Journal of Engineering and Applied Sciences

Year: 2018
Volume: 13
Issue: 6
Page No. 1414 - 1420

In Vitro Antiproliferative Effect, Cytotoxicity and Apoptosis Study of Biogenic Silver Nanoparticles Synthesized Using Sterculia quadrifida leaf Extract

Authors : VishnuRajendran

References

Amendola, V., O.M. Bakr and F. Stellacci, 2010. A study of the surface plasmon resonance of silver nanoparticles by the discrete dipole approximation method: Effect of shape, size, structure and assembly. Plasmonics, 5: 85-97.
CrossRef  |  Direct Link  |  

Arokiyaraj, S., M.V. Arasu, S. Vincent, N.U. Prakash and S.H. Choi et al., 2014. Rapid green synthesis of silver nanoparticles from Chrysanthemum indicum L. and its antibacterial and cytotoxic effects: An in vitro study. Intl. J. Nanomed., 9: 379-388.

Bayazit, V.A.H.D.E.T.T.I.N., 2010. Biological activities of nanomaterials (bufadienolides, peptides and alkoloids) in the skin of amphibian on Gammarus pulex L. Digest J. Nanomater. Biostructures, 5: 347-354.
Direct Link  |  

Berthomieu, C. and R. Hienerwadel, 2009. Fourier Transform Infrared (FTIR) spectroscopy. Photosynth. Res., 101: 157-170.
CrossRef  |  Direct Link  |  

Cao, G., 2004. Nanostructures and Nanomaterials: Synthesis, Properties and Applications. 1st Edn., Imperial College Press, London, ISBN-13: 978-1860944802, Pages: 433.

Darzynkiewicz, Z., S. Bruno, G. Del Bino, W. Gorczyca, M.A. Hotz, P. Lassota and F. Traganos, 1992. Features of apoptotic cells measured by flow cytometry. Cytometry, 13: 795-808.
Direct Link  |  

Gavhane, A.J., P. Padmanabhan, S.P. Kamble and S.N. Jangle, 2012. Synthesis of silver nanoparticles using extract of neem leaf and Triphala and evaluation of their antimicrobial activities. Int. J. Pharma Bio Sci., 3: 88-100.
Direct Link  |  

Gerlier, D. and N. Thomasset, 1986. Use of MTT colorimetric assay to measure cell activation. J. Immunol. Methods, 94: 57-63.
Direct Link  |  

Gleiter, H., 2009. Nanoscience and nanotechnology: The key to new studies in areas of science outside of nanoscience and nanotechnology. MRS. Bull., 34: 456-464.
Direct Link  |  

Guo, D., Y. Zhao, Y. Zhang, Q. Wang and Z. Huang et al., 2014. The cellular uptake and cytotoxic effect of silver nanoparticles on chronic myeloid leukemia cells. J. Biomed. Nanotechnol., 10: 669-678.
Direct Link  |  

Huth, F., A. Govyadinov, S. Amarie, W. Nuansing and F. Keilmann et al., 2012. Nano-FTIR absorption spectroscopy of molecular fingerprints at 20 nm spatial resolution. Nano Lett., 12: 3973-3978.
Direct Link  |  

Jeyaraj, M., G. Sathishkumar, G. Sivanandhan, D. MubarakAli and M. Rajesh et al., 2013. Biogenic silver nanoparticles for cancer treatment: An experimental report. Colloids Surf. B. Biointerfaces, 106: 86-92.
CrossRef  |  Direct Link  |  

Kent, R.D. and P.J. Vikesland, 2012. Controlled evaluation of silver nanoparticle dissolution using atomic force microscopy. Environ. Sci. Technol., 46: 6977-6984.
CrossRef  |  Direct Link  |  

Krishnaraj, C., E.G. Jagan, S. Rajasekar, P. Selvakumar and P.T. Kalaichelvan et al., 2010. Synthesis of silver nanoparticles using Acalypha indica leaf extracts and its antibacterial activity against water borne pathogens. Colloids Surf. B. Biointerfaces, 76: 50-56.
Direct Link  |  

Lewinski, N., V. Colvin and R. Drezek, 2008. Cytotoxicity of nanoparticles. Small, 4: 26-49.
CrossRef  |  Direct Link  |  

Liu, K., P.C. Liu, R. Liu and X. Wu, 2015. Dual AO/EB staining to detect apoptosis in osteosarcoma cells compared with flow cytometry. Med. Sci. Monit. Basic Res., 21: 15-20.
CrossRef  |  Direct Link  |  

Lorenzen, A. and S.W. Kennedy, 1993. A fluorescence-based protein assay for use with a microplate reader. Anal. Biochem., 214: 346-348.
Direct Link  |  

Mansoori, G.A., 2005. Principles of Nanotechnology: Molecular-Based Study of Condensed Matter in Small Systems. World Scientific Publishing Co Inc., New Jersey, USA., ISBN: 981-256-154-4, Pages: 335.

Martinez-Gutierrez, F., P.L. Olive, A. Banuelos, E. Orrantia and N. Nino et al., 2010. Synthesis, characterization and evaluation of antimicrobial and cytotoxic effect of silver and titanium nanoparticles. Nanomed.: Nanotechnol. Biol. Med., 6: 681-688.
CrossRef  |  Direct Link  |  

Mittal, A.K., D. Tripathy, A. Choudhary, P.K. Aili and A. Chatterjee et al., 2015. Bio-synthesis of silver nanoparticles using Potentilla fulgens wall ex hook and its therapeutic evaluation as anticancer and antimicrobial agent. Mater. Sci. Eng. C., 53: 120-127.
Direct Link  |  

Philip, D., 2010. Green synthesis of gold and silver nanoparticles using Hibiscus rosa sinensis. Physica E. Low Dimensional Syst. Nanostructures, 42: 1417-1424.
Direct Link  |  

Rao, D.S., K. Muraleedharan and C.J. Humphreys, 2010. TEM specimen preparation techniques. Microsc. Sci. Technol. Appl. Educ., 2010: 1232-1244.

Ribble, D., N.B. Goldstein, D.A. Norris and Y.G. Shellman, 2005. A simple technique for quantifying apoptosis in 96-well plates. BMC. Biotechnol., 5: 1-12.
CrossRef  |  Direct Link  |  

Riccardi, C. and I. Nicoletti, 2006. Analysis of apoptosis by propidium iodide staining and flow cytometry. Nat. Protocols, 1: 1458-1461.
CrossRef  |  Direct Link  |  

Shahoon, H., 2013. The comparison of silver and hydroxyapatite nanoparticles biocompatibility on l929 fibroblast cells: An In vitro study. J. Nanomed. Nanotechnol., 4: 1-4.
Direct Link  |  

Shihabudeen, H.M.S., D.H. Priscilla and K. Thirumurugan, 2010. Antimicrobial activity and phytochemical analysis of selected Indian folk medicinal plants. Intl. J. Pharma. Sci. Res., 1: 430-434.
Direct Link  |  

Smitha, S.L., K.M. Nissamudeen, D. Philip and K.G. Gopchandran, 2008. Studies on surface plasmon resonance and photoluminescence of silver nanoparticles. Spectrochim. Acta Part A. Mol. Biomol. Spectrosc., 71: 186-190.
Direct Link  |  

Valadez-Vega, C., G. Alvarez-Manilla, L. Riveron-Negrete, A. Garcia-Carranca and J.A. Morales-Gonzalez et al., 2011. Detection of cytotoxic activity of lectin on human colon adenocarcinoma (Sw480) and epithelial cervical carcinoma (C33-A). Mols., 16: 2107-2118.
Direct Link  |  

Zhang, J.H., J. Yu, W.X. Li and C.P. Cheng, 1998. Evaluation of Mn2+ stimulated and Zn2+ inhibited apoptosis in rat corpus luteal cells by flow cytometry and fluorochromes staining. Chin. J. Physiol., 41: 121-126.

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved