by mild-photothermal therapy (mPTT) is of great importance for investigating the photothermal lethal mechanism. Herein, we successfully fabricated a "turn-on"-type fluorescent nanoprobe based on the fluorescently labeled aptamers (FAM-ATP-apt and Cy3-GTP-apt) and TiCT MXene. When the adapters on the nanoprobes bonded to intracellular ATP and GTP, the fluorescence of the nanoprobes was restored.
View Article and Find Full Text PDFIntroduction: Lung cancer is the leading cause of cancer-related mortality globally, with non-small cell lung cancer (NSCLC) comprising the majority of cases. For advanced NSCLC, immunotherapy offers substantial survival benefits but is often accompanied by severe immune-related adverse events symptoms, significantly affecting health-related quality of life (HRQoL). Routinely collection of patient-reported outcomes (PROs) followed by automated alerts has been shown to improve overall survival and HRQoL for cancers.
View Article and Find Full Text PDFEfficient and stable nonprecious metal-based oxygen evolution reaction (OER) electrocatalysts are pivotal for water electrolysis technology. Herein, we are reporting an effective strategy for fabricating efficient Co-based OER electrocatalysts by low-level Fe doping in CoMoO to boost surface reconstruction and electronic modulation, which resulted in excellent OER electroactivity consequently. Our findings reveal that a mere 5.
View Article and Find Full Text PDFBackground: There is a gap between the principles of person-centred dementia care and their actual implementation. However, scoping reviews of the barriers and facilitators to implementing person-centred dementia care in long-term care facilities for Western countries and Asian countries are lacking.
Objective: To identify and compare the barriers and facilitators to implementing person-centred dementia care in long-term care facilities between Western and Asian countries.
For indirect time-of-flight (iToF) cameras, we proposed a modeling approach focused on addressing random error. Our model characterizes random error comprehensively by detailing the propagation of error introduced by signal light, ambient light, and dark noise through phase calculation and system correction processes. This framework leverages correlations between incident light and tap responses to quantify noise impacts accurately.
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