Publication Cover
Materials Technology
Advanced Performance Materials
Volume 37, 2022 - Issue 8
233
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Bioconjugated nanoflower for estimation of glucose from saliva using nanozymes

ORCID Icon &
Pages 842-848 | Received 30 Oct 2020, Accepted 23 Feb 2021, Published online: 11 Mar 2021

References

  • Diabetes facts & figures. Idf.org. [cited 2021 Feb 18]. Available from: https://www.idf.org/aboutdiabetes/what-is-diabetes/facts-figures.html
  • Shende P, Prabhakar B, Patil A. Color changing sensors: a multimodal system for integrated screening. Trends Analyt Chem. 2019;1(121):115687.
  • Borisov SM, Wolfbeis OS. Optical biosensors. Chem Rev. 2008;13;108(2):423–461.
  • Shende P, Vaidya J, Kulkarni YA, et al. Systematic approaches for biodiagnostics using exhaled air. J Control Release. 2017;28(268):282–295.
  • Dong Q, Ryu H, Lei Y. Metal Oxide based Non-enzymatic Electrochemical Sensors for Glucose Detection. Electrochim Acta. 2021;7:137744.
  • Majumder S, Deen MJ. Smartphone sensors for health monitoring and diagnosis. Sensors. 2019;19(9):2164.
  • Lin YR, Hung CC, Chiu HY, et al. Noninvasive glucose monitoring with a contact lens and smartphone. Sensors. 2018;18(10):3208.
  • Wenjun Z, Yunqing D, Wang ML. Noninvasive glucose monitoring using saliva nano-biosensor. Sens Biosens. 2015;4:23–29.
  • Gao L, Zhuang J, Nie L, et al. Intrinsic peroxidase-like activity of ferromagnetic nanoparticles. Nat Nanotechnol. 2007;2:577–583.
  • Song Y, Qu K, Zhao C, et al. Graphene oxide: intrinsic peroxidase catalytic activity and its application to glucose detection. Adv Mater. 2010;22:2206–2210.
  • Ju Y, Kim J. Dendrimer-encapsulated Pt nanoparticles with peroxidase-mimetic activity as biocatalytic labels for sensitive colorimetric analyses. Chem Comm. 2015;51:13752–13755.
  • Tang L,  Huan K, Deng D, et al. Glucose sensor based on Pd nanosheets deposited on Cu/Cu2O nanocomposites by galvanic replacement. Coll Surf B. 2020;188:110797.
  • Lin T, Zhong L, Wang J, et al. Graphite-like carbon nitrides as peroxidase mimetics and their applications to glucose detection. Biosens Bioelectron. 2014;59:89–93.
  • Song Y, Wang X, Zhao C, et al. Label‐free colorimetric detection of single nucleotide polymorphism by using single‐walled carbon nanotube intrinsic peroxidase‐like activity. Chem. 2010;16:3617–3621.
  • Chen Q, Liu M, Zhao J, et al. Water-dispersible silicon dots as a peroxidase mimetic for the highly-sensitive colorimetric detection of glucose. Chem Comm. 2014;50:6771–6774.
  • Ye J, Deng D,  Wang Y, et al. Well-aligned Cu@C nanocubes for highly efficient nonenzymatic glucose detection in human serum. Sens Act B Chem. 2019;305:127473.
  • Gao L, Liu M, Ma G, et al. Peptide-conjugated gold nanoprobe: intrinsic nanozyme-linked immunsorbant assay of integrin expression level on cell membrane. ACS Nano. 2015;9:0979–10990.
  • Schmid JS, Dordick B, Hauer A, et al. Industrial biocatalysis today and tomorrow. Nature. 2001;409:258–268.
  • Barber J. Photosynthetic energy conversion: natural and artificial. Chem Soc Rev. 2009;38:185–196.
  • Zhang Y, Ge J, Liu Z. Enhanced activity of immobilized or chemically modified enzymes. ACS Catal. 2015;5:4503–4513.
  • Zhou Z, Taylor RNK, Kullmann S, et al. Mesoporous Organosilicas With Large Cage‐Like Pores for High Efficiency Immobilization of Enzymes. Adv Mater. 2011;23:2627–2632.
  • Patel RN. Chemo-enzymatic synthesis of pharmaceutical intermediates. Exp Opin Drug Dis. 2008;3:187–245.
  • Li H, Lin H, Lv W, et al. Equipment-free and visual detection of multiple biomarkers via an aggregation induced emission luminogen-based paper biosensor. Biosen Bioelectron. 2020;165:112336.
  • Shende P, Sahu P, Gaud RA. Technology roadmap of smart biosensors from conventional glucose monitoring systems. Therap Del. 2017;8:411–423.
  • Shende P, Kasture P, Gaud R. Nanoflowers: the future trend of nanotechnology for multi-applications. Artif Cells Nanomed Biotech. 2018;4:1–10.
  • Yan M, Ge J, Liu Z, et al. Encapsulation of single enzyme in nanogel with enhanced biocatalytic activity and stability. J Am Chem Soc. 2006;34:11008–11009.
  • Ge J, Lu D, Wang J, et al. Molecular fundamentals of enzyme nanogels. J Phys Chem B. 2008;45:14319–14324.
  • Lee YM, Stephen CC. Population approaches for detecting glucose disorders. Curr Diab Rev. 2016;12(1):42–50.
  • Ge J, Lu D, Wang J, et al. Lipase nanogel catalyzed transesterification in anhydrous dimethyl sulfoxide. Biomacromole. 2009;6:1612–1618.
  • Yan M, Liu Z, Liu Z. Fabrication of single carbonic anhydrase nanogel against denaturation and aggregation at high temperature. Biomacromole. 2007;2:560–565.
  • Lv W, Wang X, Wu J, et al. pH and H2O2 dual-responsive carbon dots for biocatalytic transformation monitoring. Chin Chem Lett. 2019;30:1635–1638.
  • Kim J, Grate JW. Single-enzyme nanoparticles armored by a nanometerscale organic/inorganic network. Nano Lett. 2003;9:1219–1222.
  • Dyal A, Loos K, Noto M, et al. Activity of Candida rugosa lipase immobilized on γ-Fe2O3 magnetic nanoparticles. J Am Chem Soc. 2003;7:1684–1685.
  • Asuri P, Karajanagi SS, Dordick JS, et al. Directed assembly of carbon nanotubes at liquid–liquid interfaces: nanoscale conveyors for interfacial biocatalysis. J Am Chem Soc. 2006;128(4):1046–1047.
  • Ji P, Tan H, Xin X, et al. Lipase covalently attached to multiwalled carbon nanotubes as an efficient catalyst in organic solvent. AIChE J. 2010;11:3005–3011.
  • Mandpe P, Prabhakar B, Gupta H, et al. Glucose oxidase-based biosensor for glucose detection from biological fluids. Sens. Rev. 2020;40:497–511.
  • Shen L, Bao N, Prevelige PE, et al. Fabrication of ordered nanostructures of sulfide nanocrystal assemblies over self-assembled genetically engineered P22 coat protein. J Am Chem Soc. 2010;49:17354–17357.
  • Volpatti LR, Matranga AM, Cortinas AB, et al. Glucose-responsive nanoparticles for rapid and extended self-regulated insulin delivery. ACS Nano. 2020;14:488–497.
  • Veiseh O, Tang B, Whitehead K, et al. Managing diabetes with nanomedicine: challenges and opportunities. Nat Rev Drug Discov. 2015;14:45–57.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.