Photoswitching protein-XTEN fusions as injectable optoacoustic probes

IF 9.6 1区 医学 Q1 ENGINEERING, BIOMEDICAL Acta Biomaterialia Pub Date : 2025-03-15 Epub Date: 2025-02-04 DOI:10.1016/j.actbio.2025.02.002
Yishu Huang , Mariia Stankevych , Vipul Gujrati , Uwe Klemm , Azeem Mohammed , David Wiesner , Mara Saccomano , Monica Tost , Annette Feuchtinger , Kanuj Mishra , Oliver Bruns , Arie Geerlof , Vasilis Ntziachristos , Andre C. Stiel
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Abstract

Optoacoustic imaging (OAI) is a unique in vivo imaging technique combining deep tissue penetration with high resolution and molecular sensitivity. OAI relying on strong intrinsic contrast, such as blood hemoglobin, already shows its value in medical diagnostics. However, OAI sensitivity to current extrinsic contrast agents is insufficient and limits its role in detecting disease-related biomarkers. The recently introduced concept of photoswitching and temporal unmixing techniques for OAI allows detecting extrinsic contrast with high sensitivity, allowing the visualization of small populations of cells labeled with photoswitching proteins deep within the tissue. However, transgene modification might not be permitted in some cases, such as for diagnostic use. Therefore, it is desirable to leverage the concept of photoswitching OAI towards injectable formulations. Since photoswitchable synthetic dyes are mainly excited by blue wavelengths unsuited for imaging in tissue, we propose exploiting the addition of XTENs to photoswitching proteins towards yielding injectable agents. The addition of XTEN to a protein enhances its plasma half-life and bioavailability, thus allowing its use, for example, in targeted labeling approaches. In this pilot study, we show that intravenously injected near-infrared absorbing photoswitchable proteins, ReBphP-PCM, coupled to XTEN, allow highly sensitive optoacoustic visualization of a tumor xenograft in vivo. The sensitivity to XTENs-ReBphP-PCM determined by ex vivo analysis of labeled cells is one to two orders of magnitude beyond conventional synthetic dyes used currently in OAI. The enhanced sensitivity afforded by photoswitching OAI, in combination with the increased bioavailability and biocompatibility of XTENs-ReBphP-PCM, makes this fusion protein a promising tool for facilitating sensitive detection of biomarkers in OAI with a potential for future use in diagnostics.

Statement of significance

Optoacoustic imaging (OAI) is a unique in vivo imaging technique that combines deep tissue penetration with high resolution. OAI, which relies on intrinsic contrast, such as blood hemoglobin, could already be valuable in medical diagnostics. However, the use of extrinsic contrast agents to augment disease-related biomarkers in research and diagnostics suffers from very limited sensitivity of the generated contrast agent. We present an intravenously injected photoswitchable protein, ReBphP-PCM, coupled to XTEN, allowing highly sensitive OAI. The sensitivity is one to two orders of magnitude greater than that of conventional synthetic dyes used currently in OA imaging. The high sensitivity afforded by photoswitching together with the enhanced bioavailability and biocompatibility of the XTENs-ReBphP-PCM make this a standard agent for high-quality detection of OAI with potential for clinical use.

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光电开关蛋白- xten融合物作为可注射光声探针。
光声成像(OAI)是一种独特的体内成像技术,结合了深层组织穿透、高分辨率和分子灵敏度。依靠强大的内在对比(如血红蛋白)的OAI已经在医学诊断中显示出其价值。然而,OAI对当前外源性造影剂的敏感性不足,限制了其在检测疾病相关生物标志物方面的作用。最近引入的用于OAI的光电开关和时间解混技术的概念允许以高灵敏度检测外部对比,允许可视化组织深处被光电开关蛋白标记的小群体细胞。然而,转基因修饰在某些情况下可能不被允许,例如用于诊断。因此,将光电开关OAI的概念用于可注射制剂是可取的。由于可光导合成染料主要由不适合组织成像的蓝色波长激发,我们建议利用XTENs添加到光导蛋白中以生产可注射剂。将XTEN添加到蛋白质中可以提高其血浆半衰期和生物利用度,从而使其能够用于例如靶向标记方法。在这项初步研究中,我们展示了静脉注射近红外吸收光开关蛋白ReBphP-PCM,与XTEN偶联,可以在体内实现肿瘤异种移植物的高灵敏度光声可视化。通过对标记细胞的离体分析,对XTENs-ReBphP-PCM的敏感性比目前在OAI中使用的传统合成染料高出一到两个数量级。光开关OAI提供的增强灵敏度,结合XTENs-ReBphP-PCM提高的生物利用度和生物相容性,使这种融合蛋白成为促进OAI中生物标志物敏感检测的有希望的工具,并有可能在未来用于诊断。意义声明:光声成像(OAI)是一种独特的体内成像技术,结合了深层组织穿透和高分辨率。OAI依赖于内在对比,如血液血红蛋白,在医学诊断中可能已经很有价值。然而,在研究和诊断中使用外源性造影剂来增加疾病相关的生物标志物,所产生的造影剂的敏感性非常有限。我们提出了一种静脉注射的光开关蛋白,ReBphP-PCM,偶联到XTEN,允许高灵敏度的OAI。灵敏度比目前用于OA成像的传统合成染料高一到两个数量级。XTENs-ReBphP-PCM的高灵敏度以及增强的生物利用度和生物相容性使其成为具有临床应用潜力的高质量OAI检测的标准试剂。
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来源期刊
Acta Biomaterialia
Acta Biomaterialia 工程技术-材料科学:生物材料
CiteScore
16.80
自引率
3.10%
发文量
776
审稿时长
30 days
期刊介绍: Acta Biomaterialia is a monthly peer-reviewed scientific journal published by Elsevier. The journal was established in January 2005. The editor-in-chief is W.R. Wagner (University of Pittsburgh). The journal covers research in biomaterials science, including the interrelationship of biomaterial structure and function from macroscale to nanoscale. Topical coverage includes biomedical and biocompatible materials.
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Editorial Board A biodegradable high-purity magnesium closing clip for general surgery Cascade-amplified iron-doped bismuth sulfide biomimetic nanoplatform for synergistic therapy and multimodal imaging of triple-negative breast cancer Non-destructive assessment of multi-material micro-tissue mechanics reveals the critical role of rigidity gradients in tumour growth and pressure A sulfonated cartilage interpenetrating polymer network reinforces and protects the extracellular matrix of degraded cartilage
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