Department of Surgery-Transplant and Mary & Dick Holland Regenerative Medicine Program, College of Medicine, University of Nebraska Medical Center, Omaha, NE 68198, United States.
National Strategic Research Institute, Omaha, NE 68106, United States.
Acta Biomater. 2022 Jul 1;146:211-221. doi: 10.1016/j.actbio.2022.04.045. Epub 2022 May 2.
Accurate and rapid point-of-care tissue and microbiome sampling is critical for early detection of cancers and infectious diseases and often result in effective early intervention and prevention of disease spread. In particular, the low prevalence of Barrett's and gastric premalignancy in the Western world makes population-based endoscopic screening unfeasible and cost-ineffective. Herein, we report a method that may be useful for prescreening the general population in a minimally invasive way using a swallowable, re-expandable, ultra-absorbable, and retrievable nanofiber cuboid and sphere produced by electrospinning, gas-foaming, coating, and crosslinking. The water absorption capacity of the cuboid- and sphere-shaped nanofiber objects is shown ∼6000% and ∼2000% of their dry mass. In contrast, unexpanded semicircular and square nanofiber membranes showed <500% of their dry mass. Moreover, the swallowable sphere and cuboid were able to collect and release more bacteria, viruses, and cells/tissues from solutions as compared with unexpanded scaffolds. In addition to that, an expanded sphere shows higher cell collection capacity from the esophagus inner wall as compared with the unexpanded nanofiber membrane. Taken together, the nanofiber capsules developed in this study could provide a minimally invasive method of collecting biological samples from the duodenal, gastric, esophagus, and oropharyngeal sites, potentially leading to timely and accurate diagnosis of many diseases. STATEMENT OF SIGNIFICANCE: Recently, minimally invasive technologies have gained much attention in tissue engineering and disease diagnosis. In this study, we engineered a swallowable and retrievable electrospun nanofiber capsule serving as collection device to collect specimens from internal organs in a minimally invasive manner. The sample collection device could be an alternative endoscopy to collect the samples from internal organs like jejunum, stomach, esophagus, and oropharynx without any sedation. The newly engineered nanofiber capsule could be used to collect, bacteria, virus, fluids, and cells from the abovementioned internal organs. In addition, the biocompatible and biodegradable nanofiber capsule on a string could exhibit a great sample collection capacity for the primary screening of Barret Esophagus, acid reflux, SARS-COVID-19, Helicobacter pylori, and gastric cancer.
准确、快速的即时护理组织和微生物组采样对于早期发现癌症和传染病至关重要,通常可实现有效的早期干预和疾病传播的预防。特别是,在西方世界,Barrett 食管和胃癌前期病变的低患病率使得基于人群的内镜筛查变得不可行且不具有成本效益。在此,我们报告了一种方法,该方法可能有助于使用可吞咽、可再扩张、超吸收和可回收的纳米纤维长方体和球体通过电纺、气体发泡、涂覆和交联以微创的方式对普通人群进行预筛选。长方体和球体纳米纤维物体的吸水率是其干质量的约 6000%和 2000%。相比之下,未膨胀的半圆形和正方形纳米纤维膜的吸水率小于其干质量的 500%。此外,与未膨胀的支架相比,可吞咽的球体和长方体能够从溶液中收集和释放更多的细菌、病毒和细胞/组织。除此之外,与未膨胀的纳米纤维膜相比,扩张后的球体从食管内壁收集细胞的能力更高。总的来说,本研究中开发的纳米纤维胶囊可以提供一种微创方法,从十二指肠、胃、食管和口咽部位采集生物样本,有可能及时、准确地诊断许多疾病。
最近,微创技术在组织工程和疾病诊断中引起了广泛关注。在这项研究中,我们设计了一种可吞咽和可回收的电纺纳米纤维胶囊作为收集装置,以微创的方式从内部器官采集标本。这种样本采集装置可以替代内窥镜,从空肠、胃、食管和口咽等内部器官采集样本,无需任何镇静。新设计的纳米纤维胶囊可用于从上述内部器官中收集细菌、病毒、液体和细胞。此外,带有字符串的生物相容和可生物降解的纳米纤维胶囊可以显示出巨大的样本采集能力,用于 Barrett 食管、胃酸反流、SARS-COVID-19、幽门螺杆菌和胃癌的初步筛查。