Graft copolymers based on a choline ionic liquid (IL), [2-(methacryloyloxy)ethyl]-trimethylammonium chloride (TMAMA), were obtained by atom transfer radical polymerization. The presence of chloride counterions in the trimethylammonium groups promoted anion exchange to introduce fusidate anions (FUS, 32â55 mol.%) as the pharmaceutical anions. Both the choline-based IL copolymers and their ionic drug-carrier conjugates (FUS systems as the first type, 26â208 nm) formed micellar structures (CMC = 0.011â0.025 mg/mL). The amphiphilic systems were advantageous for the encapsulation of rifampicin (RIF, 40â67 mol.%), a well-known antibiotic, resulting in single-drug (RIF systems as the second type, 40â95 nm) and dual-drug systems (FUS/RIF as the third type, 31â65 nm). The obtained systems released significant amounts of drugs (FUS > RIF), which could be adjusted by the content of ionic units and the length of the copolymer side chains. The dual-drug systems released 31â55% FUS (4.3â5.6 μg/mL) and 19â31% RIF (3.3â4.0 μg/mL), and these results were slightly lower than those for the single-drug systems, reaching 45â81% for FUS (3.8â8.2 μg/mL) and 20â37% for RIF (3.4â4.0 μg/mL). The designed polymer systems show potential as co-delivery systems for combined therapy against drug-resistant strains using two drugs in one formula instead of the separate delivery of two drugs.
Dual-Drug Delivery via the Self-Assembled Conjugates of Choline-Functionalized Graft Copolymers.
通过胆碱功能化接枝共聚物的自组装缀合物进行双药递送
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作者:Niesyto Katarzyna, Mazur Aleksy, Neugebauer Dorota
| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2022 | 起止号: | 2022 Jun 24; 15(13):4457 |
| doi: | 10.3390/ma15134457 | ||
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