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通过光声显微镜实现银屑病治疗的精准监测。

Enabling precision monitoring of psoriasis treatment by optoacoustic mesoscopy.

作者信息

Hindelang Benedikt, Nau Teresa, Englert Ludwig, Berezhnoi Andrei, Lauffer Felix, Darsow Ulf, Biedermann Tilo, Eyerich Kilian, Aguirre Juan, Ntziachristos Vasilis

机构信息

Department of Dermatology and Allergy, Technical University of Munich, 81675 Munich, Germany.

Chair of Biological Imaging, Technical University of Munich, 81675 Munich, Germany.

出版信息

Sci Transl Med. 2022 May 11;14(644):eabm8059. doi: 10.1126/scitranslmed.abm8059.

DOI:10.1126/scitranslmed.abm8059
PMID:35544596
Abstract

Psoriasis is a widespread inflammatory skin disease affecting about 2% of the general population. Recently, treatments that specifically target key proinflammatory cytokines driving the disease have been developed to complement conventional therapies with unspecific antiproliferative or anti-inflammatory effects. Efficient monitoring of treatment efficacy in the context of precision medicine and the assessment of new therapeutics require accurate noninvasive readouts of disease progression. However, characterization of psoriasis treatment remains subjective based on visual and palpatory clinical assessment of features observed on the skin surface. We hypothesized that optoacoustic (photoacoustic) mesoscopy could offer label-free assessment of inflammation biomarkers, extracted from three-dimensional (3D) high-resolution images of the human skin, not attainable by other noninvasive methods. We developed a second-generation ultra-broadband optoacoustic mesoscopy system, featuring sub-10-μm resolution and advanced motion correction technology, and performed 80 longitudinal measurements of 20 psoriatic skin plaques in humans under conventional inpatient treatment or receiving biologics with concomitant topical corticosteroid treatment. Optoacoustic image analysis revealed inflammatory and morphological skin features that indicated treatment efficacy with sensitivity, accuracy, and precision that was not possible using clinical metrics. We identify 3D imaging biomarkers that reveal responses to treatment and offer the potential to facilitate disease and treatment characterization. Our findings suggest that optoacoustic mesoscopy may offer a method of choice for yielding both qualitative and quantitative evaluations of skin treatments that are inaccessible by other methods, potentially enabling optimized therapies and precision medicine in dermatology.

摘要

银屑病是一种广泛存在的炎症性皮肤病,影响着约2%的普通人群。最近,已经开发出了专门针对驱动该疾病的关键促炎细胞因子的治疗方法,以补充具有非特异性抗增殖或抗炎作用的传统疗法。在精准医学背景下有效监测治疗效果以及评估新疗法需要对疾病进展进行准确的非侵入性读数。然而,基于对皮肤表面观察到的特征进行视觉和触诊临床评估,银屑病治疗的特征描述仍然是主观的。我们假设光声(photoacoustic)显微术可以提供对炎症生物标志物的无标记评估,这些生物标志物是从人体皮肤的三维(3D)高分辨率图像中提取的,而其他非侵入性方法无法实现这一点。我们开发了第二代超宽带光声显微术系统,具有亚10微米的分辨率和先进的运动校正技术,并在传统住院治疗或接受生物制剂并同时使用局部皮质类固醇治疗的情况下,对20名人类银屑病皮肤斑块进行了80次纵向测量。光声图像分析揭示了炎症和形态学皮肤特征,这些特征以临床指标无法实现的敏感性、准确性和精确性表明了治疗效果。我们确定了揭示对治疗反应并有可能促进疾病和治疗特征描述的3D成像生物标志物。我们的研究结果表明,光声显微术可能提供一种选择方法,用于对其他方法无法触及的皮肤治疗进行定性和定量评估,有可能在皮肤科实现优化治疗和精准医学。

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