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Articles

Oak gum mediated sustainable synthesis of gold nanoparticles (Au NPs): evaluation of its antioxidant and anti-colon cancer effects

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Pages 377-388 | Received 10 Feb 2022, Accepted 02 Mar 2022, Published online: 27 May 2022

References

  • Dong J, Li J, Luo J, et al. CircHMGCS1 is upregulated in colorectal cancer and promotes proliferation of colorectal cancer cells by targeting microRNA-503-5p. Eur J Inflamm. 2019;17:1–11.
  • Lin A, Zhang J, Luo P. Crosstalk between the MSI status and tumor microenvironment in colorectal cancer. Front Immunol. 2020;11:2039.
  • Arvelo F, Sojo F, Cotte C. Biology of colorectal cancer. Ecancermedicalscience. 2015;9:520.
  • Gulbake A, Jain A, Jain A, et al. Insight to drug delivery aspects for colorectal cancer. World J Gastroenterol. 2016;22(2):582–599.
  • Saus E, Iraola-Guzmán S, Willis JR, et al. Microbiome and colorectal cancer: Roles in carcinogenesis and clinical potential. Mol Aspects Med. 2019;69:93–106.
  • Datta K, Suman S, Kumar S, et al. Colorectal carcinogenesis, radiation quality, and the ubiquitin-proteasome pathway. J Cancer. 2016;7(2):174–183.
  • Han YD, Oh TJ, Chung TH, et al. Early detection of colorectal cancer based on presence of methylated syndecan-2 (SDC2) in stool DNA. Clin Epigenetics. 2019;11(1):51–61.
  • Valeri N. Streamlining detection of fusion genes in colorectal cancer: Having “ "Faith" in Precision Oncology in the (Tissue) "Agnostic" Era. Cancer Res. 2019;79(6):1041–1043.
  • Brand M, Gaylard P, Ramos J. Colorectal cancer in South Africa: an assessment of disease presentation, treatment pathways and 5-year survival. S Afr Med J. 2018;108(2):118–122.
  • Huyghe N, Baldin P, Van den Eynde M. Immunotherapy with immune checkpoint inhibitors in colorectal cancer: what is the future beyond deficient mismatch-repair tumours? Gastroenterol Rep (Oxf)). 2020;8(1):11–24.
  • Bray F, Ferlay J, Soerjomataram IRL, et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA: Cancer J Clin. 2019;68:394–424.
  • Fortina P, Kricka LJ, Graves DJ, et al. Applications of nanoparticles to diagnostics and therapeutics in colorectal cancer. Trends Biotechnol. 2007;25(4):145–155.
  • Upendra L, Minakshi P, Brar B, et al. Nanodiagnostics: a new frontier for veterinary and medical sciences. J Exp Biol Agric Sci. 2016;4:307–318.
  • Baig B, Halim SA, Farrukh A, et al. Current status of nanomaterial-based treatment for hepatocellular carcinoma. Biomed Pharmacother. 2019;116:108852.
  • Xia Y, You P, Xu F, et al. Novel functionalized selenium nanoparticles for enhanced anti-Hepatocarcinoma activity in vitro. Nanoscale Res Lett. 2015;10:349–362.
  • Kanai M, Imaizumi A, Otsuka Y, et al. Dose-escalation and pharmacokinetic study of nanoparticle curcumin, a potential anticancer agent with improved bioavailability, in healthy human volunteers. Cancer Chemother Pharmacol. 2012;69(1):65–70.
  • Awual MR, Khraisheh M, Alharthi NH, et al. Efficient detection and adsorption of cadmium(II) ions using innovative nano-composite materials. Chem Eng J. 2018;343:118–127.
  • Mohammadi P, Heravi MM, Sadjadi S. Green synthesis of Ag NPs on magnetic polyallylamine decorated g-C3N4 by heracleum persicum extract: efficient catalyst for reduction of dyes. Sci Rep. 2020;10(1):6579–6588.
  • Ding Y, Shen SZ, Sun H, et al. Design and construction of polymerized-chitosan coated Fe3O4 magnetic nanoparticles and its application for hydrophobic drug delivery. Mater Sci Eng C. 2015;48:487–498.
  • Esmaeilpour M, Sardarian AR, Firouzabadi H. N-heterocyclic carbene-Pd(II) complex based on theophylline supported on Fe3O4@SiO2 nanoparticles: highly active, durable and magnetically separable catalyst for green Suzuki-Miyaura and Sonogashira-Hagihara coupling reactions. J Organometal Chem. 2018;873:22–34.
  • Zhang H, Li T, Luo W, et al. Green synthesis of Ag nanoparticles from leucus aspera and its application in anticancer activity against alveolar cancer. J Exp Nanosci. 2022;17(1):47–60.
  • Huang Y, Zhu C, Xie R, et al. Green synthesis of nickel nanoparticles using fumaria officinalis as a novel chemotherapeutic drug for the treatment of ovarian cancer. J Exp Nanosci. 2021;16(1):368–381.
  • Liu H, Wang G, Liu J, et al. Green synthesis of copper nanoparticles using cinnamomum zelanicum extract and its applications as a highly efficient antioxidant and anti-human lung carcinoma. J Exp Nanosci. 2021;16(1):410–423.
  • Li T, Yan G, Bai Y, et al. Papain bioinspired gold nanoparticles augmented the anticancer potency of 5-FU against lung cancer. J Exp Nanosci. 2020;15(1):109–128.
  • Rugaie OA, Jabir M, Kadhim R, et al. Gold nanoparticles and graphene oxide flakes synergistic partaking in cytosolic bactericidal augmentation: role of ROS and NOX2 activity. Microorganisms. 2021;9(1):101–114.
  • Al-Omar MS, Jabir M, Karsh E, et al. Gold nanoparticles and graphene oxide flakes enhance cancer cells’ phagocytosis through granzyme-perforin-dependent biomechanism. Nanomater. 2021;11(6):1382–1395.
  • Win KY, Ye E, Teng CP, et al. Engineering polymeric microparticles as theranostic carriers for selective delivery and cancer therapy. Adv Healthcare Mater. 2013;2(12):1571–1575.
  • Aravind A, Jeyamohan P, Nair R, et al. AS1411 aptamer tagged PLGA-lecithin-PEG nanoparticles for tumor cell targeting and drug delivery. Biotechnol Bioeng. 2012;109(11):2920–2931.
  • Zhang Q, Liu F, Nguyen KT, et al. Multifunctional mesoporous silica nanoparticles for cancer-targeted and controlled drug delivery. Adv Funct Mater. 2012;22(24):5144–5156.
  • Tao Y, Han J, Ye C, et al. Reduction-responsive gold-nanoparticle-conjugated pluronic micelles: an effective anti-cancer drug delivery system. J Mater Chem. 2012;22(36):18864–18671.
  • Bose S, Panda AK, Mukherjee S, et al. Curcumin and tumor immune-editing: resurrecting the immune system. Cell Div. 2015;10(1):6–18.
  • Yallapu MM, Nagesh PKB, Jaggi M, et al. Therapeutic applications of curcumin nanoformulations. Aaps J. 2015;17(6):1341–1356.
  • Ghosh D, Choudhury ST, Ghosh S, et al. Nanocapsulated curcumin: oral chemopreventive formulation against diethylnitrosamine induced hepatocellular carcinoma in rat. Chem Biol Interact. 2012;195(3):206–214.,
  • Xue W, Yang G, Karmakar B, et al. Sustainable synthesis of Cu NPs decorated on pectin modified Fe3O4 nanocomposite: catalytic synthesis of 1-substituted-1H-tetrazoles and in-vitro studies on its cytotoxicity and anti-colorectal adenocarcinoma effects on HT-29 cell lines. Arab J Chem. 2021;14(9):103306–103316.
  • Huang Y, Kang Y, El-Kott A, et al. Decorated Cu NPs on lignin coated magnetic nanoparticles: its performance in the reduction of nitroarenes and investigation of its anticancer activity in A549 lung cancer cells. Arab J Chem. 2021;14(8):103299–103308.
  • Sun W, Karmakar B, Ibrahium HA, et al. Design and synthesis of nano Cu/chitosan-starch bio-composite for the treatment of human thyroid carcinoma. Arab J Chem. 2022;15(1):103465–103475.
  • Zhao P, El-Kott A, Ahmed AE, et al. Green synthesis of gold nanoparticles (Au NPs) using tribulus terrestris extract: investigation of its catalytic activity in the oxidation of sulfides to sulfoxides and study of its anti-acute leukemia activity. Inorg Chem Commun. 2021;131:108781–108791.
  • Abdel-Fattah WI, Ali GW. On the anti-Cancer activities of silver nanoparticles. J Appl Biotechnol Bioeng. 2018;5(2):43–46.
  • Patil MP, Kim GD. Eco-friendly approach for nanoparticles synthesis and mechanism behind antibacterial activity of silver and anticancer activity of gold nanoparticles. Appl Microbiol Biotechnol. 2017;101(1):79–92.
  • Bisht G, Rayamajhi S. ZnO nanoparticles: a promising anticancer agent. Nanobiomedicine (Rij). 2016;3:9.
  • Hassanien R, Husein DZ, Al-Hakkani MF. Biosynthesis of copper nanoparticles using aqueous tilia extract: antimicrobial and anticancer activities. Heliyon. 2018;4(12):e01077.
  • Nakkala JR, Mata R, Sadras SR. The antioxidant and catalytic activities of green synthesized gold nanoparticles from piper longum fruit extract. Process Saf Environ Prot. 2016;100:288–294.
  • Abel EE, Poonga PRJ, Panicker SG. Characterization and in vitro studies on anticancer, antioxidant activity against Colon cancer cell line of gold nanoparticles capped with cassia tora SM leaf extract. Appl Nanosci. 2016;6(1):121–129.