1
Return

Digitally programmable microfluidic valving for autonomous, high-resolution continuous chromatographic purification

delete2026-03-01
delete0
delete
OA
AI
Y
Yi-Cheng Liao
C
Chih-Yi Huang
Y
Yu-Chuan Tang
C
C.-S. Wu
Y
Yu-Hsuan Chi
I
I-Wei Chen
M
Mu, Hsuan-Yu
L
Lin, Ya-Hui
Y
Yunching Chen
J
Jen-Huang Huang *
DOI:10.1039/d6lc00015kdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Continuous microscale purification requires analytical methods that provide deterministic fluid handling, precise temporal control, and contamination-free fraction discrimination. Existing microfluidic and benchtop chromatography systems only partially address these needs, leaving a gap for methods that support tightly coordinated, programmable purification cycles. This work presents a microfluidic continuous protein purification method that uses digitally programmable inlet (ICV) and collection (CCV) valves to establish a logic-driven chromatography operation. Sub-second buffer switching and deterministic routing across parallel affinity columns enable a reproducible and algorithm-defined purification sequence. Temporal gating through the CCV provides real-time, profile-guided fraction selection that isolates high-concentration eluates while effectively removing tailing segments. Using GFP-His6 as a model substrate, the system maintains 70-89% purity over ten uninterrupted cycles, demonstrating strong cycle-to-cycle stability. Purification of His6-tagged TRAIL further confirms compatibility with structurally sensitive biologics and preservation of functional activity. The compact, modular, and single-use architecture minimizes dead volume, prevents cross-contamination, and accommodates diverse chromatographic modes. By combining programmable valve logic with time-resolved elution control, this work advances microfluidic platforms from diagnostic tools toward autonomous and precision-controlled process operations. The method provides a broadly applicable analytical framework for microscale purification and supports the development of next-generation bioseparation and continuous biomanufacturing technologies.
Keywords:
microfluidic valving
continuous chromatography
programmable purification
protein purification
fraction selection

Journal

L
Lab on a Chip
IF:
5.4
Papers:
9.0K
Citations:
3.3W

Organization

A
academia sinica - taiwan
Scholars:
1.9W
Papers: 1.6W
Citations: 17
N
national tsing hua university
Scholars:
1.7K
Papers: 756
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers