Gong Yuxiang, Long Huan, Huang Kaiyao
Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, Hubei, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sheng Wu Gong Cheng Xue Bao. 2023 Oct 25;39(10):4308-4321. doi: 10.13345/j.cjb.230228.
Gas vesicles (GVs) are gas-filled protein nanostructures that can regulate the buoyancy of microorganisms such as cyanobacteria and archaea. Recent studies have shown that GVs have the potential to be used as ultrasound molecular imaging probes in disease diagnosis and treatment. However, the mechanism of the inflation and deflation of GVs remains unclear, which hampers the preservation of GVs and gas replacement. In the present study, the environmental pH value was found to be an important factor in regulating the inflation and deflation of GVs. It can not only regulate the inflation and deflation of GVs to make sp. cells present distinct levitation state, but also regulate the inflation and deflation of purified GVs , and the regulation process is reversible. Our results may provide a technical support for the large-scale production and preservation of biosynthetic ultrasound molecular imaging probes, especially for gas replacement to meet different diagnostic and therapeutic needs, and would facilitate the application of biosynthetic ultrasound molecular imaging probes.
气体囊泡(GVs)是充满气体的蛋白质纳米结构,可调节蓝细菌和古细菌等微生物的浮力。最近的研究表明,气体囊泡有潜力用作疾病诊断和治疗中的超声分子成像探针。然而,气体囊泡的膨胀和收缩机制仍不清楚,这阻碍了气体囊泡的保存和气体置换。在本研究中,发现环境pH值是调节气体囊泡膨胀和收缩的一个重要因素。它不仅可以调节气体囊泡的膨胀和收缩,使特定细胞呈现不同的悬浮状态,还可以调节纯化气体囊泡的膨胀和收缩,并且调节过程是可逆的。我们的结果可能为生物合成超声分子成像探针的大规模生产和保存提供技术支持,特别是对于满足不同诊断和治疗需求的气体置换,并将促进生物合成超声分子成像探针的应用。