Hydrogel Nanoarchitectonics: An Evolving Paradigm for Ultrasensitive Biosensing

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Nishat, Zakia Sultana
Hossain, Tanvir
Islam, Md Nazmul
Phan, Hoang-Phuong
Wahab, Md A
Moni, Mohammad Ali
Salomon, Carlos
Amin, Mohammed A
Sina, Abu Ali Ibn
Hossain, Md Shahriar A
Kaneti, Yusuf Valentino
Yamauchi, Yusuke
Masud, Mostafa Kamal
Griffith University Author(s)
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2022
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Abstract

The integration of nanoarchitectonics and hydrogel into conventional biosensing platforms offers the opportunities to design physically and chemically controlled and optimized soft structures with superior biocompatibility, better immobilization of biomolecules, and specific and sensitive biosensor design. The physical and chemical properties of 3D hydrogel structures can be modified by integrating with nanostructures. Such modifications can enhance their responsiveness to mechanical, optical, thermal, magnetic, and electric stimuli, which in turn can enhance the practicality of biosensors in clinical settings. This review describes the synthesis and kinetics of gel networks and exploitation of nanostructure-integrated hydrogels in biosensing. With an emphasis on different integration strategies of hydrogel with nanostructures, this review highlights the importance of hydrogel nanostructures as one of the most favorable candidates for developing ultrasensitive biosensors. Moreover, hydrogel nanoarchitectonics are also portrayed as a promising candidate for fabricating next-generation robust biosensors.

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Small

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18

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26

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Nanomaterials

Nanobiotechnology

Science & Technology

Physical Sciences

Technology

Chemistry, Multidisciplinary

Chemistry, Physical

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Nishat, ZS; Hossain, T; Islam, MN; Phan, H-P; Wahab, MA; Moni, MA; Salomon, C; Amin, MA; Sina, AAI; Hossain, MSA; Kaneti, YV; Yamauchi, Y; Masud, MK, Hydrogel Nanoarchitectonics: An Evolving Paradigm for Ultrasensitive Biosensing, Small, 2022, 18 (26), pp. 2107571

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