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Novel Antimicrobial Treatment Strategy Based on Drug Delivery Systems for Acute Otitis Media

机译:基于急性中耳炎药物递送系统的新型抗菌治疗策略

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Despite tremendous success of pneumococcal conjugated vaccine and antimicrobial treatment by amoxicillin, acute otitis media (AOM) still remains as a great medical concern. Failure of antimicrobial treatment includes several factors. The middle ear cavity is surrounded by bone tissue, which makes it difficult to maintain sufficient concentration of antibiotics. Tympanic membrane of AOM patients thickens and actually becomes a barrier for topical therapy. This review discusses novel antimicrobial treatment strategies based on drug delivery systems (DDS) for AOM. To deliver drugs enough to kill the pathogenic bacteria without systemic side effects, the development of new antimicrobial treatment strategy applying innovative drug DDS has been expected. The sustained-release DDS can achieve sufficient time for antimicrobial concentrations to exceed minimum inhibitory concentration (MIC) for time-dependent antibiotics as well as enough maximum concentration for dose-dependent antibiotics to eradicate causative pathogens in the middle ear. The development of trans-tympanic membranes of DDS, such as hydrogels with chemical permeation enhancers (CPEs), is another attractive strategy. Phage is a promising strategy for developing DDS-based therapies. The DDS formulations enable antimicrobial treatment of AOM by a single dose and thus, an attractive future antimicrobial treatment for AOM.
机译:尽管肺炎球菌共轭疫苗和阿莫西林的抗微生物治疗巨大成功,但急性中耳炎(AOM)仍然仍然是一个很好的医学问题。抗菌治疗失败包括几个因素。中耳腔被骨组织包围,这使得难以保持足够的抗生素浓度。 AOM患者的鼓膜膜变厚,实际上成为局部疗法的障碍。本综述讨论了基于AOM的药物递送系统(DDS)的新型抗菌治疗策略。为了递送足以杀死病原菌而没有全身副作用的致病细菌,预期了应用创新药物DDS的新抗菌治疗战略的发展。持续释放DDS可以实现足够的时间才能超过抗微生物浓度超过最小抑制浓度(MIC)用于时间依赖性抗生素,以及给剂量依赖性抗生素的最大浓度以消除中耳的致病病原体。 DDS的跨鼓风膜的开发,如具有化学渗透增强剂(CPES)的水凝胶,是另一种有吸引力的策略。噬菌体是开发基于DDS的疗法的有希望的策略。 DDS制剂通过单剂量使AOM的抗微生物处理能够,因此是AOM的有吸引力的未来抗微生物处理。

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