TY - JOUR
T1 - Recent Advances in the Development of Laccase-Based Biosensors via Nano-Immobilization Techniques
AU - Kadam, Avinash A.
AU - Saratale, Ganesh D.
AU - Ghodake, Gajanan S.
AU - Saratale, Rijuta G.
AU - Shahzad, Asif
AU - Magotra, Verjesh Kumar
AU - Kumar, Manu
AU - Palem, Ramasubba Reddy
AU - Sung, Jung Suk
N1 - Publisher Copyright:
© 2022 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2022/2
Y1 - 2022/2
N2 - Monitoring phenolic compounds is critical in the environmental, food, and medical sec-tors. Among many recent advanced detection platforms, laccase-based biosensing platforms gave very rapid, effective, online, and in situ sensing of phenolic compounds. In laccase-based biosen-sors, laccase immobilization techniques have a vital role. However, a detailing of the advancements in laccase immobilization techniques employed in laccase-based biosensors is lacking in the litera-ture. Thus, in this review, we assessed how the nano-immobilization techniques shaped the laccase biosensing platforms. We discussed novel developments in laccase immobilization techniques such as entrapment, adsorption, cross-linking, and covalent over new nanocomposites in laccase biosen-sors. We made a comprehensive assessment based on the current literature for future perspectives of nano-immobilized laccase biosensors. We found the important key areas toward which future laccase biosensor research seems to be heading. These include 1. A focus on the development of multi-layer laccase over electrode surface, 2. The need to utilize more covalent immobilization routes, as they change the laccase specificity toward phenolic compounds, 3. The advancement in polymeric matrices with electroconductive properties, and 4. novel entrapment techniques like bi-omineralization using laccase molecules. Thus, in this review, we provided a detailed account of immobilization in laccase biosensors and their feasibility in the future for the development of highly specific laccase biosensors in industrial, medicinal, food, and environmental applications.
AB - Monitoring phenolic compounds is critical in the environmental, food, and medical sec-tors. Among many recent advanced detection platforms, laccase-based biosensing platforms gave very rapid, effective, online, and in situ sensing of phenolic compounds. In laccase-based biosen-sors, laccase immobilization techniques have a vital role. However, a detailing of the advancements in laccase immobilization techniques employed in laccase-based biosensors is lacking in the litera-ture. Thus, in this review, we assessed how the nano-immobilization techniques shaped the laccase biosensing platforms. We discussed novel developments in laccase immobilization techniques such as entrapment, adsorption, cross-linking, and covalent over new nanocomposites in laccase biosen-sors. We made a comprehensive assessment based on the current literature for future perspectives of nano-immobilized laccase biosensors. We found the important key areas toward which future laccase biosensor research seems to be heading. These include 1. A focus on the development of multi-layer laccase over electrode surface, 2. The need to utilize more covalent immobilization routes, as they change the laccase specificity toward phenolic compounds, 3. The advancement in polymeric matrices with electroconductive properties, and 4. novel entrapment techniques like bi-omineralization using laccase molecules. Thus, in this review, we provided a detailed account of immobilization in laccase biosensors and their feasibility in the future for the development of highly specific laccase biosensors in industrial, medicinal, food, and environmental applications.
KW - Biosensor
KW - Emerging pollutants
KW - Laccase
KW - Monitoring
KW - Nano-immobilization
KW - Phenolic compounds
UR - http://www.scopus.com/inward/record.url?scp=85124132127&partnerID=8YFLogxK
U2 - 10.3390/chemosensors10020058
DO - 10.3390/chemosensors10020058
M3 - Review article
AN - SCOPUS:85124132127
SN - 2227-9040
VL - 10
JO - Chemosensors
JF - Chemosensors
IS - 2
M1 - 58
ER -