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Beta-lactamase targeted enzyme activatable photosensitizers for antimicrobial PDT

机译:β-内酰胺酶针对抗菌PDT的靶向酶活化光敏剂

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Photodynamic therapy (PDT) as a treatment modality for infectious disease has shown promise. However, most of the antimicrobial photosensitizers (PS) non-preferentially accumulate in both bacteria and host tissues, causing host tissue phototoxicity during treatment. We have developed a new antimicrobial PDT strategy which exploits beta-lactam resistance mechanism, one of the major drug-resistance bacteria evolved, to achieve enhanced target specificity with limited host damage. Our strategy comprises a prodrug construct with a PS and a quencher linked by beta-lactam ring, resulting in a diminished phototoxicity. This construct, beta-lactamase enzyme-activated-photosensitizer (beta-LEAP), can only be activated in the presence of both light and bacteria, and remains inactive elsewhere such as mammalian tissue. Beta-LEAP construct had shown specific cleavage by purified beta-lactamase and by beta-lactamase over-expressing methicillin resistant Staphylococcus aureus (MRSA). Specific photodynamic toxicity was observed towards MRSA, while dark and light toxicity were equivalent to reference strains. The prodrug design, synthesis and photophysical properties will be discussed.
机译:照相治疗(PDT)作为传染病的治疗方式表明了承诺。然而,大多数抗微生物光敏剂(PS)在细菌和宿主组织中非优先积聚,在治疗过程中导致宿主组织光毒性。我们已经开发出一种新的抗菌PDT策略,用于β-内酰胺抗性机制,其中一种主要的药物抵抗细菌进化,以实现有限的宿主损伤的增强的靶特异性。我们的策略包含具有PS和由β-内酰胺环连接的PS和猝灭剂的前药构建体,导致光烧毒分度降低。该构建体,β-内酰胺酶 - 活化 - 光敏剂(β-飞跃)只能在光和细菌存在下被激活,并且在诸如哺乳动物组织如诸如哺乳动物组织的其他地方保持不活跃。 β-漂入的构建体通过纯化的β-内酰胺酶和β-内酰胺酶过度表达甲氧西林金黄色葡萄球菌(MRSA)来显示特异性切割。观察到MRSA的比较光动力学毒性,而黑暗和光毒性相当于参考菌株。将讨论前药设计,合成和光学性质。

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