Silver nanoparticles synthesized with a fraction from the bark of Eysenhardtia polystachya with high chalcone and dihydrochalcone content effectively inhibit oxidative stress in the zebrafish embryo model

Publish Year: 1397
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_NAMJ-5-3_005

تاریخ نمایه سازی: 18 تیر 1398

Abstract:

Objective(s): In this study, we desvcribe a simple eco-friendly approach for the synthesis of a potent, stable and benign silver nanoparticles to carry and deliver chalcones and dihydrochalcones present in a methanol extract of Eysenhardtia polystachya (EP). Materials and Methods: In this process silver nanoparticles carring EP compounds (EP/AgNPs) are synthesized in a single step by eliminating the additional handling associated with incorporating EP compounds. The resulting nanoparticles (EP/AgNPs) were characterized using several physicochemical techniques. Cell viability was measured in vitro with RAW264.7 murine macrophage cells. In addition, we evaluated the ability of EP and EP/AgNPs to protect against glucose-induced oxidative in vivo stress using zebrafish embryos. Results: The synthesized EP/AgNPs showed an absorption peak at 413 nm on ultraviolet-visible spectroscopy (UV-vis), revealing the surface plasmon resonance of the nanoparticles. Transmission electron microscopy (TEM) indicated that most of the particles were spherical with a diameter of 10 to 12 nm, a polydispersity index (PDI) of 0.197 and a zeta potential of –32.25 mV, suggesting high stability of these nanoparticles. This study also demonstrated the biocompatibility of the nanoparticles when tested in RAW264.7 cells and its protective efficacy against oxidative stress induced by the exposure of zebrafish embryos to high glucose concentrations. Treatment with EP/AgNPs increased the activity of anti-stress biomarkers such as superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx), and total soluble protein. Exposure of the embryos to EP/AgNPs significantly (P<0.05) suppressed the formation of malondialdehyde (MDA) and lipid oxidation (LPO). Conclusion: EP/AgNPs synthesized from E. polystachya extract provide an effective defense against oxidative stress in zebrafish embryos.

Authors

Abraham Heriberto Garcia Campoy

Laboratorio de Investigación de Productos Naturales. Escuela Superior de Ingenieria Quimica e Industrias extractivas IPN. Av. Instituto Politécnico Nacional S/N, Unidad Profesional Adolfo Lopez Mateos CP ۰۷۷۰۸, Cd. Mexico

Fernando Martinez Jeronimo

Lab. De Hidrobiologia Experimental. Escuela Nacional de Ciencias Biologicas. Carpio y Plan de Ayala S/N, Cd de Méexico. CP ۱۱۳۴۰

Rosa Martha Perez Gutierrez

Laboratorio de Investigación de Productos Naturales. Escuela Superior de Ingenieria Quimica e Industrias extractivas IPN. Av. Instituto Politécnico Nacional S/N, Unidad Profesional Adolfo Lopez Mateos CP ۰۷۷۰۸, Cd. Mexico

Alethia Muñiz Ramirez

CONACYT-IPICYT / CIIDZA, Camino a la Presa de San Jose ۲۰۵۵, Col. Lomas ۴ section, CP ۷۸۲۱۶ San Luis Potosí México

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  • Rahman T, Hosen I, Towhidul MM, Shekha HU. Oxidative stress ...
  • Dobrakowski M, Boroń M, Birkner E, Kasperczyk A, Chwalińska E, ...
  • Birben E,  Sahiner UM,  Sackesen C,  Erzurum S,  Kalayci O. ...
  • Kayalvizhi1 T, Ravikumar S, Venkatachalam P. Green synthesis of metallic ...
  • Marin S,  Vlasceanu GM,  Tiplea RE,  Bucur IR, Lemnaru M,  ...
  • Gurunathan S, Raman J, Abd Malek SN, John PA, Vikineswary ...
  • Kim JS, Kuk E, Yu KN, Kim JH, Park SJ, ...
  • Emerich DF, Thanos CG. The pinpoint promise of nanoparticle-based drug ...
  • Froeschke S, Kohler S, Weber AP, Kasper G. Impact fragmentation ...
  • Mandal S, Sainkar SR, Sastry M. Patterned silver nanoparticles films ...
  • Marzan LML, Tourino I L. Reduction and stabilization of silver ...
  • Petit C, Lixon P, Pileni MP. In situ synthesis of ...
  • Zahran M, El-Kemary M, Khalifa S, El-Seedi H. Spectral studies ...
  • Gholamreza A, Varshosaz J, Shahbaz N. Synthesis of silver nanoparticle ...
  • Sahu K, Gupta PK. Review on Bauhinia variegata linn. Int ...
  • Lila MA. Anthocyanins and human health: an in vitro investigative ...
  • El-Kemary M, Zahran M, Khalifa SAM, El-Seedi, HR. Spectral characterisation ...
  • McShan D, Paresh CR, Yu H. Molecular toxicity mechanism of ...
  • Fishman MC. Zebrafish genetics: the enigma of arrival. Proc Natl ...
  • Perez RMG, Vargas R, Perez GS, Zavala S. Antiurolithiatic activity ...
  • Burns DT, Dalgarno BG, Ggargan P, Grimshaw J. An isoflavone ...
  • Alvarez L, Rios MY, Esquivel C, Chavez MI, Delgado G, ...
  • Perez RMG, Baez EG. Evaluation of hypoglycemic, antioxidant and antiglycating ...
  • Perez RMG, Campoy AHG, Ramírez AM. Properties of flavonoids isolated ...
  • Perez RMG, Campoy AHG, Flores JMM. Dihydrochalcones from the bark ...
  • Hang L, Zhao J, Chen J, Zhu L, Wang D, ...
  • Ahmed S1, Ahmad M1, Swami BL1, Ikram S1. A review ...
  • Lee JH, Ki J. Effect of cubic phase nanoparticle on ...
  • Nayak D, Minz AP, Ashe S, Rauta PR, Kumari M, ...
  • Nasiriboroumand M, Montazer M, Barani H. Preparation and characterization of ...
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  • Suvakanta D, Padala NM, Lilakanta N, Prasanta C. Kinetic modeling ...
  • Hu R, Bai H, Liu F, Wu Y, XIE X, ...
  • Gleeson M, Connaughton V, Arneson LS. Induction of hyperglycaemia in ...
  • Mugoni V, Camporeale A, Santoro MM. Analysis of oxidative stress ...
  • Bradford MM. A rapid and sensitive for the quantitation of ...
  • Ohkawa H, Ohishi N, Yagi K. Assay for lipid peroxides ...
  • Maybry TJ, Markham KR, Thomas MB. The ultraviolet spectra of ...
  • Velgosova O, Mrazikova A. Limitations and possibilities of green synthesis ...
  • Dash S, Murthy PN, Nath L, Chowdhury P.  Kinetic modeling ...
  • Higuchi T. Mechanism of sustained-action medication. Theoretical analysis of rate ...
  • Korsmeyer RW, Gurny R, Doelker EM, Buri P, Peppas NA. ...
  • Ritger P, Peppas N. A simple equation for description of ...
  • Logeswari P, Silambarasan S, Abraham J. Synthesis of silver nanoparticles ...
  • Kim JY, Hong JH, Jung HK, Jeong YS, Cho KH. ...
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  • Pandey S, Parvez S, Sayeed I, Haque R, Bin-Hafeez B, ...
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