TY - JOUR
T1 - Plasmonic and chiroplasmonic nanobiosensors based on gold nanoparticles
AU - Sharifi, Majid
AU - Hosseinali, Sara Haji
AU - Hossein Alizadeh, Reza
AU - Hasan, Anwarul
AU - Attar, Farnoosh
AU - Salihi, Abbas
AU - Shekha, Mudhir Sabir
AU - Amen, Karwan M.
AU - Aziz, Falah Mohammad
AU - Saboury, Ali Akbar
AU - Akhtari, Keivan
AU - Taghizadeh, Akbar
AU - Hooshmand, Nasrin
AU - El-Sayed, Mostafa A.
AU - Falahati, Mojtaba
N1 - Publisher Copyright:
© 2020 Elsevier B.V.
PY - 2020/5/15
Y1 - 2020/5/15
N2 - Development of optical nanobiosensors has emerged as one of the most important bioresearch areas of interest over the past decades especially in the modern innovations in the design and utilization of sensing platforms. The application of nanobiosensors has been accelerated with the introduction of plasmonic NPs, which overcome the most of the limitations in the case of conventional optical nanobiosensors. Since the plasmonic AuNPs-based nanobiosensors provide high potential achievements to develop promising platforms in fully integrated multiplex assays, some well-developed investigations are clearly required to improve the current technologies and integration of multiple signal inputs. Therefore, in this literature, we summarized the performance and achievements of optical nanobiosensors according to plasmonic rules of AuNPs, including SPR, LSPR, SERS and chiroptical phenomena. Also, we investigated the effects of the physicochemical properties of AuNPs such as size, shape, composition, and assembly on the plasmonic signal propagation in AuNPs-based nanobiosensors. Moreover, we presented an overview on the current state of plasmonic AuNPs-based nanobiosensors in the biomedical activities. Besides, this paper looks at the current and future challenges and opportunities of ongoing efforts to achieve the potential applications of AuNPs-based optical plasmonic nanobiosensors in integration with other nanomaterials. Taken together, the main focus of this paper is to provide some applicable information to develop current methodologies in fabrication of potential AuNPs-based nanobiosensors for detection of a wide range of analytes.
AB - Development of optical nanobiosensors has emerged as one of the most important bioresearch areas of interest over the past decades especially in the modern innovations in the design and utilization of sensing platforms. The application of nanobiosensors has been accelerated with the introduction of plasmonic NPs, which overcome the most of the limitations in the case of conventional optical nanobiosensors. Since the plasmonic AuNPs-based nanobiosensors provide high potential achievements to develop promising platforms in fully integrated multiplex assays, some well-developed investigations are clearly required to improve the current technologies and integration of multiple signal inputs. Therefore, in this literature, we summarized the performance and achievements of optical nanobiosensors according to plasmonic rules of AuNPs, including SPR, LSPR, SERS and chiroptical phenomena. Also, we investigated the effects of the physicochemical properties of AuNPs such as size, shape, composition, and assembly on the plasmonic signal propagation in AuNPs-based nanobiosensors. Moreover, we presented an overview on the current state of plasmonic AuNPs-based nanobiosensors in the biomedical activities. Besides, this paper looks at the current and future challenges and opportunities of ongoing efforts to achieve the potential applications of AuNPs-based optical plasmonic nanobiosensors in integration with other nanomaterials. Taken together, the main focus of this paper is to provide some applicable information to develop current methodologies in fabrication of potential AuNPs-based nanobiosensors for detection of a wide range of analytes.
KW - Analyte
KW - Chiroptical
KW - Detection
KW - LSPR
KW - Plasmonic AuNPs
KW - SERS
KW - SPR
UR - https://www.scopus.com/pages/publications/85079096309
U2 - 10.1016/j.talanta.2020.120782
DO - 10.1016/j.talanta.2020.120782
M3 - Review article
C2 - 32113545
AN - SCOPUS:85079096309
SN - 0039-9140
VL - 212
JO - Talanta
JF - Talanta
M1 - 120782
ER -