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Improved antimicrobial therapy with cationic tetra- and octa- substituted phthalocyanines

机译:阳离子四和八取代的酞菁类药物的改良抗微生物治疗

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Photodynamic therapy (PDT) today is an innovative and not yet widespread light-drug initiated treatment that is based on the photoactive compound irradiated with proper light to produce oxygen species that are toxic to the pathogenic biological objects-bacteria, viruses, tumor cells. The obstacles that limited the efficacy of PDT concern to the selectivity and multi-drug resistance prolong time for cellular release and side effects of skin photosensitivity for commercial porphyrin originated photosensitizers (PS). Now there are very intensive investigations for introducing in practice a new, with a least side effects PSs for PDT. The usefulness of the more extended macromolecules structured with proper substituents refers not only to the improved optical properties like far-red and with intensive absorption and emission capacity, but mainly to the ability for selective delivery and adhesion to the target cells, such as bacteria or other pathogens. The present study focuses on the charge effect of photodynamic agent on the uptake capacity toward gram-negative bacteria cells and their further photoinactivation. The multi-drug resistant microorganism Aeromanas hydrophilla, which is causing diseases to fishes and humans, is treated. The new octa-cationic phthalocyanines are designed to compare PDT efficacy to the efficacy of tetra-substituted derivatives with the same functional peripheral substituents. The higher cellular accumulation to the bacteria cells as a result of the high number of positive charges of photosensitizer, leading to the better adhesion to the cellular membranes and improved photoinactivation of bacteria causing superficial and intra-organ infections. These results set a base of a rationale design of covalently octa-substituted phthalocyanines with positive charge for a successful treatment of microorganisms.
机译:如今,光动力疗法(PDT)是一种创新的,尚未广泛使用的光药物引发的治疗方法,该方法基于用适当的光照射以产生对病原性生物物体(细菌,病毒,肿瘤细胞)有毒的氧物种的光敏化合物。限制PDT功效的障碍涉及到选择性释放和对多药耐药性延长了细胞释放的时间,以及商用卟啉衍生的光敏剂(PS)引起的皮肤光敏性副作用。现在,在实践中进行了非常深入的研究,以引入一种新的,对PDT具有最小副作用的PS。具有适当取代基的结构更广泛的大分子的用途不仅指改进的光学性质(如远红),而且具有较强的吸收和发射能力,而且主要指选择性递送和粘附至靶细胞(如细菌或细菌)的能力。其他病原体。本研究集中于光动力剂对革兰氏阴性细菌细胞的摄取能力及其进一步的光灭活的电荷效应。治疗对鱼类和人类造成疾病的耐多药微生物嗜水气单胞菌。新的八阳离子酞菁旨在将PDT功效与具有相同功能性外围取代基的四取代衍生物的功效进行比较。由于大量光敏剂带正电荷,因此细菌细胞具有更高的细胞蓄积性,从而导致对细胞膜的更好粘附,并改善了细菌的光灭活,从而导致表层和器官内感染。这些结果为成功治疗微生物奠定了正电荷共价八取代酞菁的基本原理设计的基础。

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