Bocancia-Mateescu Lorena-Andreea, Stan Dana, Mirica Andreea-Cristina, Ghita Miruna Gabriela, Stan Diana, Ruta Lavinia Liliana
DDS Diagnostic, 7 Vulcan Judetu, 031427 Bucharest, Romania.
Medicine Doctoral School, Titu Maiorescu University, 031593 Bucharest, Romania.
Pharmaceuticals (Basel). 2023 Jun 9;16(6):863. doi: 10.3390/ph16060863.
The aim of this review is to summarize some of the most recent work in the field of cardiovascular disease (CVD) diagnosis and therapy, focusing mainly on the role of nanobodies in the development of non-invasive imaging methods, diagnostic devices, and advanced biotechnological therapy tools. In the context of the increased number of people suffering from CVDs due to a variety of factors such as sedentariness, poor nutrition, stress, and smoking, there is an urgent need for new and improved diagnostic and therapeutic methods. Nanobodies can be easily produced in prokaryotes, lower eukaryotes, and plant and mammalian cells, and offer great advantages. In the diagnosis domain, they are mainly used as labeled probes that bind to certain surface receptors or other target molecules and give important information on the severity and extent of atherosclerotic lesions, using imaging methods such as contrast-enhanced ultrasound molecular imaging (CEUMI), positron emission tomography (PET), single-photon emission computed tomography coupled with computed tomography (SPECT/CT), and PET/CT. As therapy tools, nanobodies have been used either for transporting drug-loaded vesicles to specific targets or as inhibitors for certain enzymes and receptors, demonstrated to be involved in various CVDs.
本综述的目的是总结心血管疾病(CVD)诊断与治疗领域的一些最新研究成果,主要聚焦纳米抗体在无创成像方法、诊断设备及先进生物技术治疗工具研发中的作用。由于久坐、营养不良、压力和吸烟等多种因素导致患心血管疾病的人数增加,因此迫切需要新的、改进的诊断和治疗方法。纳米抗体能够在原核生物、低等真核生物、植物及哺乳动物细胞中轻松生产,具有诸多优势。在诊断领域,它们主要用作标记探针,与特定表面受体或其他靶分子结合,并借助诸如超声分子造影成像(CEUMI)、正电子发射断层扫描(PET)、单光子发射计算机断层扫描联合计算机断层扫描(SPECT/CT)以及PET/CT等成像方法,提供有关动脉粥样硬化病变严重程度和范围的重要信息。作为治疗工具,纳米抗体已被用于将载药囊泡运输至特定靶点,或作为某些酶和受体的抑制剂,这些酶和受体被证明与多种心血管疾病有关。