天然分离和异源表达的气体囊泡的造影成像特性表征与比较

Characterization and Comparison of Contrast Imaging Properties of Naturally Isolated and Heterologously Expressed Gas Vesicles.

作者信息

Liu Tingting, Wang Jieqiong, Liu Chenxing, Wang Yuanyuan, Li Zhenzhou, Yan Fei

机构信息

Ultrasonic Medicine, Graduate School, Guangxi University of Chinese Medicine, Nanning 530200, China.

Department of Ultrasound, The Second People's Hospital of Shenzhen, The First Affiliated Hospital of Shenzhen University, Shenzhen 518061, China.

出版信息

Pharmaceuticals (Basel). 2024 Jun 7;17(6):755. doi: 10.3390/ph17060755.

Abstract

Nanoscale ultrasound contrast agents have attracted considerable interest in the medical imaging field for their ability to penetrate tumor vasculature and enable targeted imaging of cancer cells by attaching to tumor-specific ligands. Despite their potential, traditional chemically synthesized contrast agents face challenges related to complex synthesis, poor biocompatibility, and inconsistent imaging due to non-uniform particle sizes. To address these limitations, bio-synthesized nanoscale ultrasound contrast agents have been proposed as a viable alternative, offering advantages such as enhanced biocompatibility, consistent particle size for reliable imaging, and the potential for precise functionalization to improve tumor targeting. In this study, we successfully isolated cylindrical gas vesicles (GVs) from and subsequently introduced the GVs-encoding gene cluster into using genetic engineering techniques. We then characterized the contrast imaging properties of two kinds of purified GVs, using in vitro and in vivo methods. Our results demonstrated that naturally isolated GVs could produce stable ultrasound contrast signals in murine livers and tumors using clinical diagnostic ultrasound equipment. Additionally, heterologously expressed GVs from gene-engineered bacteria also exhibited good ultrasound contrast performance. Thus, our study presents favorable support for the application of genetic engineering techniques in the modification of gas vesicles for future biomedical practice.

摘要

纳米级超声造影剂因其能够穿透肿瘤脉管系统并通过附着于肿瘤特异性配体实现癌细胞的靶向成像,而在医学成像领域引起了广泛关注。尽管具有潜力,但传统化学合成的造影剂面临着与复杂合成、生物相容性差以及由于粒径不均匀导致成像不一致等相关挑战。为了解决这些局限性,生物合成的纳米级超声造影剂已被提议作为一种可行的替代方案,具有增强的生物相容性、用于可靠成像的一致粒径以及精确功能化以改善肿瘤靶向性的潜力等优势。在本研究中,我们成功地从[具体来源未提及]中分离出圆柱形气体囊泡(GVs),随后使用基因工程技术将编码GVs的基因簇引入[具体宿主未提及]。然后,我们使用体外和体内方法对两种纯化的GVs的造影成像特性进行了表征。我们的结果表明,天然分离的GVs使用临床诊断超声设备可在小鼠肝脏和肿瘤中产生稳定的超声造影信号。此外,基因工程细菌中异源表达的GVs也表现出良好的超声造影性能。因此,我们的研究为基因工程技术在修饰气体囊泡以用于未来生物医学实践方面的应用提供了有力支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35c5/11207003/4bb7b373c6a8/pharmaceuticals-17-00755-g001.jpg

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