Ebpay生命医药出版社

Ebpay生命

100763

论文已发表

提 交 论 文


注册即可获取Ebpay生命的最新动态

注 册



IF 收录期刊



  • 3.3 Breast Cancer (Dove Med Press)
  • 3.4 Clin Epidemiol
  • 2.5 Cancer Manag Res
  • 2.9 Infect Drug Resist
  • 3.5 Clin Interv Aging
  • 4.7 Drug Des Dev Ther
  • 2.7 Int J Chronic Obstr
  • 6.6 Int J Nanomed
  • 2.5 Int J Women's Health
  • 2.5 Neuropsych Dis Treat
  • 2.7 OncoTargets Ther
  • 2.0 Patient Prefer Adher
  • 2.3 Ther Clin Risk Manag
  • 2.5 J Pain Res
  • 2.8 Diabet Metab Synd Ob
  • 2.8 Psychol Res Behav Ma
  • 3.0 Nat Sci Sleep
  • 1.8 Pharmgenomics Pers Med
  • 2.7 Risk Manag Healthc Policy
  • 4.2 J Inflamm Res
  • 2.1 Int J Gen Med
  • 4.2 J Hepatocell Carcinoma
  • 3.7 J Asthma Allergy
  • 1.9 Clin Cosmet Investig Dermatol
  • 2.7 J Multidiscip Healthc



更多详情 >>





已发表论文

依靠聚乙烯亚胺 (Polyethylenimine) 官能化的银纳米粒子进行的紫杉醇 (Paclitaxel) 共同传递可诱导 HepG2 细胞凋亡

 

Authors Li Y, Guo M, Lin Z, Zhao M, Xiao M, Wang C, Xu T, Chen T, Zhu B

Received 18 September 2016

Accepted for publication 16 November 2016

Published 8 December 2016 Volume 2016:11 Pages 6693—6702

DOI http://doi.org/10.2147/IJN.S122666

Checked for plagiarism Yes

Review by Single-blind

Peer reviewers approved by Dr Alexander Kharlamov

Peer reviewer comments 4

Editor who approved publication: Dr Linlin Sun

Abstract: Hepatocarcinoma is the third leading cause of cancer-related deaths around the world. Recently, a novel emerging nanosystem as anticancer therapeutic agents with intrinsic therapeutic properties has been widely used in various medical applications. In this study, surface decoration of functionalized silver nanoparticles (AgNPs) by polyethylenimine (PEI) and paclitaxel (PTX) was synthesized. The purpose of this study was to evaluate the effect of Ag@PEI@PTX on cytotoxic and anticancer mechanism on HepG2 cells. The transmission electron microscope image and 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay showed that Ag@PEI@PTX had satisfactory size distribution and high stability and selectivity between cancer and normal cells. Ag@PEI@PTX-induced HepG2 cell apoptosis was confirmed by accumulation of the sub-G1 cells population, trans of phosphatidylserine, depletion of mitochondrial membrane potential, DNA fragmentation, caspase-3 activation, and poly(ADP-ribose) polymerase cleavage. Furthermore, Ag@PEI@PTX enhanced cytotoxic effects on HepG2 cells and triggered intracellular reactive oxygen species; the signaling pathways of AKT, p53, and MAPK were activated to advance cell apoptosis. In conclusion, the results reveal that Ag@PEI@PTX may provide useful information on Ag@PEI@PTX-induced HepG2 cell apoptosis and as appropriate candidate for chemotherapy of cancer.
Keywords: silver nanoparticles, polyethylenimine, paclitaxel, reactive oxygen species, apoptosis





Download Article[PDF]