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肿瘤研究中基于水凝胶的微流控血脑屏障模型的进展

Advances in Hydrogel-Based Microfluidic Blood-Brain-Barrier Models in Oncology Research.

作者信息

Sood Ankur, Kumar Anuj, Dev Atul, Gupta Vijai Kumar, Han Sung Soo

机构信息

School of Chemical Engineering, Yeungnam University, 280 Daehak-ro, Gyeongsan 38541, Korea.

Institute of Cell Culture, Yeungnam University, 280 Daehak-ro, Gyeongsan 38541, Korea.

出版信息

Pharmaceutics. 2022 May 5;14(5):993. doi: 10.3390/pharmaceutics14050993.

Abstract

The intrinsic architecture and complexity of the brain restricts the capacity of therapeutic molecules to reach their potential targets, thereby limiting therapeutic possibilities concerning neurological ailments and brain malignancy. As conventional models fail to recapitulate the complexity of the brain, progress in the field of microfluidics has facilitated the development of advanced in vitro platforms that could imitate the in vivo microenvironments and pathological features of the blood-brain barrier (BBB). It is highly desirous that developed in vitro BBB-on-chip models serve as a platform to investigate cancer metastasis of the brain along with the possibility of efficiently screening chemotherapeutic agents against brain malignancies. In order to improve the proficiency of BBB-on-chip models, hydrogels have been widely explored due to their unique physical and chemical properties, which mimic the three-dimensional (3D) micro architecture of tissues. Hydrogel-based BBB-on-chip models serves as a stage which is conducive for cell growth and allows the exchange of gases and nutrients and the removal of metabolic wastes between cells and the cell/extra cellular matrix (ECM) interface. Here, we present recent advancements in BBB-on-chip models targeting brain malignancies and examine the utility of hydrogel-based BBB models that could further strengthen the future application of microfluidic devices in oncology research.

摘要

大脑的内在结构和复杂性限制了治疗性分子到达其潜在靶点的能力,从而限制了针对神经疾病和脑恶性肿瘤的治疗可能性。由于传统模型无法重现大脑的复杂性,微流控技术领域的进展推动了先进体外平台的开发,这些平台可以模拟血脑屏障(BBB)的体内微环境和病理特征。非常希望开发的体外芯片上血脑屏障模型能够作为一个平台,用于研究脑癌转移以及有效筛选针对脑恶性肿瘤的化疗药物的可能性。为了提高芯片上血脑屏障模型的效能,水凝胶因其独特的物理和化学性质而被广泛研究,这些性质可模拟组织的三维(3D)微结构。基于水凝胶的芯片上血脑屏障模型提供了一个有利于细胞生长的平台,并允许细胞与细胞/细胞外基质(ECM)界面之间进行气体和营养物质的交换以及代谢废物的清除。在此,我们介绍针对脑恶性肿瘤的芯片上血脑屏障模型的最新进展,并探讨基于水凝胶的血脑屏障模型的效用,这些模型可以进一步加强微流控设备在肿瘤学研究中的未来应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b70e/9144371/b5ab4de34f05/pharmaceutics-14-00993-g001.jpg

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