Department of Mechanical Engineering, Materials and Nanotechnology Program, North Dakota State University, Fargo, 58108, ND, USA.
Maharashtra Institute of Technology-WPU, School of Pharmacy, Pune, India.
Sci Rep. 2020 Jun 19;10(1):10010. doi: 10.1038/s41598-020-66625-2.
Herein we report a hierarchically organized, water-dispersible 'nanocage' composed of cellulose nanocrystals (CNCs), which are magnetically powered by iron oxide (FeO) nanoparticles (NPs) to capture circulating tumor cells (CTCs) in blood for head and neck cancer (HNC) patients. Capturing CTCs from peripheral blood is extremely challenging due to their low abundance and its account is clinically validated in progression-free survival of patients with HNC. Engaging multiple hydroxyl groups along the molecular backbone of CNC, we co-ordinated FeO NPs onto CNC scaffold, which was further modified by conjugation with a protein - transferrin (Tf) for targeted capture of CTCs. Owing to the presence of FeO nanoparticles, these nanocages were magnetic in nature, and CTCs could be captured under the influence of a magnetic field. Tf-CNC-based nanocages were evaluated using HNC patients' blood sample and compared for the CTC capturing efficiency with clinically relevant Oncoviu platform. Conclusively, we observed that CNC-derived nanocages efficiently isolated CTCs from patient's blood at 85% of cell capture efficiency to that of the standard platform. Capture efficiency was found to vary with the concentration of Tf and FeO nanoparticles immobilized onto the CNC scaffold. We envision that, Tf-CNC platform has immense connotation in 'liquid biopsy' for isolation and enumeration of CTCs for early detection of metastasis in cancer.
在这里,我们报告了一种由纤维素纳米晶体(CNCs)组成的分层、水分散的“纳米笼”,它由氧化铁(FeO)纳米颗粒(NPs)通过磁场驱动,以捕获血液中的循环肿瘤细胞(CTCs),用于头颈部癌症(HNC)患者。由于 CTCs 的丰度低,从外周血中捕获 CTCs 极具挑战性,并且其在 HNC 患者无进展生存期的临床验证中得到了证实。通过与 CNC 分子主链上的多个羟基结合,我们将 FeO NPs 配位到 CNC 支架上,然后通过与蛋白质 - 转铁蛋白(Tf)结合进一步修饰,以靶向捕获 CTCs。由于存在 FeO 纳米颗粒,这些纳米笼具有磁性,并且可以在磁场的影响下捕获 CTCs。我们使用 HNC 患者的血液样本评估了基于 Tf-CNC 的纳米笼,并将其与临床相关的 Oncoviu 平台进行了 CTC 捕获效率的比较。结论是,我们观察到 CNC 衍生的纳米笼能够以 85%的细胞捕获效率从患者血液中高效分离 CTCs,与标准平台相当。捕获效率随固定在 CNC 支架上的 Tf 和 FeO 纳米颗粒的浓度而变化。我们设想,Tf-CNC 平台在“液体活检”中具有重要意义,可用于分离和计数 CTCs,以早期检测癌症转移。