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Stimuli-responsive DNA-based hydrogels for biosensing applications

期刊

JOURNAL OF NANOBIOTECHNOLOGY
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12951-022-01242-x

关键词

DNA hydrogel; Stimuli-responsiveness; Biosensing

资金

  1. National Key Research and Development Program of China [2020-JCJQ-JJ-358, 2018YFC1603500, 2019GGRC03, 2019CXTD03]

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DNA hydrogels have rich structural and functional information, making them useful for various applications in bioanalysis and biomedicine. Stimuli-responsive DNA hydrogels, which can undergo reversible transitions from gel to sol under different triggers, have emerged as smart materials for sensing. This study provides a review on stimuli-responsive DNA hydrogels and their biosensing applications.
The base sequences of DNA are endowed with the rich structural and functional information and are available for the precise construction of the 2D and 3D macro products. The hydrogels formed by DNA are biocompatible, stable, tunable and biologically versatile, thus, these have a wide range of promising applications in bioanalysis and biomedicine. In particular, the stimuli-responsive DNA hydrogels (smart DNA hydrogels), which exhibit a reversible and switchable hydrogel to sol transition under different triggers, have emerged as smart materials for sensing. Thus far, the combination of the stimuli-responsive DNA hydrogels and multiple sensing platforms is considered as biocompatible and is useful as the flexible recognition components. A review of the stimuli-responsive DNA hydrogels and their biosensing applications has been presented in this study. The synthesis methods to prepare the DNA hydrogels have been introduced. Subsequently, the current status of the stimuli-responsive DNA hydrogels in biosensing has been described. The analytical mechanisms are further elaborated by the combination of the stimuli-responsive DNA hydrogels with the optical, electrochemical, point-of-care testing (POCT) and other detection platforms. In addition, the prospects of the application of the stimuli-responsive DNA hydrogels in biosensing are presented.

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