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Due to the difficulties in precisely manipulating DNA repair pathways, high-fidelity targeted integration of large transgenes triggered by double-strand breaks is inherently inefficient. Here, we exploit prime editors to devise a robust knock-in (KI) strategy named primed micro-homologues-assisted integration (PAINT), which utilizes reverse-transcribed single-stranded micro-homologues to boost targeted KIs in different types of cells. The improved version of PAINT, designated PAINT 3.0, maximizes editing efficiency and minimizes off-target integration, especially in dealing with scarless in-frame KIs. Using PAINT 3.0, we target a reporter transgene into housekeeping genes with editing efficiencies up to 80%, more than 10-fold higher than the traditional homology-directed repair method. Moreover, the use of PAINT 3.0 to insert a 2.5-kb transgene achieves up to 85% KI frequency at several therapeutically relevant genomic loci, suggesting its potential for clinical applications. Finally, PAINT 3.0 enables high-efficiency non-viral genome targeting in primary T cells and produces functional CAR-T cells with specific tumor-killing ability. Thus, we establish that the PAINT method is a powerful gene editing tool for large transgene integrations and may open new avenues for cell and gene therapies and genome writing technologies.
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http://dx.doi.org/10.1038/s41421-023-00552-0 | DOI Listing |
A 52-year-old Myanmar man presented with bilateral progressive painless asymmetrical wrist and finger drop in 1 year without any sensory and sphincter problems. He has hypochromic microcytic anemia diagnosed as Hemoglobin E disease before. However, a serial full blood count revealed thrombocytopenia and a drop in hemoglobin disproportionate to HbE disease.
View Article and Find Full Text PDFFront Toxicol
August 2025
Ncardia Services B.V., Leiden, Netherlands.
Introduction: Efficient preclinical prediction of cardiovascular side effects poses a pivotal challenge for the pharmaceutical industry. Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) are becoming increasingly important in this field due to inaccessibility of human native cardiac tissue. Current preclinical hiPSC-CMs models focus on functional changes such as electrophysiological abnormalities, however other parameters, such as structural toxicity, remain less understood.
View Article and Find Full Text PDFFront Psychol
August 2025
Istituto Italiano di Tecnologia - Robotics, Brain and Cognitive Sciences (RBCS), Genova, Italy.
Painting comes from the desire to create through movement and color a non-existent image, making it real. To create a new pictorial composition, a close harmony between the creative process and the motor act is necessary. The technique represents the ability to generate motor actions and to interpret the "language" of colors and shapes.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
September 2025
Institute of Materiobiology, College of Sciences, Shanghai University, Shanghai, 200444, China.
Self-assembled DNA nanostructures have been popularly used to develop DNA-based electrochemical sensors by exploiting the nanoscale positioning capability of DNA origami. However, the impact of the electric field on the structural stability of the DNA origami framework and the activity of carried DNA probes remains to be explored. Herein, we employ DNA origami as structural frameworks for reversible DNA hybridization, and develop a single-molecule fluorescence imaging method to quantify electric field effects on DNA conformation and hybridization properties at the single-molecule level.
View Article and Find Full Text PDFAm J Ophthalmol
September 2025
Wilmer Eye Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland. Electronic address:
Objective: To examine the association between visual impairment (VI) and (1) homebound status, (2) presence of home hazards, and (3) utilization of home-based long-term services and supports (LTSS) among older adults.
Design: Longitudinal and cross-sectional analyses using National Health and Aging Trends Study (NHATS) data (2021-2023).
Subjects: 3,022 Medicare beneficiaries aged ≥71 years (mean age 78.