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In-vitro antibacterial, antioxidant and cytotoxic potential of gold nanoparticles synthesized using novel Elaeocarpus ganitrus seeds extract
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In the present study, we have follwed the hydrothermal path for the synthesis of gold nanoparticles (Au NPs) from the biomaterial Elaeocarpus ganitrus seeds extract, which is a rapid, eco-friendly, non-chemical way. The prepared NPs were thoroughly analysed by powder x-ray diffraction and high resolution transmission electron microscopy studies and were also tested for anticancer studies.
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In-vitro antibacterial, antioxidant and cytotoxic potential of gold nanoparticles synthesized using novel Elaeocarpus ganitrus seeds extract Journal of Science: Advanced Materials and Devices 6 (2021) 127e133 Contents lists available at ScienceDirect Journal of Science: Advanced Materials and Devices journal homepage: www.elsevier.com/locate/jsamdOriginal ArticleIn-vitro antibacterial, antioxidant and cytotoxic potential of goldnanoparticles synthesized using novel Elaeocarpus ganitrus seedsextractS.P. Vinay a, *, Udayabhanu b, H.N. Sumedha b, M. Shashank b, G. Nagaraju b,N. Chandrasekhar aa Research and Development Center, Department of Chemistry, Shridevi Institute of Engineering and Technology, Tumakuru 572106, Karnataka, Indiab Energy Materials Research Laboratory, Department of Chemistry, Siddaganga Institute of Technology, Tumakuru 572103, Karnataka, Indiaa r t i c l e i n f o a b s t r a c tArticle history: In the present study, we have follwed the hydrothermal path for the synthesis of gold nanoparticles (AuReceived 1 April 2020 NPs) from the biomaterial Elaeocarpus ganitrus seeds extract, which is a rapid, eco-friendly, non-chemicalReceived in revised form way. The prepared NPs were thoroughly analysed by powder x-ray diffraction and high resolution5 September 2020 transmission electron microscopy studies and were also tested for anticancer studies. Besides, theAccepted 8 September 2020 antioxidant, antibacterial and anticancer properties of Au NPs were studied. In vitro studies revealed theAvailable online 22 September 2020 dose-dependent cytotoxic effect of Au NPs. The prepared nanoparticles showed good cytotoxic impact against a prostate cancer (PC-3) cells line. The evidences of the current study lead to the synthesis ofKeywords:Elaeocarpu sganitrus novel and cost-effective drugs from Elaeocarpus ganitrus seeds extract by using the bio approach.Hydrothermal synthesis © 2020 The Authors. Publishing services by Elsevier B.V. on behalf of Vietnam National University, Hanoi.Gold nanoparticles This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).Prostate cancerCancer nanomedicine1. Introduction looked into techniques to grow new successful antimicrobial op- erators that beat protections of these microorganisms and that are The research on nanotechnology is an auspicious area for likewise cost effective [4]. Subsequently, selective medications,cancerous therapy and diagnostics in the biomedical approach. which are less lethal, eco-accommodating and cheap, should beCancer is a dangerous and threatening disease in the world and investigated. The present work deals with Au NPs that exhibitdoes increases the morbidity and mortality of human life. Malig- effective cytotoxicity against prostate cancer (PC-3) cells. The levelnancy treatment incorporates chemotherapy, radiotherapy and of cell was essentially diminished by expanding the concentrationmedical procedure and is an incredibly factor in its introduction, from 20 to 100 mg/mL.improvement and result, since now and again these treatments A tree, called Elaeocarpus ganitrus, is an enormous evergreenfizzle or cause the reoccurrence of tumor cells [1]. Likewise, greater expansively leaved tree whose seeds are customarily utilized forparts of the disease drugs kill both harmful and ordinary cells in an petition globules in Hinduism. The seeds are called Rudraksha, orirregular way [2]. Many degenerative diseases of aging such as Rudraksh [5]. E. ganitrus seeds are usually found in the foothills ofbrain malfunction, cataracts, cardiovascular diseases and cancer, icy Himalayan Mountains in South-East Asia, the Australian part ofare generated by the over production of free radicals inside the ...
Nội dung trích xuất từ tài liệu:
In-vitro antibacterial, antioxidant and cytotoxic potential of gold nanoparticles synthesized using novel Elaeocarpus ganitrus seeds extract Journal of Science: Advanced Materials and Devices 6 (2021) 127e133 Contents lists available at ScienceDirect Journal of Science: Advanced Materials and Devices journal homepage: www.elsevier.com/locate/jsamdOriginal ArticleIn-vitro antibacterial, antioxidant and cytotoxic potential of goldnanoparticles synthesized using novel Elaeocarpus ganitrus seedsextractS.P. Vinay a, *, Udayabhanu b, H.N. Sumedha b, M. Shashank b, G. Nagaraju b,N. Chandrasekhar aa Research and Development Center, Department of Chemistry, Shridevi Institute of Engineering and Technology, Tumakuru 572106, Karnataka, Indiab Energy Materials Research Laboratory, Department of Chemistry, Siddaganga Institute of Technology, Tumakuru 572103, Karnataka, Indiaa r t i c l e i n f o a b s t r a c tArticle history: In the present study, we have follwed the hydrothermal path for the synthesis of gold nanoparticles (AuReceived 1 April 2020 NPs) from the biomaterial Elaeocarpus ganitrus seeds extract, which is a rapid, eco-friendly, non-chemicalReceived in revised form way. The prepared NPs were thoroughly analysed by powder x-ray diffraction and high resolution5 September 2020 transmission electron microscopy studies and were also tested for anticancer studies. Besides, theAccepted 8 September 2020 antioxidant, antibacterial and anticancer properties of Au NPs were studied. In vitro studies revealed theAvailable online 22 September 2020 dose-dependent cytotoxic effect of Au NPs. The prepared nanoparticles showed good cytotoxic impact against a prostate cancer (PC-3) cells line. The evidences of the current study lead to the synthesis ofKeywords:Elaeocarpu sganitrus novel and cost-effective drugs from Elaeocarpus ganitrus seeds extract by using the bio approach.Hydrothermal synthesis © 2020 The Authors. Publishing services by Elsevier B.V. on behalf of Vietnam National University, Hanoi.Gold nanoparticles This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).Prostate cancerCancer nanomedicine1. Introduction looked into techniques to grow new successful antimicrobial op- erators that beat protections of these microorganisms and that are The research on nanotechnology is an auspicious area for likewise cost effective [4]. Subsequently, selective medications,cancerous therapy and diagnostics in the biomedical approach. which are less lethal, eco-accommodating and cheap, should beCancer is a dangerous and threatening disease in the world and investigated. The present work deals with Au NPs that exhibitdoes increases the morbidity and mortality of human life. Malig- effective cytotoxicity against prostate cancer (PC-3) cells. The levelnancy treatment incorporates chemotherapy, radiotherapy and of cell was essentially diminished by expanding the concentrationmedical procedure and is an incredibly factor in its introduction, from 20 to 100 mg/mL.improvement and result, since now and again these treatments A tree, called Elaeocarpus ganitrus, is an enormous evergreenfizzle or cause the reoccurrence of tumor cells [1]. Likewise, greater expansively leaved tree whose seeds are customarily utilized forparts of the disease drugs kill both harmful and ordinary cells in an petition globules in Hinduism. The seeds are called Rudraksha, orirregular way [2]. Many degenerative diseases of aging such as Rudraksh [5]. E. ganitrus seeds are usually found in the foothills ofbrain malfunction, cataracts, cardiovascular diseases and cancer, icy Himalayan Mountains in South-East Asia, the Australian part ofare generated by the over production of free radicals inside the ...
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Advanced materials and devices Hydrothermal synthesis Cancer nanomedicine Powder x-ray diffraction Cost-effective drugsTài liệu liên quan:
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