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Alzheimer's disease (AD), the most common dementia, is characterized by potentially neurotoxic aggregation of Aβ peptide and tau protein, and their deposition as amyloid plaques and neurofibrillary tangles (NFTs). Tau aggregation also occurs in other common neurodegenerative diseases. Frontotemporal dementia (FTD) can be caused by tau mutations that increase the susceptibility of tau to hyperphosphorylation and aggregation, which may cause neuronal dysfunction and deposition of NFTs. 17-allylamino-17-demethoxygeldanamycin (17-AAG) is a potent inhibitor of heat shock protein 90 (Hsp90), a cytosolic chaperone implicated in the proper folding and functions of a repertoire of client proteins. 17-AAG binds to Hsp90 and enhances degradation of Hsp90 client protein. We sought to determine whether 17-AAG can reduce Aβ and tau pathology in the brains of AD and FTD model mice expressing Aβ or P301L mutant tau, respectively. Mice were randomized to receive 25, 5, or 0 mg/kg 17-AAG thrice weekly from age eight to 11 months. Analysis was performed by rotarod test on motor function, on the area occupied by plaques in hippocampus or NFTs in medulla tissue sections, and on mortality. A high dose of 17-AAG tended to decrease NFTs in male mice (p = 0.08). Further studies are required to confirm the effect of 17-AAG in diseases of tau aggregation.
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http://dx.doi.org/10.1186/2047-9158-2-24 | DOI Listing |
Gut Microbes
December 2025
Department of Microbiology, Huadong Research Institute for Medicine and Biotechniques, Nanjing, China.
Emerging insights have been approached that gut microbiota act as a critical regulator for ionizing radiation (IR)-induced damage. Herein, an available strategy has been explored to shape gut microbiota for radioprotection by loading curcumin (Cur) into ginger-derived vesicle-like nanoparticles (GDNs). Engineered biomimetic nanovesicles (GDN-Cur) exhibited superb stability in the gastrointestinal tract, thereby significantly enhancing the oral bioavailability of Cur.
View Article and Find Full Text PDFInt J Mol Sci
June 2025
Department of Biomedical Sciences, College of Medicine, Chang Gung University, Kwei-Shan, Taoyuan 333, Taiwan.
Eukaryotic cells double their mass and divide at the same rate, allowing cells to maintain a uniform cell size over many cell divisions. We hypothesize that aneuploid cancer cells are more sensitive to forced overgrowth, more than doubling their mass during a single longer-duration cell division cycle, relative to healthy diploid cells. This hypothesis stems from the observation that cancer cells are under proteotoxic stress, during which heat-shock proteins become rate-limiting and the unfolded-protein response network has a growth-suppressive phenotype.
View Article and Find Full Text PDFSci Rep
July 2025
Department of Molecular Biology, Faculty of Biology, University of Gdańsk, Wita Stwosza 59, 80-308, Gdańsk, Poland.
Heat shock proteins belonging to the HSP90 family promote inflammation and are potential therapeutic targets in inflammatory and autoimmune diseases. Here the effects of the HSP90 inhibitor 17-AAG applied topically were evaluated in a DNCB-induced murine model of atopic dermatitis (AD). The use of 17-AAG improved clinical disease activity without causing toxicity in the animals.
View Article and Find Full Text PDFColloids Surf B Biointerfaces
October 2025
Medical Technology School of Xuzhou Medical University, Xuzhou, Jiangsu 221004, PR China; Public Experimental Research Center of Xuzhou Medical University, Xuzhou city, Jiangsu 221004, China. Electronic address:
Developing appropriate nanoplatforms with enhanced properties to increase the efficiency of the nano-based strategies is an urgent challenge for cancer therapy. In this work, a S, Pd modified hollow CoNiMnFe Prussian blue analogue nanocomposite (Pd-S-CNMF) was prepared as multifunctional nanoplatform for magnetic resonance imaging (MRI) guided for combined cascade catalyzed therapy and low-temperature photothermal therapy. We found that the co-modification of S and Pd on CNMF could enhance the responsive feature the as-prepared nanocomposite to acidic environment, which endowed the Pd-S-CNMF with multiple enzyme mimicking activities and enhanced NIR light absorption.
View Article and Find Full Text PDFJ Colloid Interface Sci
July 2025
Ministry-of-Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei Key Laboratory of Polymer Materials, School of Materials Science and Engineering, Hubei University, Wuhan 430062, PR China. Electronic address:
Hyperthermic perfusion therapy (HPT) is an emerging and effective treatment for intracavitary tumors, involving circulating a heated solution directly into body cavities such as the peritoneal or pleural spaces, targeting tumors more effectively while minimizing systemic toxicity. However, the clinical application of HPT is currently restricted to intracavitary tumors, and its efficacy is hampered by the up-regulation of thermal stress resistance genes, which enhance the thermal tolerance of cancer cells. Herein, we developed a temperature-sensitive methyl cellulose hydrogel with injectability and removability to enable targeted HPT for the triple-negative breast cancer (TNBC).
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