As one of the most malignant primary cancers, hepatocellular carcinoma (HCC) still lacks an efficient therapeutic strategy to date. Here, we developed a polymer-based nanoplatform PEI-βCD@Ad-CDM-PEG (PCACP) for functional microRNA (miRNA) therapy. PCACP exhibits excellent stability in physiological solutions, but sensitive PEG detachment and size transformation in an acidic tumor environment due to the breakdown of pH-responsive linkages, promoting tumor penetration and cellular uptake of nanoparticles, further facilitating transfection efficiency due to the proton sponge effect of polycations. We present a novel miRNA cocktail therapy by encapsulating miR-199a/b-3p mimics (miR199) and antimiR-10b (antimiR10b) into PCACP for eliminating HCC. Validated by qRT-PCR, immunoblotting and immunohistochemistry, compared with miR199 or antimiR10b delivered alone, miR-cocktail therapy substantially inhibits HCC cell proliferation and tumor growth by targeting mTOR, PAK4, RHOC and epithelial-mesenchymal transition (EMT) pathways both in vitro and in vivo (i.v. injection). Furthermore, we proposed personalized miR-cocktail therapy by adjusting the encapsulated miRNA formula according to the miRNA profiling of a patient's tumor sample. The personalized PCACP/miR-cocktail system exhibits significant tumor suppression and multitarget regulation on patient derived xenografts (PDXs), representing a notable effect improvement over conventional gene therapy. The tumor-acidity-cleavable PCACP/miR-cocktail system, with loaded miRNA controllability and high transfection efficiency, is a promising personalized therapeutic strategy for future HCC treatment.
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http://dx.doi.org/10.1039/d0bm00794c | DOI Listing |
Front Pharmacol
December 2024
Department of Bacteriology and Virology, School of Medicine, Isfahan University of Medical Sciences, Isfahan, Iran.
Antimicrobial resistance (AMR) poses a significant global threat to public health systems, rendering antibiotics ineffective in treating infectious diseases. Combined use of bio compounds, including bacteriophages and plant extracts, is an attractive approach to controlling antibiotic resistance. In this study, the combination of phage cocktail (Isf-Pm1 and Isf-Pm2) and crude extract (AME) was investigated in controlling biofilm-forming multi-drug resistant isolates, and a phantom bladder model.
View Article and Find Full Text PDFInt J Biol Macromol
December 2024
Department of Biotechnology, Science Campus, Alagappa University, Karaikudi 630 003, Tamil Nadu, India. Electronic address:
Bacteriophages hold promise for combating pathogenic bacteria in the human intestinal tract, but their therapeutic potential is limited by harsh stomach conditions, including low pH and digestive enzymes. This study aimed to develop a natural protective mechanism for orally administering phages to treat gastric infections caused by Klebsiella aerogenes. Results revealed that free phages became inactive at pH 3 without protective measures.
View Article and Find Full Text PDFInfect Dis Rep
November 2024
Drug Discovery and Development, Creative Biolabs Inc., Shirley, NY 11967, USA.
Background: Phage therapy, a treatment utilizing bacteriophages to combat bacterial infections, is gaining attention as a promising alternative to antibiotics, particularly for managing antibiotic-resistant bacteria. This study aims to provide a comprehensive review of phage therapy by examining its safety, efficacy, influencing factors, future prospects, and regulatory considerations. The study also seeks to identify strategies for optimizing its application and to propose a systematic framework for its clinical implementation.
View Article and Find Full Text PDFParasitol Res
December 2024
Tianjin Key Laboratory of Animal Molecular Breeding and Biotechnology, Institute of Animal Science and Veterinary, Tianjin Academy of Agricultural Sciences, Tianjin, 300381, China.
Toxoplasmosis is a foodborne zoonotic parasitic disease caused by Toxoplasma gondii, which seriously threatens to human health and causes economic losses. At present, there is no effective vaccine strategy for the prevention and control of toxoplasmosis. T.
View Article and Find Full Text PDFbioRxiv
December 2024
Sanford Burnham Prebys Medical Discovery Institute, Development, Aging and Regeneration Program, La Jolla, CA 92037, USA.
Generation of induced pluripotent cells (hiPSCs)-derived skeletal muscle progenitor cells (SMPCs) holds great promise for regenerative medicine for skeletal muscle wasting diseases, as for example Duchenne Muscular Dystrophy (DMD). Multiple approaches, involving ectopic expression of key regulatory myogenic genes or small molecules cocktails, have been described by different groups to obtain SMPC towards cell-transplantation as a therapeutic approach to skeletal muscle diseases. However, hiPSCs-derived SMPC generated using transgene-free protocols are usually obtained in a low amount and resemble a more embryonal/fetal stage of differentiation.
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