Review

BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES

Number: 052 March 29, 2023
EN

BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES

Abstract

With the developing technology and increasing population, nanotechnology has started to be used in all areas of life. The use of biosensors, which have an important place in the field of nanotechnology, is increasing day by day. Biosensors can be defined as biological devices that help us interpret the analyte concentration in a sample by converting it into measurable signals. Advantageously, it has both speed and high precision. There are many types of biosensors used in many fields. These; enzymatic, nucleic acid, electrochemical and optical biosensors. All of them can have different components and uses. Biosensors are used especially in early diagnosis of diseases, environment and agriculture, pharmaceutical industry, defense industry and food industry. For example, biosensors are used in the treatment of oncological diseases using electrochemical impedance spectroscopy, in the determination of pesticides, which is one of the environmental pollutants, in the potentiometric analysis of glutamate, in the detection of chemical warfare agents and toxic substances. In addition, it is expected that the usage areas of biosensors will become widespread in the future, and they will be used more widely in the early diagnosis of diseases. At this point, the use of biosensors has increased worldwide and has attracted the attention of scientists. In this study, classification of biosensors, application areas, characterization, studies on biosensors, technologies developed and applied for the future are mentioned.

Keywords

Thanks

No support has been received.

References

  1. [1] Mamalis, A.G., (2007)., Recent advances in nanotechnology, Journal of Materials Processing Technology, 181, 52–58. [2] Banotra, M., Kumar, A., Sharma, B.C., Nandan, B., Verma, A., Kumar, R., Gupta, V., Bhagat, S., (2017), Prospectus of use of nanotechnology in agriculture-a review article, International Journal of Current Microbiology and Applied Sciences, Int.J. Curr.Microbiol.App.Sci, 6, 1541–1551. [3] Vashist, S.K., Venkatesh, A. G., Mitsakakis, K., Czilwik, G., Roth, G., von Stetten, F., Zengerle, R., (2012), Nanotechnology-based biosensors and diagnostics: technology push versus ındustrial/healthcare requirements, BioNanoScience, 2, 115–126. [4] Jianrong, C., Yuqing, M., Nongyue, H., Xiaohua, W., and Sijiao, L., (2004), Nanotechnology and biosensors, Biotechnology Advances, 22, 505–518.
  2. [5] Bagriyanik, D.B., (2011)., Potansiyometrik esaslı glutamin biyosensörü tasarlanması ve karakterizasyonu, Master Thesis, Graduate School of Natural and Applied Sciences, İstanbul, 88pp. [6] Altungeyik, Y. (2014)., Biyolojik uygulamalar için direnç sensörleri, Master Thesis, Department of Physics, Kirikkale University, Kirikkale, 63pp. [7] Mustafa, D. and Sezgintürk, K., (2013)., Bir meme kanseri biyomarkeri olan her 3 analizi için biyosensör sisteminin geliştirilmesi, Master Thesis, Graduate School of Natural and Applied Sciences, Namik Kemal University, Tekirdag, 64pp. [8] Purohit, B., Vernekar, P.R., Shetti, N.P., and Chandra, P., (2020), Biosensor nanoengineering: design, operation, and implementation for biomolecular analysis, Sensors International, 1, 100040. [9] Liu, H., Ge, J., Ma, E., and Yang, L., (2019), Advanced biomaterials for biosensor and theranostics. Biomaterials in Translational Medicine: A Biomaterials Approach, 213–255. [10] Huang, X., Zhu, Y., and Kianfar, E., (2021), Nano biosensors: properties, applications and electrochemical techniques, Journal of Materials Research and Technology, 12, 1649–1672. [11] Karunakaran, C., Rajkumar, R., and Bhargava, K., (2015)., Introduction to biosensors. Biosensors and Bioelectronics, 1–68.
  3. [12] Naresh, V. and Lee, N., (2021), A review on biosensors and recent development of nanostructured materials-enabled biosensors, Sensors, 21 , 1109.
  4. [13] Canver M.İ., (2018), Enzimatik tabanlı bakteriyel biyosensör, Master Thesis, Department of Bioengineering, Hacattepe University, Ankara, 49pp.
  5. [14] Cırak, T., (2014), Biyolojik moleküllerin tayinine yönelik kantilever bazlı biyosensör sisteminin geliştirilmesi, PhD Thesis, Hacattepe University, Ankara, 184pp. [15] Özcan, L., (2008), Polipirol iletken polimerinin biyosensör olarak kullanımı, PhD Thesis, Department of Chemistry, Anadolu University, Eskisehir, 114pp.
  6. [16] Atan, Ç., (2013), ZnO nanorod temelli glukoz biyosensörü hazırlanması ve kan serumunda glukoz tayininde kullanılması. Master Thesis, Graduate School of Natural and Applied Sciences, Yildiz Technical University, İstanbul, 93pp.
  7. [17] Boz, B., Paylan, İ.C., Kızmaz, M.Z., and Erkan, S., (2017), Biyosensörler ve tarım alanında kullanımı, Dergi Park Akademik, 13, 141–148.
  8. [18] Papadakis, G., Skandalis, N., Dimopoulou, A., Glynos, P., and Gizeli, E., (2017), Biyosensörler ve tarım alanında kullanımı, Journal of Agricultural Machinery Science, 13, 141–148.

Details

Primary Language

English

Subjects

-

Journal Section

Review

Publication Date

March 29, 2023

Submission Date

December 20, 2022

Acceptance Date

March 16, 2023

Published in Issue

Year 2023 Number: 052

APA
Gundogdu, A., Gazoglu, G., Kahraman, E., Yildiz, E., Candir, G., Yalcin, D., Koç, A., & Şen, F. (2023). BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES. Journal of Scientific Reports-A, 052, 457-481. https://doi.org/10.59313/jsr-a.1221899
AMA
1.Gundogdu A, Gazoglu G, Kahraman E, et al. BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES. JSR-A. 2023;(052):457-481. doi:10.59313/jsr-a.1221899
Chicago
Gundogdu, Aleyna, Gizem Gazoglu, Elif Kahraman, et al. 2023. “BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES”. Journal of Scientific Reports-A, nos. 052: 457-81. https://doi.org/10.59313/jsr-a.1221899.
EndNote
Gundogdu A, Gazoglu G, Kahraman E, Yildiz E, Candir G, Yalcin D, Koç A, Şen F (March 1, 2023) BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES. Journal of Scientific Reports-A 052 457–481.
IEEE
[1]A. Gundogdu et al., “BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES”, JSR-A, no. 052, pp. 457–481, Mar. 2023, doi: 10.59313/jsr-a.1221899.
ISNAD
Gundogdu, Aleyna - Gazoglu, Gizem - Kahraman, Elif - Yildiz, Esma - Candir, Gizem - Yalcin, Duygu - Koç, Atakan - Şen, Fatih. “BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES”. Journal of Scientific Reports-A. 052 (March 1, 2023): 457-481. https://doi.org/10.59313/jsr-a.1221899.
JAMA
1.Gundogdu A, Gazoglu G, Kahraman E, Yildiz E, Candir G, Yalcin D, Koç A, Şen F. BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES. JSR-A. 2023;:457–481.
MLA
Gundogdu, Aleyna, et al. “BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES”. Journal of Scientific Reports-A, no. 052, Mar. 2023, pp. 457-81, doi:10.59313/jsr-a.1221899.
Vancouver
1.Aleyna Gundogdu, Gizem Gazoglu, Elif Kahraman, Esma Yildiz, Gizem Candir, Duygu Yalcin, Atakan Koç, Fatih Şen. BIOSENSORS: TYPES, APPLICATIONS, AND FUTURE ADVANTAGES. JSR-A. 2023 Mar. 1;(052):457-81. doi:10.59313/jsr-a.1221899

Cited By