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"One-for-all" multimodal phototheranostic agents, which integrate multiple photodiagnostic and phototherapeutic functionalities into a single component, have emerged as promising platforms for advancing cancer treatment. Among these, agents featuring second near-infrared (NIR-II) emission are particularly appealing due to their superior tissue penetration depth and high signal-to-background ratio (SBR). However, most reported NIR-II fluorophores suffer from severely imbalanced radiative and non-radiative excited-state energy dissipation in biological environments, resulting in extremely low fluorescence quantum yields (QYs) and limited diagnostic efficacy. This highlights the urgent need for innovative molecular design strategies to develop high-performance NIR-II "one-for-all" multimodal phototheranostic agents. Herein, we present, for the first time, a multi-dimensional donor engineering protocol that optimizes donor design at the molecular, aggregated, and solvent-interaction levels. By introducing 2,4,4-trimethylpentan-2-yl groups into the diphenylamine indeno[1,2-b]thiophene donor unit, we developed a donor-acceptor-donor (D-A-D) type NIR-II aggregation-induced emission-active luminogen (AIEgen), i.e. OPITBT. When formulated into nanoparticles (NPs), OPITBT NPs exhibited a 16-fold enhancement in fluorescence QY compared to OPITBT in tetrahydrofuran, along with excellent photothermal conversion efficiency (PCE) and acceptable type-I reactive oxygen species (ROS) generation. When further fabricated into tumor-targeting NPs, the resulted OPITBT-R NPs effectively eliminated orthotopic breast cancer through fluorescence-photoacoustic-photothermal multimodal imaging-guided photodynamic-photothermal synergistic therapy under single 808 nm laser irradiation. Notably, the exceptional NIR-II fluorescence brightness of OPITBT-R NPs enables high-resolution NIR-IIb whole-body vascular imaging in living mice. This work provides a versatile strategy to enhance radiative dissipation of NIR-II fluorophores for balanced phototheranostic performance and advances the development of "one-for-all" phototheranostic systems.
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http://dx.doi.org/10.1016/j.biomaterials.2025.123193 | DOI Listing |
Funct Integr Genomics
August 2025
State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, College of Life Sciences, Inner Mongolia University, Hohhot, 010070, China.
CRISPR/Cas9 technology is an efficient tool for site-specific livestock gene editing. However, to minimize potential disruption of host genome function, exogenous genes should be integrated into well-characterized genomic loci, such as H11 or Rosa26, which have been empirically validated for stable transgene expression. This study established a multi-dimensional assessment system to evaluate the biological applicability of the H11 locus and the widely used Rosa26 targeting platform as sites for targeted integration of exogenous genes in goats.
View Article and Find Full Text PDFAdv Mater
July 2025
State Key Laboratory of Silicon and Advanced Semiconductor Materials, ZJU-Hangzhou Global Scientific and Technological Innovation Center, School of Materials Science & Engineering, Zhejiang University, Hangzhou, 310027, China.
Multi-photon excited luminescence (MPEL) modulation is of great application value for optoelectronics, especially MPEL with the characteristics of multi-color emission and optical anisotropy. However, it still suffers from the obstacles in highly-integrating and orientedly-assembly of various MPEL units. Herein, a hierarchical assembly-in situ doping strategy is proposed to establish a novel lanthanide-graded metal-organic framework based heterostructure.
View Article and Find Full Text PDFAdv Sci (Weinh)
July 2025
Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, 100875, China.
Stimuli-responsive single-molecule multi-emission materials have long attracted considerable attention due to their great potential in non-phase-separated smart luminescence. Here, a new strategy is demonstrated for manipulating electron transfer based on donor-acceptor decoupling to regulate energy levels, aiming to achieve excitation-dependent (Ex-De) single-molecule emission with switchable multiple fluorescence and phosphorescence. The synthesized 10-phenyl-10H,13'H-spiro[acridine 9,6'-pentacen]-13'-one (ACRSP) exhibits anti-Kasha quadruple-level emission and opposite Ex-De afterglow in different environments.
View Article and Find Full Text PDFOrphanet J Rare Dis
June 2025
Centre for Autism Research in Africa (CARA), Division of Child and Adolescent Psychiatry, University of Cape Town, 46 Sawkins Road, Rondebosch, Cape Town, 7700, South Africa.
Background: Tuberous Sclerosis Complex (TSC) is a rare multi-system genetic disorder characterised by benign growths in multiple body systems. TSC-Associated Neuropsychiatric Disorders (TAND) are very common in individuals with TSC, but families often struggle to access appropriate clinical care. To address this gap, the new TAND-SQ Checklist allows individuals with TSC or their caregivers to self-report and quantify characteristics of TAND.
View Article and Find Full Text PDFStud Health Technol Inform
May 2025
NICHE Research Group, Faculty of Computer Science, Dalhousie University, Halifax, Canada.
This paper presents a novel graph-based framework for donor-recipient matching for organ transplantation, specifically targeting kidney transplantation. We pursue donor-recipient matching as a feature set matching problem using a graph-based approach. To represent kidney transplant clinical and operational considerations, we developed a kidney transplant graph by embedding kidney transplantation knowledge and relevant datasets to capture the complex relationships between the heterogeneous donor and recipient feature sets to provide a system for optimal donor and recipient matches.
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