Rizvi Syed Faheem Askari, Mu Shuai, Zhao Chunyan, Zhang Haixia
State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, 730000, Gansu, People's Republic of China.
School of Pharmacy, Lanzhou University, Lanzhou, 730000, Gansu, People's Republic of China.
Mikrochim Acta. 2022 Jan 8;189(2):53. doi: 10.1007/s00604-021-05148-7.
Near-infrared fluorescent (NIRF) dye-coupled self-assembled RGD-linked proapoptotic peptide nanoparticles have been synthesized with spherical shape and size ~ 30-40 nm diameters. The peptide sequence was coupled with cyanine 5.5 probe as NIRF-dye to introduce optical imaging properties and pH-dependent method was used to design Cy5.5 coupled self-assembled peptide nanoparticles (f-SAPNs). This nanoprobe has the ability to target αβ-integrin receptor overexpressed on cancer cell's surface with improved internalization capabilities into the mitochondria. The in situ study showed that this peptide sequence has potential to disrupt the mitochondrial membrane efficiently, activating the Caspase-3 enzyme, and ultimately induces cell apoptosis. It has been observed from in vitro study that the degree of apoptosis for f-SAPNs was increased from 25.6% to 96.3%, while decreased degree of necrosis from 51.7% to 0.2% compared with its parent peptide analog (Cy5.5-c[RGDKLAK]; f-CP) occurs. Further investigations revealed that these f-SAPNs showed high uptake in U87MG glioblastoma cells in comparison with PC-3 prostate cancer cells. Moreover, in vivo therapeutic studies represented the prominent decrease in the size of tumor tissue treated with f-CP and f-SAPNs (201 ± 13 mm and 104 ± 6 mm, respectively) compared with untreated tumor tissues (366 ± 18 mm). These outcomes highlighted the specificity, and efficacy of f-SAPNs toward αβ-integrin expressing tumor tissue in vivo and suggested that these novel designed f-SAPNs may serve as a potential theranostic drug for brain tumor glioblastoma multiforme. The pH-sensitive method gives NIRF dye-coupled self-assembled peptide nanoparticle (f-SAPNs), enables the tunable synthesis of spherical nanoparticles with high stability towards proteolysis, improved biocompatibility, and promising therapeutic efficacy.
已合成了近红外荧光(NIRF)染料偶联的自组装RGD连接促凋亡肽纳米颗粒,其呈球形,直径约为30 - 40纳米。该肽序列与作为NIRF染料的花菁5.5探针偶联,以引入光学成像特性,并采用pH依赖性方法设计了Cy5.5偶联的自组装肽纳米颗粒(f - SAPNs)。这种纳米探针能够靶向癌细胞表面过表达的αβ整合素受体,并具有增强的内化能力进入线粒体。原位研究表明,该肽序列有潜力有效破坏线粒体膜,激活半胱天冬酶 - 3酶,并最终诱导细胞凋亡。体外研究观察到,与亲本肽类似物(Cy5.5 - c[RGDKLAK];f - CP)相比,f - SAPNs的凋亡程度从25.6%增加到96.3%,坏死程度从51.7%降低到0.2%。进一步研究表明,与PC - 3前列腺癌细胞相比,这些f - SAPNs在U87MG胶质母细胞瘤细胞中有高摄取。此外,体内治疗研究表明,与未治疗的肿瘤组织(366±18毫米)相比,用f - CP和f - SAPNs治疗的肿瘤组织大小显著减小(分别为201±13毫米和104±6毫米)。这些结果突出了f - SAPNs对体内表达αβ整合素的肿瘤组织的特异性和疗效,并表明这些新设计的f - SAPNs可能作为多形性胶质母细胞瘤脑肿瘤的潜在治疗诊断药物。pH敏感方法得到了NIRF染料偶联的自组装肽纳米颗粒(f - SAPNs),能够合成对蛋白水解具有高稳定性、生物相容性改善且具有良好治疗效果的球形纳米颗粒。