Biosensors, Recent Advances in Determination of BDNF and NfL.


Journal

Cellular and molecular neurobiology
ISSN: 1573-6830
Titre abrégé: Cell Mol Neurobiol
Pays: United States
ID NLM: 8200709

Informations de publication

Date de publication:
Nov 2023
Historique:
received: 06 05 2023
accepted: 08 08 2023
medline: 22 11 2023
pubmed: 22 8 2023
entrez: 21 8 2023
Statut: ppublish

Résumé

Key biomarkers such as Brain Derived Neurotrophic Factor (BDNF) and Neurofilament light chain (NfL) play important roles in the development and progression of many neurological diseases, including multiple sclerosis, Alzheimer's disease, and Parkinson's disease. In these clinical conditions, the underlying biomarker processes are markedly heterogeneous. In this context, robust biomarker discovery is of critical importance for screening, early detection, and monitoring of neurological diseases. The difficulty of directly identifying biochemical processes in the central nervous system (CNS) is challenging. In recent years, biomarkers of CNS inflammatory response have been identified in various body fluids such as blood, cerebrospinal fluid, and tears. Furthermore, biotechnology and nanotechnology have facilitated the development of biosensor platforms capable of real-time detection of multiple biomarkers in clinically relevant samples. Biosensing technology is approaching maturity and will be deployed in communities, at which point screening programs and personalized medicine will become a reality. In this multidisciplinary review, our goal is to highlight clinical and current technological advances in the development of multiplex-based solutions for effective diagnosis and monitoring of neuroinflammatory and neurodegenerative diseases. The trend in the detection if BDNF and NfL.

Identifiants

pubmed: 37605014
doi: 10.1007/s10571-023-01401-0
pii: 10.1007/s10571-023-01401-0
doi:

Substances chimiques

Brain-Derived Neurotrophic Factor 0
Neurofilament Proteins 0
Biomarkers 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

3801-3814

Informations de copyright

© 2023. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.

Références

Akhtar MH, Hussain KK, Gurudatt N, Chandra P, Shim Y-B (2018) Ultrasensitive dual probe immunosensor for the monitoring of nicotine induced-brain derived neurotrophic factor released from cancer cells. Biosens Bioelectron 116:108–115
pubmed: 29860089
Alhadrami HA (2018) Biosensors: classifications, medical applications, and future prospective. Biotechnol Appl Biochem 65(3):497–508
pubmed: 29023994
Alirezaei Z, Pourhanifeh MH, Borran S, Nejati M, Mirzaei H, Hamblin MR (2020) Neurofilament light chain as a biomarker, and correlation with magnetic resonance imaging in diagnosis of CNS-related disorders. Mol Neurobiol 57(1):469–491
pubmed: 31385229
Bacioglu M, Maia LF, Preische O, Schelle J, Apel A, Kaeser SA, Schweighauser M, Eninger T, Lambert M, Pilotto A (2016) Neurofilament light chain in blood and CSF as marker of disease progression in mouse models and in neurodegenerative diseases. Neuron 91(1):56–66
pubmed: 27292537
Belkhamssa N, da Costa JP, Justino CI, Santos PS, Cardoso S, Duarte AC, Rocha-Santos T, Ksibi M (2016) Development of an electrochemical biosensor for alkylphenol detection. Talanta 158:30–34
pubmed: 27343574
Bockaj M, Fung B, Tsoulis M, Foster WG, Soleymani L (2018) Method for electrochemical detection of brain derived neurotrophic factor (BDNF) in plasma. Anal Chem 90(14):8561–8566
pubmed: 29932639
Bramham CR, Messaoudi E (2005) BDNF function in adult synaptic plasticity: the synaptic consolidation hypothesis. Prog Neurobiol 76(2):99–125
pubmed: 16099088
Cassano P, Hidalgo A, Burgos V, Adris S, Argibay P (2006) Hippocampal upregulation of the cyclooxygenase-2 gene following neonatal clomipramine treatment (a model of depression). Pharmacogenomics J 6(6):381–387
pubmed: 16568149
Chen L, Tong J, Yang M (2021) Photoelectrochemical sensor for detection of serum neurofilament light chain based on organic semiconductor modified electrode. Mater Lett 305:130798
Chung CC, Chan L, Chen JH, Bamodu OA, Hong CT (2020) Neurofilament light chain level in plasma extracellular vesicles and Parkinson’s disease. Ther Adv Neurol Disord 13:1756286420975917
pubmed: 33335563 pmcid: 7724268
Coulet PR (2019) What is a biosensor? In: Blum LJ, Coulet PR (eds) Biosensor principles and applications. CRC Press, pp 1–6
De Sá CA, Saretto, CB, Cardoso AM, Remor A, Breda CO, da Silva Corralo V (2023) Effects of a physical exercise or motor activity protocol on cognitive function, lipid profile, and BDNF levels in older adults with mild cognitive impairment. Mol Cell Biochem:1–11
Egan MF, Kojima M, Callicott JH, Goldberg TE, Kolachana BS, Bertolino A, Zaitsev E, Gold B, Goldman D, Dean M, Lu B, Weinberger DR (2003) The BDNF val66met polymorphism affects activity-dependent secretion of BDNF and human memory and hippocampal function. Cell 112(2):257–269
pubmed: 12553913
Fletcher JL, Murray SS, Xiao J (2018) Brain-derived neurotrophic factor in central nervous system myelination: a new mechanism to promote myelin plasticity and repair. Int J Mol Sci 19(12):4131
pubmed: 30572673 pmcid: 6321406
Gaetani L, Höglund K, Parnetti L, Pujol-Calderon F, Becker B, Eusebi P, Sarchielli P, Calabresi P, Di Filippo M, Zetterberg H, Blennow K (2018) A new enzyme-linked immunosorbent assay for neurofilament light in cerebrospinal fluid: analytical validation and clinical evaluation. Alzheimer’s Res Ther 10(1):8
Gaetani L, Blennow K, Calabresi P, Di Filippo M, Parnetti L, Zetterberg H (2019) Neurofilament light chain as a biomarker in neurological disorders. J Neurol Neurosurg Psychiatry 90(8):870–881
pubmed: 30967444
Gao S, Li Q, Zhang S, Sun X, Zheng X, Qian H, Wu J (2022) One-step high-throughput detection of low-abundance biomarker BDNF using a biolayer interferometry-based 3D aptasensor. Biosens Bioelectron 215:114566
pubmed: 35863136
Golden E, Emiliano A, Maudsley S, Windham BG, Carlson OD, Egan JM, Driscoll I, Ferrucci L, Martin B, Mattson MP (2010) Circulating brain-derived neurotrophic factor and indices of metabolic and cardiovascular health: data from the Baltimore Longitudinal Study of Aging. PLoS ONE 5(4):e10099
pubmed: 20404913 pmcid: 2852401
Hall JR, O’Bryant SE, Johnson L, Barber RC (2011) Depression and brain-derived neurotrophic factor levels in Alzheimer’s disease. Neurosci Med 2(1):43
Han W, Zhang C, Wang H, Yang M, Guo Y, Li G, Zhang H, Wang C, Chen D, Geng C (2019) Alterations of irisin, adropin, preptin and BDNF concentrations in coronary heart disease patients comorbid with depression. Ann Transl Med 7(14):298
pubmed: 31475168 pmcid: 6694242
Hosang GM, Shiles C, Tansey KE, McGuffin P, Uher R (2014) Interaction between stress and the BDNFVal66Met polymorphism in depression: a systematic review and meta-analysis. BMC Med 12(1):1–11
Hossain T, Mahmudunnabi G, Masud MK, Islam MN, Ooi L, Konstantinov K, Hossain MSA, Martinac B, Alici G, Nguyen N-T, Shiddiky MJA (2017) Electrochemical biosensing strategies for DNA methylation analysis. Biosens Bioelectron 94:63–73
pubmed: 28259051
Jung SH, Kim J, Davis JM, Blair SN, Cho H-C (2011) Association among basal serum BDNF, cardiorespiratory fitness and cardiovascular disease risk factors in untrained healthy Korean men. Eur J Appl Physiol 111(2):303–311
pubmed: 20878177
Kavalali ET, Monteggia LM (2020) Targeting homeostatic synaptic plasticity for treatment of mood disorders. Neuron 106(5):715–726
pubmed: 32497508 pmcid: 7517590
Keifer J (2021) Comparative genomics of the BDNF gene, Non-Canonical modes of transcriptional regulation, and neurological disease. Mol Neurobiol 58(6):2851–2861
pubmed: 33517560
Khairy EY, Attia MM (2021) Protective effects of vitamin D on neurophysiologic alterations in brain aging: role of brain-derived neurotrophic factor (BDNF). Nutr Neurosci 24(8):650–659
pubmed: 31524100
Kidakova A, Reut J, Boroznjak R, Öpik A, Syritski V (2019) Advanced sensing materials based on molecularly imprinted polymers towards developing point-of-care diagnostics devices. Proc Est Acad Sci 68(2):158–167
Kim K, Lee GR, Kim M, Lim H, Jung YS, Park CB (2020) Metallic woodpile nanostructures for femtomolar sensing of Alzheimer’s neurofilament lights. ACS Nano 14(8):10376–10384
pubmed: 32706577
Kojima M, Ishii C, Sano Y, Mizui T, Furuichi T (2020) Journey of brain-derived neurotrophic factor: from intracellular trafficking to secretion. Cell Tissue Res 382(1):125–134
pubmed: 32897423
Konstantinou GN (2017) Enzyme-linked immunosorbent assay (ELISA). Food allergens. Springer, pp 79–94
Kuhle J, Barro C, Andreasson U, Derfuss T, Lindberg R, Sandelius Å, Liman V, Norgren N, Blennow K, Zetterberg H (2016a) Comparison of three analytical platforms for quantification of the neurofilament light chain in blood samples: ELISA, electrochemiluminescence immunoassay and Simoa. Clin Chem Lab Med (CCLM) 54(10):1655–1661
pubmed: 27071153
Kuhle J, Barro C, Disanto G, Mathias A, Soneson C, Bonnier G, Yaldizli Ö, Regeniter A, Derfuss T, Canales M (2016b) Serum neurofilament light chain in early relapsing remitting MS is increased and correlates with CSF levels and with MRI measures of disease severity. Mult Scler J 22(12):1550–1559
Lang UE, Hellweg R, Gallinat J (2004) BDNF serum concentrations in healthy volunteers are associated with depression-related personality traits. Neuropsychopharmacology 29(4):795–798
pubmed: 14735133
Lee KT-W, Islam F, Vider J, Martin J, Chruścik A, Lu C-T, Gopalan V, Lam AK-Y (2020) Overexpression of family with sequence similarity 134, member B (FAM134B) in colon cancers and its tumor suppressive properties in vitro. Cancer Biol Ther 21(10):954–962
pubmed: 32857678 pmcid: 7583494
Li X, Shi W, Zhang W, Chen W, Cao D, Gopinath SC, Anbu P, Liu N (2021a) Gold-nanourchin complexed silicon dioxide-probe on gap-fingered interdigitated electrode surface for Parkinson’s disease determination by current–volt measurement. Nanomater Nanotechnol 11:1847980420987352
Li Z, Cui L, Zhao H, Du J, Gopinath SCB, Lakshmipriya T, Xin X (2021b) Aluminum microcomb electrodes on silicon wafer for detecting Val66Met polymorphism in brain-derived neurotrophic factor. Dev Neurosci 43(1):53–62
pubmed: 33849012
Li W-T, Dong S-Y, Chen H, An Y-Q, Zhang J, Wang L-Y, Zhu J-J (2022) A neurofilament-light chains electrochemical immunosensor expected to reveal the early stage of neurodegenerative diseases. Chem Eng J 446:136850
Lin Y-S, Lee W-J, Wang S-J, Fuh J-L (2018) Levels of plasma neurofilament light chain and cognitive function in patients with Alzheimer or Parkinson disease. Sci Rep 8(1):1–8
Liu H-C, Lin W-C, Chiu M-J, Lu C-H, Lin C-Y, Yang S-Y (2020) Development of an assay of plasma neurofilament light chain utilizing immunomagnetic reduction technology. PLoS ONE 15(6):e0234519
pubmed: 32530970 pmcid: 7292381
Lommatzsch M, Zingler D, Schuhbaeck K, Schloetcke K, Zingler C, Schuff-Werner P, Virchow JC (2005) The impact of age, weight and gender on BDNF levels in human platelets and plasma. Neurobiol Aging 26(1):115–123
pubmed: 15585351
Mandel AL, Ozdener H, Utermohlen V (2011) Brain-derived neurotrophic factor in human saliva: ELISA optimization and biological correlates. J Immunoassay Immunochem 32(1):18–30
pubmed: 21253967 pmcid: 3046426
Marell PS, Blohowiak SE, Evans MD, Georgieff MK, Kling PJ, Tran PV (2019) Cord blood-derived exosomal CNTN2 and BDNF: potential molecular markers for brain health of neonates at risk for iron deficiency. Nutrients 11(10):2478
pubmed: 31623079 pmcid: 6835945
Mattsson N, Andreasson U, Zetterberg H, Blennow K (2017) Association of plasma neurofilament light with neurodegeneration in patients with Alzheimer disease. JAMA Neurol 74(5):557–566
pubmed: 28346578 pmcid: 5822204
Özgür E, Uzunçakmak Uyanık H, Şenel S, Uzun L (2020) Immunoaffinity biosensor for neurofilament light chain detection and its use in Parkinson’s diagnosis. Mater Sci Eng, B 256:114545
Park H, Poo M-M (2013) Neurotrophin regulation of neural circuit development and function. Nat Rev Neurosci 14(1):7–23
pubmed: 23254191
Petzold A, Altintas A, Andreoni L, Bartos A, Berthele A, Blankenstein MA, Buee L, Castellazzi M, Cepok S, Comabella M, Constantinescu CS, Deisenhammer F, Deniz G, Erten G, Espiño M, Fainardi E, Franciotta D, Freedman MS, Giedraitis V, Gilhus NE, Giovannoni G, Glabinski A, Grieb P, Hartung H-P, Hemmer B, Herukka S-K, Hintzen R, Ingelsson M, Jackson S, Jacobsen S, Jafari N, Jalosinski M, Jarius S, Kapaki E, Kieseier BC, Koel-Simmelink MJA, Kornhuber J, Kuhle J, Kurzepa J, Lalive PH, Lannfelt L, Lehmensiek V, Lewczuk P, Livrea P, Marnetto F, Martino D, Menge T, Norgren N, Papuć E, Paraskevas GP, Pirttilä T, Rajda C, Rejdak K, Ricny J, Ripova D, Rosengren L, Ruggieri M, Schraen S, Shaw G, Sindic C, Siva A, Stigbrand T, Stonebridge I, Topcular B, Trojano M, Tumani H, Twaalfhoven HAM, Vécsei L, Van Pesch V, Vanderstichele H, Vedeler C, Verbeek MM, Villar LM, Weissert R, Wildemann B, Yang C, Yao K, Teunissen CE (2010) Neurofilament ELISA validation. J Immunol Methods 352(1):23–31
pubmed: 19857497
Raznahan A, Toro R, Proitsi P, Powell J, Paus T, Bolton PF, Murphy DG (2009) A functional polymorphism of the brain derived neurotrophic factor gene and cortical anatomy in autism spectrum disorder. J Neurodev Disord 1(3):215–223
pubmed: 21547716 pmcid: 3196317
Scalzo P, Kümmer A, Bretas TL, Cardoso F, Teixeira AL (2010) Serum levels of brain-derived neurotrophic factor correlate with motor impairment in Parkinson’s disease. J Neurol 257(4):540–545
pubmed: 19847468
Shepard RD, Gouty S, Kassis H, Berenji A, Zhu W, Cox BM, Nugent FS (2018) Targeting histone deacetylation for recovery of maternal deprivation-induced changes in BDNF and AKAP150 expression in the VTA. Exp Neurol 309:160–168
pubmed: 30102916 pmcid: 6139260
Solodka K, Berto M, Ferraro D, Menozzi C, Borsari M, Bortolotti CA, Biscarini F, Pinti M (2022) Detection of neurofilament light chain with label-free electrolyte-gated organic field-effect transistors. Adv Mater Interfaces 9(11):2102341
Thévenot DR, Toth K, Durst RA, Wilson GS (2001) Electrochemical biosensors: recommended definitions and classification. Biosens Bioelectron 16(1–2):121–131
pubmed: 11261847
Topkaya SN, Azimzadeh M, Ozsoz M (2016) Electrochemical biosensors for cancer biomarkers detection: recent advances and challenges. Electroanalysis 28(7):1402–1419
Valverde A, Montero-Calle A, Barderas R, Calero M, Yáñez-Sedeño P, Campuzano S, Pingarrón JM (2021) Electrochemical immunoplatform to unravel neurodegeneration and Alzheimer’s disease through the determination of neurofilament light protein. Electrochim Acta 371:137815
Valverde A, Gordón Pidal JM, Montero-Calle A, Arévalo B, Serafín V, Calero M, Moreno-Guzmán M, López MÁ, Escarpa A, Yáñez-Sedeño P, Barderas R, Campuzano S, Pingarrón JM (2022) Paving the way for reliable Alzheimer’s disease blood diagnosis by quadruple electrochemical immunosensing. ChemElectroChem 9(9):e202200055
Varhaug KN, Torkildsen Ø, Myhr K-M, Vedeler CA (2019) Neurofilament light chain as a biomarker in multiple sclerosis. Front Neurol 10:338
pubmed: 31024432 pmcid: 6460359
Vikkula H-K (2013) Optimization of BDNF ELISA method
Xu H, Luo J, Wang Y, Song Y, Wang L, Cai X (2017) Label-free electrochemical detection of brain-derived neurotrophic factor based on a novel immune microelectrode array. In 2017 IEEE 17th International Conference on Nanotechnology (IEEE-NANO). IEEE.
Yoo YK, Lee J, Kim J, Kim G, Kim S, Kim J, Chun H, Lee JH, Lee CJ, Hwang KS (2016) Ultra-sensitive detection of brain-derived neurotrophic factor (BDNF) in the brain of freely moving mice using an interdigitated microelectrode (IME) biosensor. Sci Rep 6(1):33694
pubmed: 27640722 pmcid: 5027392
Yuan A, Nixon RA (2021) Neurofilament proteins as biomarkers to monitor neurological diseases and the efficacy of therapies Front Neurosci:1242.
Zagrebelsky M, Korte M (2014) Form follows function: BDNF and its involvement in sculpting the function and structure of synapses. Neuropharmacology 76:628–638
pubmed: 23752094
Zhang H-T, Li L-Y, Zou X-L, Song X-B, Hu Y-L, Feng Z-T, Wang TT-H (2007) Immunohistochemical distribution of NGF, BDNF, NT-3, and NT-4 in adult rhesus monkey brains. J Histochem Cytochem 55(1):1–19
pubmed: 16899765
Zhang H, Li D, Zhang Y, Li J, Ma S, Zhang J, Xiong Y, Wang W, Li N, Xia L (2018) Knockdown of lncRNA BDNF-AS suppresses neuronal cell apoptosis via downregulating miR-130b-5p target gene PRDM5 in acute spinal cord injury. RNA Biol 15(8):1071–1080
pubmed: 29995562 pmcid: 6161672
Zhou W, Zhang J, Ye F, Xu G, Su H, Su Y, Zhang X (2017) Plasma neurofilament light chain levels in Alzheimer’s disease. Neurosci Lett 650:60–64
pubmed: 28428015

Auteurs

Ahmad Mobed (A)

Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran. Mobeda@tbzmed.ac.ir.
Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran. Mobeda@tbzmed.ac.ir.
Aging Research Institute, Tabriz University of Medical Sciences, Tabriz, Iran. Mobeda@tbzmed.ac.ir.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran. Mobeda@tbzmed.ac.ir.

Saeid Charsouei (S)

Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran. Scharsouei@tbzmed.ac.ir.
Tabriz Neuroscience Research Center (NRSC), Neurology Department, Tabriz University of Medical Sciences, Tabriz, Iran. Scharsouei@tbzmed.ac.ir.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran. Scharsouei@tbzmed.ac.ir.

Yalda Yazdani (Y)

Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Morad Kohandel Gargari (MK)

Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Faculty of Medicine, Imam Reza Hospital, Tabriz University of Medical Sciences, Tabriz, Iran.

Ali Ahmadalipour (A)

Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Seyyedeh Reyhaneh Sadremousavi (SR)

Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Psychology, East Azarbayjan Science and Research Branch, Islamic Azad University, Tabriz, Iran.

Maryam Farrahizadeh (M)

Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
School of Advanced Technologies in Medicine, Iran University of Medical Science, Tehran, Iran.

Ali Shahbazi (A)

Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Department of Neuroscience, Iran University of Medical Sciences, Tehran, Iran.

Maryam Haghani (M)

Neuroscience Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Faculty of Veterinary Medicine, University of Tabriz, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH