Title :
Green synthesis of silver nanoparticles for selective toxicity towards cancer cells
Author :
Govindaraju, Kasivelu ; Krishnamoorthy, Karthikeyan ; Alsagaby, Suliman A. ; Singaravelu, Ganesan ; Premanathan, Mariappan
Author_Institution :
Dept. of Zoology, Thiruvalluvar Univ., Vellore, India
Abstract :
Therapeutic applications of nanoparticles (NPs) are rapidly increasing for their utility in medicine, especially cancer therapy. The present study investigated the green synthesis of silver NPs (Ag NPs) of 10 nm size using Sargassum vulgare and its preferential ability to kill cancerous human myeloblastic leukemic cells HL60 and cervical cancer cells HeLa as compared with normal peripheral blood mononuclear cells. DNA fragmentation study and annexin V marker fluorescence-activated cell sorting (FACS) analysis revealed the Ag NP-induced cell death is through apoptosis. Transmission electron micrographs have showed the endocytosis of Ag NPs into the nucleus. Ag NPs inhibited the lipid peroxidation-induced reactive oxygen species generation, thus preventing the irradiation-related carcinogenesis. This study suggested that a mechanism underlying the toxicity of Ag NPs towards cancer cells is due to DNA damage and apoptosis. The authors´ findings revealed the potential utility of as-prepared Ag NPs in the treatment of cancer as prophylactic agent with antioxidant property and chemotherapeutic agent for their selective toxicity to cancer cells.
Keywords :
DNA; biomedical materials; cancer; cellular biophysics; lipid bilayers; molecular biophysics; nanofabrication; nanomedicine; nanoparticles; patient treatment; silver; toxicology; transmission electron microscopy; Ag; Ag NP-induced cell death; DNA apoptosis; DNA damage; DNA fragmentation; Sargassum vulgare; annexin V marker FACS analysis; antioxidant property; cancer therapy; cancer treatment; cancerous human myeloblastic leukemic cell HL60; cervical cancer cell HeLa; chemotherapeutic agent; endocytosis; green synthesis; irradiation-related carcinogenesis; lipid peroxidation-induced ROS generation; prophylactic agent; selective toxicity; silver nanoparticles; transmission electron micrographs;
Journal_Title :
Nanobiotechnology, IET
DOI :
10.1049/iet-nbt.2015.0001