Javascript must be enabled to continue!
Spontaneously self-assembled micelles from poly(ethylene glycol)- b-poly(ɛ-caprolactone-co-trimethylene carbonate) for drug solubilization
View through CrossRef
Di-block copolymers composed of polyethylene glycol (PEG) and a second block of (co)polyesters of ɛ-caprolactone (CL) and/or trimethylene carbonate (TMC) were synthesized and characterized. Tin octoate was used as catalyst and polymerization were completed over a period of 24 h with high conversion (> 95%). Self-assembling properties in water were evaluated. All di-block copolymers behave similarly except when PCL served as the second block. Stable crew-cut micelles of about 20 nm were obtained by direct dissolution of the liquid di-block copolymers in water at room temperature. When PCL was present as the second block, no solubilization occurred. Drug encapsulation of poorly water-soluble drugs belonging to biopharmaceutics classification system (BCS) class II (ketoprofen and furosemide) was evaluated. Experimental solubility for these two drugs shows a significant enhancement such that a maximum value of 23.4 mg/ml was obtained for ketoprofen in a 10% w/v micellar solution as compared to 0.14 mg in water. In the case of furosemide, the solubility increased from 0.04 mg/ml in water to about 3.2 mg/ml in a 10% w/v micellar solution. Enzymatic degradation of di-block copolymers was also studied in the presence of Pseudomonas lipase in a phosphate buffer solution (pH 7.4). Results indicated rapid degradation of copolymers containing relatively higher amounts of CL compared to TMC suggesting the potential in vivo degradation.
Title: Spontaneously self-assembled micelles from poly(ethylene glycol)- b-poly(ɛ-caprolactone-co-trimethylene carbonate) for drug solubilization
Description:
Di-block copolymers composed of polyethylene glycol (PEG) and a second block of (co)polyesters of ɛ-caprolactone (CL) and/or trimethylene carbonate (TMC) were synthesized and characterized.
Tin octoate was used as catalyst and polymerization were completed over a period of 24 h with high conversion (> 95%).
Self-assembling properties in water were evaluated.
All di-block copolymers behave similarly except when PCL served as the second block.
Stable crew-cut micelles of about 20 nm were obtained by direct dissolution of the liquid di-block copolymers in water at room temperature.
When PCL was present as the second block, no solubilization occurred.
Drug encapsulation of poorly water-soluble drugs belonging to biopharmaceutics classification system (BCS) class II (ketoprofen and furosemide) was evaluated.
Experimental solubility for these two drugs shows a significant enhancement such that a maximum value of 23.
4 mg/ml was obtained for ketoprofen in a 10% w/v micellar solution as compared to 0.
14 mg in water.
In the case of furosemide, the solubility increased from 0.
04 mg/ml in water to about 3.
2 mg/ml in a 10% w/v micellar solution.
Enzymatic degradation of di-block copolymers was also studied in the presence of Pseudomonas lipase in a phosphate buffer solution (pH 7.
4).
Results indicated rapid degradation of copolymers containing relatively higher amounts of CL compared to TMC suggesting the potential in vivo degradation.
Related Results
Assessment of a semi-quantitative screening method for diagnosis of ethylene glycol poisoning
Assessment of a semi-quantitative screening method for diagnosis of ethylene glycol poisoning
Background
Ethylene glycol poisoning remains a rare but important presentation to acute toxicology units. Guidelines recommended that ethylene glycol should be ...
Final Report on the Safety Assessment of Propylene Glycol (PG) Dicaprylate, PG Dicaprylate/Dicaprate, PG Dicocoate, PG Dipelargonate, PG Isostearate, PG Laurate, PG Myristate, PG Oleate, PG Oleate SE, PG Dioleate, PG Dicaprate, PG Diisostearate, and PG Di
Final Report on the Safety Assessment of Propylene Glycol (PG) Dicaprylate, PG Dicaprylate/Dicaprate, PG Dicocoate, PG Dipelargonate, PG Isostearate, PG Laurate, PG Myristate, PG Oleate, PG Oleate SE, PG Dioleate, PG Dicaprate, PG Diisostearate, and PG Di
The Propylene Glycol Dicaprylate family of ingredients includes several esters and diesters of Propylene Glycol and fatty acids. These ingredients are used in cosmetic formulations...
Montmorillonite-reinforced nanocomposite from off-grade plastics materials using response surface analysis
Montmorillonite-reinforced nanocomposite from off-grade plastics materials using response surface analysis
Off-grade thermoplastic poly(ethylene terephthalate) of industrial manufacturers was partially depolymerized to synthesize poly(ethylene terephthalate) oligomers. Influences of rea...
Antifreezes and Deicing Fluids
Antifreezes and Deicing Fluids
AbstractAn antifreeze is defined as a chemical which, when added to a water‐based fluid, reduces the freezing point of the mixture. Antifreezes are used in a wide variety of mechan...
Final Report on the Safety Assessment of PEG-25 Propylene Glycol Stearate, PEG-75 Propylene Glycol Stearate, PEG-120 Propylene Glycol Stearate, PEG-10 Propylene Glycol, PEG-8 Propylene Glycol Cocoate, and PEG-55 Propylene Glycol Oleate
Final Report on the Safety Assessment of PEG-25 Propylene Glycol Stearate, PEG-75 Propylene Glycol Stearate, PEG-120 Propylene Glycol Stearate, PEG-10 Propylene Glycol, PEG-8 Propylene Glycol Cocoate, and PEG-55 Propylene Glycol Oleate
The ingredients considered in this safety assessment are polyethylene glycol ethers of either propylene glycol itself, propylene glycol stearate, propylene glycol oleate, or propyl...
Experimental Study on Heat Transfer Improvement in a Circular Passage Using Metal Oxide and Ethylene Glycol Based Well Stable Nanofluids
Experimental Study on Heat Transfer Improvement in a Circular Passage Using Metal Oxide and Ethylene Glycol Based Well Stable Nanofluids
Zinc Oxide @ Glycol based nanofluids was prepared using the ultra-sonochemical technique and 2 step methods. The heat convection characteristics of as prepared nanofluids were obse...
Glycols, Ethylene Glycol and Oligomers
Glycols, Ethylene Glycol and Oligomers
AbstractGlycols are diols, compounds containing two hydroxyl groups attached to separate carbon atoms. In an aliphatic chain, ethylene glycol, is the simplest glycol. Diethylene, t...

