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Maltotriose-based probes for fluorescence and photoacoustic imaging of bacterial infections

机译:基于麦芽糖的荧光和光声成像对细菌感染的探针

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摘要

Currently, there are no non-invasive tools to accurately diagnose wound and surgical site infections before they become systemic or cause significant anatomical damage. Fluorescence and photoacoustic imaging are cost-effective imaging modalities that can be used to noninvasively diagnose bacterial infections when paired with a molecularly targeted infection imaging agent. Here, we develop a fluorescent derivative of maltotriose (Cy7-1-maltotriose), which is shown to be taken up in a variety of gram-positive and gram-negative bacterial strains in vitro. In vivo fluorescence and photoacoustic imaging studies highlight the ability of this probe to detect infection, assess infection burden, and visualize the effectiveness of antibiotic treatment in E. coli -induced myositis and a clinically relevant S. aureus wound infection murine model. In addition, we show that maltotriose is an ideal scaffold for infection imaging agents encompassing better pharmacokinetic properties and in vivo stability than other maltodextrins (e.g. maltohexose).
机译:目前,在它们变得全身或造成显着解剖损伤之前,没有任何非侵入性工具可以准确诊断伤口和手术部位感染。荧光和光声成像是经济高效的成像模态,其可用于与分子靶向感染成像剂配对时的非侵入性诊断细菌感染。在此,我们开发麦芽酮(Cy7-1-麦芽藻糖)的荧光衍生物,其显示在体外以各种革兰氏阳性和革兰氏阴性细菌菌株占据。体内荧光和光声成像研究突出了该探针检测感染,评估感染负担的能力,以及可视化大肠杆菌诱导的肌炎和临床相关的S. aureus伤口感染鼠模型的抗生素治疗的有效性。此外,我们表明,麦芽氏糖是用于感染成像剂的理想支架,其包括更好的药代动力学性质和体内稳定性而不是其他麦芽糊精(例如maltohexose)。

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