Multifunctional fluorescence/photoacoustic bimodal imaging of γ-glutamyltranspeptidase in liver disorders under different triggering conditions

IF 12.8 1区 医学 Q1 ENGINEERING, BIOMEDICAL Biomaterials Pub Date : 2024-05-27 DOI:10.1016/j.biomaterials.2024.122635
Kai Wang , Xu-Yang Chen , Ren-Wei-Yang Zhang , Ying Yue , Xiao-Lin Wen , Yu-Shun Yang , Chen-Yang Han , Yuan Ma , Hong-Ji Liu , Hai-Liang Zhu
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Abstract

Hepatocellular carcinoma (HCC) seriously threatens the human health. Previous investigations revealed that γ-glutamyltranspeptidase (GGT) was tightly associated with the chronic injury, hepatic fibrosis, and the development of HCC, therefore might act as a potential indicator for monitoring the HCC-related processes. Herein, with the contribution of a structurally optimized probe ETYZE-GGT, the bimodal imaging in both far red fluorescence (FL) and photoacoustic (PA) modes has been achieved in multiple HCC-related models. To our knowledge, this work covered the most comprehensive models including the fibrosis and developed HCC processes as well as the premonitory induction stages (autoimmune hepatitis, drug-induced liver injury, non-alcoholic fatty liver disease). ETYZE-GGT exhibited steady and practical monitoring performances on reporting the HCC stages via visualizing the GGT dynamics. The two modes exhibited working consistency and complementarity with high spatial resolution, precise apparatus and desirable biocompatibility. In cooperation with the existing techniques including testing serum indexes and conducting pathological staining, ETYZE-GGT basically realized the universal application for the accurate pre-clinical diagnosis of as many HCC stages as possible. By deeply exploring the mechanically correlation between GGT and the HCC process, especially during the premonitory induction stages, we may further raise the efficacy for the early diagnosis and treatment of HCC.

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不同触发条件下肝脏疾病中γ-谷氨酰转肽酶的多功能荧光/光声双模成像。
肝细胞癌(HCC)严重威胁人类健康。先前的研究发现,γ-谷氨酰转肽酶(GGT)与慢性损伤、肝纤维化和 HCC 的发展密切相关,因此可作为监测 HCC 相关过程的潜在指标。在此,我们利用结构优化的探针 ETYZE-GGT,在多个 HCC 相关模型中实现了远红外荧光(FL)和光声(PA)模式的双模成像。据我们所知,这项工作涵盖了最全面的模型,包括纤维化和已发展的 HCC 过程以及前驱诱导阶段(自身免疫性肝炎、药物性肝损伤、非酒精性脂肪肝)。ETYZE-GGT 在通过可视化 GGT 动态报告 HCC 阶段方面表现出稳定实用的监测性能。这两种模式具有工作一致性和互补性,空间分辨率高,仪器精确,生物相容性好。配合现有的血清指标检测和病理染色等技术,ETYZE-GGT 基本实现了对尽可能多的 HCC 分期临床前准确诊断的普遍应用。通过深入探讨 GGT 与 HCC 进程,尤其是诱发前兆阶段的机理相关性,可进一步提高 HCC 早期诊断和治疗的有效性。
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来源期刊
Biomaterials
Biomaterials 工程技术-材料科学:生物材料
CiteScore
26.00
自引率
2.90%
发文量
565
审稿时长
46 days
期刊介绍: Biomaterials is an international journal covering the science and clinical application of biomaterials. A biomaterial is now defined as a substance that has been engineered to take a form which, alone or as part of a complex system, is used to direct, by control of interactions with components of living systems, the course of any therapeutic or diagnostic procedure. It is the aim of the journal to provide a peer-reviewed forum for the publication of original papers and authoritative review and opinion papers dealing with the most important issues facing the use of biomaterials in clinical practice. The scope of the journal covers the wide range of physical, biological and chemical sciences that underpin the design of biomaterials and the clinical disciplines in which they are used. These sciences include polymer synthesis and characterization, drug and gene vector design, the biology of the host response, immunology and toxicology and self assembly at the nanoscale. Clinical applications include the therapies of medical technology and regenerative medicine in all clinical disciplines, and diagnostic systems that reply on innovative contrast and sensing agents. The journal is relevant to areas such as cancer diagnosis and therapy, implantable devices, drug delivery systems, gene vectors, bionanotechnology and tissue engineering.
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