Medical Cell Biophysics, MIRA Institute for Biomedical Technology and Technical Medicine, Faculty of Science and Technology, PO Box 217, 7500 AE Enschede, The Netherlands.
University Medical Center Utrecht, Department of Medical Microbiology, Virology, Heidelberglaan 100, 3584CX Utrecht, The Netherlands.
Biosens Bioelectron. 2018 Oct 15;117:659-668. doi: 10.1016/j.bios.2018.07.002. Epub 2018 Jul 3.
We demonstrate the fabrication of fully printed microfluidic CD4 counting chips with complete on-chip sample preparation and their applicability as a CD4 counting assay using samples from healthy donors and HIV-infected patients. CD4 counting in low-income and resource-limited point-of-care settings is only practical and affordable, if disposable tests can be fabricated at very low cost and all manual sample preparation is avoided, while operation as well as quantification is fully automated and independent of the skills of the operator. Here, we show the successful use of (inkjet) printing methods both to fabricate microfluidic cell counting chambers with controlled heights, and to deposit hydrogel layers with embedded fluorophore-labeled antibodies for on-chip sample preparation and reagent storage. The maturation process of gelatin after deposition prevents antibody wash-off during blood inflow very well, while temperature-controlled dissolution of the matrix ensures complete antibody release for immunostaining after the inflow has stopped. The prevention of antibody wash-off together with the subsequent complete antibody release guarantees a homogeneous fluorescence background, making rapid and accurate CD4 counting possible. We show the successful application of our fully printed CD4 counting chips on samples from healthy donors as well as from HIV-infected patients and find an excellent agreement between results from our method and from the gold standard, flow cytometry, in both cases.
我们展示了全印刷微流控 CD4 计数芯片的制造过程,这些芯片具有完整的芯片内样品制备功能,可用于使用来自健康供体和 HIV 感染患者的样本进行 CD4 计数检测。在低收入和资源有限的护理点环境中进行 CD4 计数,如果可以以非常低的成本制造一次性测试并且完全避免手动样品制备,同时操作和定量过程完全自动化且不依赖于操作人员的技能,那么这才是可行且负担得起的。在这里,我们展示了(喷墨)打印方法的成功应用,不仅可以制造具有受控高度的微流控细胞计数室,还可以沉积含有嵌入荧光标记抗体的水凝胶层,用于芯片内样品制备和试剂储存。在沉积后明胶的成熟过程可以很好地防止抗体在血液流入时被冲走,而基质的温度控制溶解则确保了在流入停止后免疫染色时完全释放抗体。抗体的洗脱被阻止以及随后的完全释放抗体保证了均匀的荧光背景,使得快速准确的 CD4 计数成为可能。我们展示了我们的全印刷 CD4 计数芯片在健康供体以及 HIV 感染患者样本上的成功应用,并且在两种情况下,我们的方法与金标准流式细胞术的结果都非常吻合。