Advancement of Next-Generation DNA Sequencing through Ionic Blockade and Transverse Tunneling Current Methods

被引:6
|
作者
Kumawat, Rameshwar L. [1 ]
Jena, Milan Kumar [1 ]
Mittal, Sneha [1 ]
Pathak, Biswarup [1 ]
机构
[1] Indian Inst Technol IIT Indore, Dept Chem, Indore 453552, Madhya Pradesh, India
关键词
DNA sequencing; ionic current; machine learning; nanopore; transverse current; SOLID-STATE NANOPORES; SINGLE-STRANDED-DNA; ELECTRONIC TRANSPORT-PROPERTIES; ALPHA-HEMOLYSIN; GRAPHENE NANORIBBONS; HUMAN-GENOME; CURRENT SIGNALS; AL2O3; NANOPORE; NUCLEIC-ACIDS; MSPA NANOPORE;
D O I
10.1002/smll.202401112
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
DNA sequencing is transforming the field of medical diagnostics and personalized medicine development by providing a pool of genetic information. Recent advancements have propelled solid-state material-based sequencing into the forefront as a promising next-generation sequencing (NGS) technology, offering amplification-free, cost-effective, and high-throughput DNA analysis. Consequently, a comprehensive framework for diverse sequencing methodologies and a cross-sectional understanding with meticulous documentation of the latest advancements is of timely need. This review explores a broad spectrum of progress and accomplishments in the field of DNA sequencing, focusing mainly on electrical detection methods. The review delves deep into both the theoretical and experimental demonstrations of the ionic blockade and transverse tunneling current methods across a broad range of device architectures, nanopore, nanogap, nanochannel, and hybrid/heterostructures. Additionally, various aspects of each architecture are explored along with their strengths and weaknesses, scrutinizing their potential applications for ultrafast DNA sequencing. Finally, an overview of existing challenges and future directions is provided to expedite the emergence of high-precision and ultrafast DNA sequencing with ionic and transverse current approaches. This study reviews the advancements in the field of DNA sequencing, with a focus on electrical detection methods, mainly ionic blockade and transverse tunneling current approaches. It covers various biological nanopores and solid-state devices, including nanopore, nanogap, nanochannel, and hybrid/heterostructures for DNA sequencing. It also highlights strengths, weaknesses, and future directions for single-molecule DNA sequencing. image
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页数:43
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