Microfluidic system, as a kind of miniature integrated operating platform, has been applied to solid-state nanopore sensors after many years of experimental study. In the process of introducing microfluidic into solid-state nanopore sensors, many novel device structures are designed due to the abundance of analytes and the diversity of detection methods. Here we review the fundamental setup of nanopore-based microfluidic systems and the developments and advancements that have been taking place in the field. The microfluidic systems with a multichannel strategy to elevate the throughput and efficiency of nanopore sensors are then presented. Multifunctional detection represented by optical-electrical detection, which is realized by microfluidic integration, is also described. A high integration microfluidic system with nanopore is further discussed, which shows the prototype of commercialization.
A protein is a kind of major biomacromolecule of life. Its sequence, structure, and content in organisms contains quite important information for normal or pathological physiological process. However, research of proteomics is facing certain obstacles. Only a few technologies are available for protein analysis, and their application is limited by chemical modification or the need for a large amount of sample. Solid-state nanopore overcomes some shortcomings of the existing technology, and has the ability to detect proteins at a single-molecule level, with its high sensitivity and robustness of device. Many works on detection of protein molecules and discriminating structure have been carried out in recent years. Single-molecule protein sequencing techniques based on solid-state nanopore are also been proposed and developed. Here, we categorize and describe these efforts and progress, as well as discuss their advantages and drawbacks.
We developed EasyNanopore which is
a ready-to-use software to select
the events of a nanopore molecular translocation experiment. The software
is released as an executable file with a graphical user interface
and provides several versions suitable for different operating systems
without installing any running environment to execute it. We use the
adaptive threshold which adapts to the low-frequency variation of
the baseline to detect events and uses a multiprocess method to accelerate
the process of event detection. After the event is identified, its
duration and amplitude information will be extracted and a resulting
txt file will be generated for further analysis. Our software runs
fast and can effectively extract the data from data of large-scale
nanopore molecular translocation experiments.
Proteins with changeable conformation, such as polymerases, play a very important role in various life activities. Their conformational changes can be reflected in the structural size and flexibility, which may...
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