Reactive oxygen species (ROS) contribute to aging by mainly damaging cellular organelles and DNA. Although strategies to reduce ROS production have been proposed as important components of anti-aging therapy, effective mechanisms to lower ROS levels have not yet been identified. Here, we screened natural compounds frequently used as cosmetic ingredients to find substances that reduce ROS levels. () extract significantly lowered the levels of ROS in senescent fibroblasts. A novel mechanism by which extract restores mitochondrial function to reduce ROS, a byproduct of inefficient electron transport, was discovered. The reduction of ROS by extracts reversed senescence-associated phenotypes and skin aging. Then, honokiol was demonstrated as a core ingredient of extract that exhibits antioxidant effects. Honokiol functions as an oxygen radical scavenger through redox processes, also significantly reduced ROS levels by restoring mitochondrial function. In summary, our study identified a novel mechanism by which extract reverses aging and skin aging by reducing ROS through restoring mitochondrial function. These new findings will not only expand our understanding of aging and associated diseases, but also provide new approaches to anti-aging treatments.
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http://dx.doi.org/10.18632/aging.206207 | DOI Listing |
Nanomaterials (Basel)
February 2025
School of Chemical Engineering, Sichuan University, Chengdu 610065, China.
The primary extraction way for unconventional oil/gas resources is hydraulic fracturing to alter the reservoir for commercial production. However, hydraulic fracturing technology consumes a large amount of water, and the flowback water can easily be mixed with hydrocarbon substances to form emulsions. To achieve the recycling of water, it is necessary to develop an efficient continuous demulsification method for treating the flowback fluid.
View Article and Find Full Text PDFNanomaterials (Basel)
February 2025
Institute of Wide Bandgap Semiconductors and Future Lighting, Academy for Engineering & Technology, Fudan University, Shanghai 200433, China.
The progression of SiC MOSFET technology from planar to trench structures requires optimized gate oxide layers within the trench to enhance device performance. In this study, we investigated the interface characteristics of HfO and SiO/HfO gate dielectrics grown by atomic layer deposition (ALD) on SiC trench structures. The trench structure morphology was revealed using scanning electron microscopy (SEM).
View Article and Find Full Text PDFAnn Pharmacother
March 2025
Collegium Medicum, Jan Kochanowski University, Kielce, Poland.
Objective: To summarize the current knowledge on the therapeutic potential of GLP-1 receptor agonists in managing metabolic associated steatotic liver disease (MASLD).
Data Sources: A literature review was conducted using the search terms , , , , , and on PubMed (from January 1, 2019, through February 1, 2025), National Institutes of Health (NIH) (from January 1, 2019, through February 1, 2025), Scopus (from January 1, 2019, through February 1, 2025), and the World Health Organization (WHO) data.
Study Selection And Data Extraction: All relevant clinical trials, review articles, package inserts, and guidelines evaluating clinically relevant evidence regarding the therapeutic potential of GLP-1 agonists in MASLD were considered for inclusion.
Chemistry
March 2025
North China Electric Power University, Beinong Road No.2, CHINA.
Photocatalytic technology has attracted considerable attention in recent years due to its significant potential in environmental protection and energy conversion. Covalent organic frameworks (COFs), a novel class of porous materials, demonstrate remarkable photocatalytic performance owing to their high surface areas, tunable pore sizes, permanent porosities, and customizable functionalities. This review provides a comprehensive overview of the application of COFs in photocatalysis.
View Article and Find Full Text PDFFree Neuropathol
January 2025
Department of Laboratory Medicine, St. Michael's Hospital, Unity Health & Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario, Canada.
There is considerable evidence for a role for metabolic dysregulation, including disordered purine nucleotide metabolism, in the pathogenesis of Alzheimer's disease (AD). Purine nucleotide synthesis in the brain is regulated with high fidelity to co-ordinate supply with demand. The assembly of some purine biosynthetic enzymes into linear filamentous aggregates called "cytoophidia" (Gk.
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