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用于癌症治疗中高效小细胞纯化的双光子光刻制造的确定性侧向位移微流控系统。

Two-photon lithography-fabricated deterministic lateral displacement microfluidic system for efficient minicell purification in cancer therapy.

作者信息

Sharavu Sharaj Hegde, Bhagwat Sagar, Kluck Sebastian, Konak Büsra Merve Kirpat, Di Ventura Barbara, Pezeshkpour Pegah, Rapp Bastian E

机构信息

NeptunLab - Laboratory of Process Technology, Department of Microsystems Engineering (IMTEK), University of Freiburg, Georges-Köhler- Allee 103, Freiburg, 79110, Germany.

Signalling Research Centres BIOSS and CIBSS, Institute of Biology II, Faculty of Biology, University of Freiburg, Schänzlestraße 1, Freiburg, 79104, Germany.

出版信息

Biomed Microdevices. 2025 Sep 20;27(4):42. doi: 10.1007/s10544-025-00774-x.

Abstract

Chromosome-less minicells, derived from aberrant polar division events of bacterial cells, have emerged as promising nanocarriers for targeted cancer drug delivery due to their unique characteristics. A major challenge in their purification process lies in effectively isolating such spherical minicells (< 1 μm) from their rod-shaped parental cells (1-10 μm). This study investigates the use of Deterministic Lateral Displacement (DLD) microfluidic systems for minicell purification, leveraging Two-Photon Lithography (TPL) for the rapid prototyping of high-resolution designs optimized for this purpose. Under laminar flow conditions, we investigated key DLD design parameters including symmetric and asymmetric post gaps, outlet widths, dual post arrays, fluidic-resistance-optimized design. To enhance separation efficiency, we developed a two-stage microfluidic separation system combining a spiral inertial chip and an optimized DLD chip in series. Utilizing high-resolution TPL for chip fabrication of an inertial chip with 12 spirals and an asymmetric DLD chip with a 2 μm downstream post gap, we achieved a separation efficiency of 94%. This high efficiency achieved using microfluidics for the separation of cells differing in both shape and size, demonstrates the potential of advanced microfluidic systems in cell sorting.

摘要

无染色体微细胞源自细菌细胞异常的极向分裂事件,由于其独特的特性,已成为有前景的靶向癌症药物递送纳米载体。其纯化过程中的一个主要挑战在于如何有效地从杆状亲代细胞(1 - 10μm)中分离出这种球形微细胞(<1μm)。本研究探讨了使用确定性侧向位移(DLD)微流控系统进行微细胞纯化,并利用双光子光刻(TPL)对为此目的优化的高分辨率设计进行快速原型制作。在层流条件下,我们研究了关键的DLD设计参数,包括对称和不对称柱间隙、出口宽度、双柱阵列、流体阻力优化设计。为了提高分离效率,我们开发了一种两级微流控分离系统,该系统将螺旋惯性芯片和优化的DLD芯片串联起来。利用高分辨率TPL制作了一个带有12个螺旋的惯性芯片和一个下游柱间隙为2μm的不对称DLD芯片,我们实现了94%的分离效率。利用微流控技术对形状和大小不同的细胞进行分离所达到的这种高效率,证明了先进微流控系统在细胞分选方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2789/12450229/5553d673a574/10544_2025_774_Fig1_HTML.jpg

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