Keyword search (4,163 papers available)

"drug delivery" Keyword-tagged Publications:

Title Authors PubMed ID
1 Editorial: Data-driven vaccine design for microbial-associated diseases Selvaraj G; Kaliamurthi S; Wei D; 41624882
CHEMBIOCHEM
2 Synthesis and Acidic pH-Responsive Disassembly of Dual-Location Shell-Sheddable/Core-Degradable Block Copolymer Nanoassemblies and Their Controlled Drug Delivery Andrade-Gagnon B; Casillas-Popova SN; Shamekhi M; Bairagi K; Peslherbe GH; Oh JK; 41524627
CHEMBIOCHEM
3 Stability of Acetals/Ketals Under Controlled Radical and Ring Opening Polymerization Andrade-Gagnon B; Casillas-Popova SN; Oh JK; 40614241
CHEMBIOCHEM
4 Flow rate modulates focused ultrasound-mediated vascular delivery of microRNA He S; Singh D; Helfield B; 39850318
BIOLOGY
5 Shear stress preconditioning and microbubble flow pattern modulate ultrasound-assisted plasma membrane permeabilization Memari E; Helfield B; 38988819
BIOLOGY
6 17β-Estradiol-Loaded Exosomes for Targeted Drug Delivery in Osteoporosis: A Comparative Study of Two Loading Methods Gholami Farashah MS; Javadi M; Soleimani Rad J; Shakouri SK; Asnaashari S; Dastmalchi S; Nikzad S; Roshangar L; 38022800
BIOLOGY
7 Fluid flow influences ultrasound-assisted endothelial membrane permeabilization and calcium flux Memari E; Hui F; Yusefi H; Helfield B; 37150403
PHYSICS
8 Perfluorocarbon Nanodroplets for Dual Delivery with Ultrasound/GSH-Responsive Release of Model Drug and Passive Release of Nitric Oxide Choi M; Jazani AM; Oh JK; Noh SM; 35683912
CHEMBIOCHEM
9 Electrospun Upconverting Nanofibrous Hybrids with Smart NIR-Light-Controlled Drug Release for Wound Dressing Huang HY; Skripka A; Zaroubi L; Findlay BL; Vetrone F; Skinner C; Oh JK; Cuccia LA; 35019380
CHEMBIOCHEM
10 Imidazole-Mediated Dual Location Disassembly of Acid-Degradable Intracellular Drug Delivery Block Copolymer Nanoassemblies Jazani AM; Shetty C; Movasat H; Bawa KK; Oh JK; 34050688
CHEMBIOCHEM
11 Recent Advances of DNA Tetrahedra for Therapeutic Delivery and Biosensing. Copp W, Pontarelli A, Wilds CJ 33506614
CHEMBIOCHEM
12 Microfluidic Shear Processing Control of Biological Reduction Stimuli-Responsive Polymer Nanoparticles for Drug Delivery. Huang Y, Jazani AM, Howell EP, Reynolds LA, Oh JK, Moffitt MG 33455300
CHEMBIOCHEM
13 Controlled Microfluidic Synthesis of Biological Stimuli-Responsive Polymer Nanoparticles. Huang Y, Moini Jazani A, Howell EP, Oh JK, Moffitt MG 31820915
CHEMBIOCHEM
14 Central ghrelin receptor stimulation modulates sex motivation in male rats in a site dependent manner. Hyland L, Rosenbaum S, Edwards A, Palacios D, Graham MD, Pfaus JG, Woodside B, Abizaid A 29080670
CSBN

 

Title:Stability of Acetals/Ketals Under Controlled Radical and Ring Opening Polymerization
Authors:Andrade-Gagnon BCasillas-Popova SNOh JK
Link:https://pubmed.ncbi.nlm.nih.gov/40614241/
DOI:10.1002/marc.202500399
Publication:Macromolecular rapid communications
Keywords:acid‐degradationatom transfer radical polymerizationdrug deliveryring opening polymerization
PMID:40614241 Category: Date Added:2025-07-04
Dept Affiliation: CHEMBIOCHEM
1 Department of Chemistry and Biochemistry, Concordia University, Montreal, Quebec, Canada.

Description:

Well-defined acid-degradable amphiphilic block copolymers (ABPs) and their nanoassemblies labeled with acid-labile groups have been developed for smart drug delivery, exhibiting controlled/enhanced release of therapeutics in tumoral tissues and endo/lysosomes. In general, controlled polymerization techniques, particularly atom transfer radical polymerization (ATRP) and ring opening polymerization (ROP) have been utilized to synthesize poly(ethylene glycol)-based ABPs labeled with acetals and ketals. Despite comprehensive studies on their acid-catalyzed hydrolysis rate with substituents attached to oxygen atoms, the stability of the groups under ATRP and tin-catalyzed ROP conditions have been rarely studied. Herein, we report our investigation with benzaldehyde acetal (BzAc) as a typical acetal and cyclohexyl ketal (CyHK) as a typical ketal to understand the relationship of sensitivity to acid and stability to controlled polymerizations for acetals and ketals. Our results, along with model studies, show that BzAc is stable under ATRP, but partially stable under tin-catalyzed ROP conditions, while CyHK turns to be unstable under both ATRP and ROP conditions. Our work could provide important design principles for the synthesis of well-defined acid-degradable ABPs with respect to acid-catalyzed hydrolysis rates, thus eventually, the release rate of encapsulated drug molecules from their nanoassemblies in an acidic environment.





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