Optical Detection of Distal Lung Enzyme Activity in Human Inflammatory Lung Disease.

IF 5 Q1 ENGINEERING, BIOMEDICAL BME frontiers Pub Date : 2021-04-07 eCollection Date: 2021-01-01 DOI:10.34133/2021/9834163
Alicia Megia-Fernandez, Adam Marshall, Ahsan R Akram, Bethany Mills, Sunay V Chankeshwara, Emma Scholefield, Amy Miele, Bruce C McGorum, Chesney Michaels, Nathan Knighton, Tom Vercauteren, Francois Lacombe, Veronique Dentan, Annya M Bruce, Joanne Mair, Robert Hitchcock, Nik Hirani, Chris Haslett, Mark Bradley, Kevin Dhaliwal
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Abstract

Objective and Impact Statement. There is a need to develop platforms delineating inflammatory biology of the distal human lung. We describe a platform technology approach to detect in situ enzyme activity and observe drug inhibition in the distal human lung using a combination of matrix metalloproteinase (MMP) optical reporters, fibered confocal fluorescence microscopy (FCFM), and a bespoke delivery device. Introduction. The development of new therapeutic agents is hindered by the lack of in vivo in situ experimental methodologies that can rapidly evaluate the biological activity or drug-target engagement in patients. Methods. We optimised a novel highly quenched optical molecular reporter of enzyme activity (FIB One) and developed a translational pathway for in-human assessment. Results. We demonstrate the specificity for matrix metalloproteases (MMPs) 2, 9, and 13 and probe dequenching within physiological levels of MMPs and feasibility of imaging within whole lung models in preclinical settings. Subsequently, in a first-in-human exploratory experimental medicine study of patients with fibroproliferative lung disease, we demonstrate, through FCFM, the MMP activity in the alveolar space measured through FIB One fluorescence increase (with pharmacological inhibition). Conclusion. This translational in situ approach enables a new methodology to demonstrate active drug target effects of the distal lung and consequently may inform therapeutic drug development pathways.

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人炎症性肺病远端肺酶活性的光学检测
目标和影响声明。有必要开发描述人类远端肺部炎症生物学的平台。我们描述了一种平台技术方法,使用基质金属蛋白酶(MMP)光学报告子、纤维共聚焦荧光显微镜(FCFM)和定制递送装置的组合来检测人远端肺中的原位酶活性并观察药物抑制。介绍由于缺乏能够快速评估患者的生物活性或药物靶点参与的体内原位实验方法,新治疗剂的开发受到阻碍。方法。我们优化了一种新型的高度猝灭的酶活性光学分子报告子(FIB-One),并开发了一种用于人体评估的翻译途径。后果我们证明了基质金属蛋白酶(MMPs)2、9和13在MMPs生理水平内的特异性和探针去猝灭,以及在临床前环境中在全肺模型内成像的可行性。随后,在一项针对纤维增生性肺病患者的首次人类探索性实验医学研究中,我们通过FCFM证明了通过FIB One荧光增加(具有药理学抑制作用)测量的肺泡间隙MMP活性。结论这种原位转化方法使一种新的方法能够证明远端肺的活性药物靶向作用,从而为治疗药物的开发途径提供信息。
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CiteScore
7.10
自引率
0.00%
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0
审稿时长
16 weeks
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