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 Current advances and future trend of nanotechnology as microalgae-based biosensor
Tác giả hoặc Nhóm tác giả: Mintallah Mousa A. Allouzi, Safa Allouzi, Balsam Al-Salaheen, Kuan Shiong Khoo, Saravanan Rajendran, Revathy Sankaran, Nguyen Sy-Toan, Pau Loke Show
Nơi đăng: Biochemical Engineering Journal; Số: 187;Từ->đến trang: 108653;Năm: 2022
Lĩnh vực: Khoa học công nghệ; Loại: Bài báo khoa học; Thể loại: Quốc tế
TÓM TẮT
Biosensors are devices that convert biological responses into electrical signals. Biosensors can be utilised in a variety of applications, including environmental and water quality monitoring, as well as medical applications. Thus, researchers have been working on them and experimenting with new nanofabrication techniques. Nano- materials like graphene, carbon nanotubes, and nanospheres have provided new and appealing platforms for developing biosensors with improved sensitivity and performance due to their unique features. Microalgae have been used widely in biosensing applications as bioreceptor because they are less likely to be affected by phys- iochemical changes, in addition to their uses in medical, environmental, industrial, and commercial applications. In this review, we highlight the recent immobilization techniques, support materials like nanomaterials for microalgae immobilization, microfluidics and lab on a chip, the latest genome editing methods, and microalgae applications in medical, environmental, food, and agricultural sectors
ABSTRACT
Biosensors are devices that convert biological responses into electrical signals. Biosensors can be utilised in a variety of applications, including environmental and water quality monitoring, as well as medical applications. Thus, researchers have been working on them and experimenting with new nanofabrication techniques. Nano- materials like graphene, carbon nanotubes, and nanospheres have provided new and appealing platforms for developing biosensors with improved sensitivity and performance due to their unique features. Microalgae have been used widely in biosensing applications as bioreceptor because they are less likely to be affected by phys- iochemical changes, in addition to their uses in medical, environmental, industrial, and commercial applications. In this review, we highlight the recent immobilization techniques, support materials like nanomaterials for microalgae immobilization, microfluidics and lab on a chip, the latest genome editing methods, and microalgae applications in medical, environmental, food, and agricultural sectors
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