• Title/Summary/Keyword: 나노독성

Search Result 157, Processing Time 0.021 seconds

Policy Trend and Status of Aerosol Application Research on the Safety Issues of Nanotechnologies (나노기술 안전성 정책 동향 및 에어로졸 응용 연구 현황)

  • Ji, Jun Ho;Yu, Il Je
    • Particle and aerosol research
    • /
    • v.6 no.3
    • /
    • pp.107-121
    • /
    • 2010
  • The number of nanotechnology based consumer products are growing rapidly. Thus, the customer likely to be exposed to such products continues to increase as the applications expand. This article describes the international and Korea's policies on the EHS(Environment, Safety and Health) issues of nanotechnologies. The strategic plan and coordination of OECD and ISO were summarized. This article also examines several new findings of Korean researchers as well as current and future challenges in the aerosol application study of EHS issues on the nanotechnologies.

Size-dependent Toxicity of Metal Oxide Particles on the Soil Microbial Community and Growth of Zea Mays (산화 금속 입자 크기가 옥수수의 성장과 토양 미생물 군집에 미치는 독성)

  • Kim, Sung-Hyun;Jung, Mi-Ae;Lee, In-Sook
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.31 no.12
    • /
    • pp.1069-1074
    • /
    • 2009
  • This study investigated soil microbial community and growth of Zea mays to compare the toxicity of nano and micro-sized Cu and Zn oxide particles in microcosm system. In the presence of nanoparticles, biomass of Zea mays reduced by 30% compared with micro-sized particles and inhibited growth. Dehydrogenase activity was inhibited by CuO nano although it was increased by ZnO nano particles. According to the Biolog test, the microbial diversity was decreased after exposed to CuO nanoparticles and ZnO microparticles. Therefore, though it is widely recognized that nanoparticles are more harmful than microparticles, we can conclude that the diversity of microbial community does not always influenced by the size of particles of nano and micro.

Toxicity Evaluation of Metals and Metal-oxide Nanoparticles based on the Absorbance, Chlorophyll Content, and Cell Count of Chlorella vulgaris (Chlorella vulgaris의 흡광도, 클로로필 및 개체수 통합 영향에 근거한 중금속 및 나노입자 독성 조사)

  • Jang, Hyun Jin;Lee, Mun Hee;Lee, Eun Jin;Yang, Xin;Kong, In Chul
    • Clean Technology
    • /
    • v.23 no.1
    • /
    • pp.27-33
    • /
    • 2017
  • In this study, toxicities of seven metals (Cu, Cd, Cr, As(III), As(V), Zn, Ni) and five metal oxide nanoparticles (NPs: CuO, ZnO, NiO, $TiO_2$, $Fe_2O_3$) were evaluated based on the growth of Chlorella vulgaris. Effect on algae growth was evaluated by integrating the results of absorption, chlorophyll content, and cell count. The toxicity rankings of metals was observed as Cr ($0.7mgL^{-1}$) > Cu ($1.7mgL^{-1}$) > Cd ($3.2mgL^{-1}$) > Zn ($3.9mgL^{-1}$) > Ni ($13.2mgL^{-1}$) > As(III) ($17.8mgL^{-1}$) ${\gg}$ As(V) (> $1000mgL^{-1}$). Slightly different orders and sensitivities of metal toxicity were examined depending on endpoints of algal growth. In case of NPs, regardless of endpoints, similar toxicity rankings of NPs ($TEC_{50}$) were observed, showing ZnO ($2.4mgL^{-1}$) > NiO ($21.1mgL^{-1}$) > CuO ($36.6mgL^{-1}$) > $TiO_2$ ($62.5mgL^{-1}$) > $Fe_2O_3$ ($82.7mgL^{-1}$). These results indicate that an integrating results of endpoints might be an effective strategy for the assessment of contaminants.

Physical Properties and Cytotoxicity of Dental Pit and Fissure Sealants Containing Cerium Oxide Nano Particles(CNPs) (세륨옥사이드나노입자(Cerium Oxide Nano Particles; CNPs)를 첨가한 치면열구전색재의 물리적 특성 및 세포독성)

  • Jeong, Mi-Ae;Kim, Dong-Ae
    • The Journal of the Korea Contents Association
    • /
    • v.22 no.3
    • /
    • pp.586-592
    • /
    • 2022
  • In this study cerium nano particles(CNPs) with 0-4.0 wt% was incorporated to the conventional dental pit and fissure sealant(ConciseTM) to produce new pit and fissure sealant the physical properties and cytotoxicity. The physical properties were measured for polymerizing depth the degree of water absorption and solubility. The cytotoxicity of cell viability was analyzed by MTT assay using immortalized human oral keratinocyte(IHOK). As a result of this preceding study the polymerizing depth was decreased by the increasing of the amount of CNPs. The solubility degree of the sealant added CNPs with 2.0 wt% showed was the lower and the water absorption showed no significantly difference with the control groups(p>0.05). The cytotoxicity test results showed high survival rates in all experimental groups. Therefore, pit and fissure sealant by the addition of CNPs excellent cell viability be produced without weaken the physical property of the cell viability fissure sealant containing CNPs does not weaken physical properties and has no cytotoxic effects biocompatibility. Considering its properties effect of CNPs, further studies are required for distribution technology application.

Toxicity Assessment of Nanopariticles Based on Seed Germination and Germination Index (씨앗발아 및 발아지수에 근거한 나노입자 독성평가)

  • Gu, Bonwoo;Kong, In Chul
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.36 no.6
    • /
    • pp.396-401
    • /
    • 2014
  • Nanomaterials have been widely used in many fields. This study investigates the effects of metal oxide nanoparticles (CuO, NiO, $TiO_2$, $Fe_2O_3$, $Co_3O_4$, ZnO) on germination and germination index (G.I.) of seeds, Lactuca and Raphanus. Under aqueous exposure, CuO on Lactuca shows the most significant impacts on activities compared to others, showing $EC_{50s}$ for germination and G.I. as 0.46 mg/L and 0.37%, respectively. The effects of nanoparticle phytotoxicity on seed Lactuca was much higher than that of Raphanus. In general, the toxicities on seed germination and germination index were as following orders : CuO > ZnO > NiO ${\gg}$ $TiO_2$, $Fe_2O_3$, $Co_3O_4$. No measurable inhibition was observed at 1,000 mg/L (maximum exposure concentration) of $TiO_2$, $Fe_2O_3$, $Co_3O_4$.

Risk Assessment for Health and Environmental Hazards of Nanomaterials (나노물질의 인체 및 환경유해성에 관한 위해성평가 방안의 고찰)

  • Kim, Mi-Sug;Choi, Kyung-Hee;Kim, Young-Hun;Yi, Jong-Heop
    • Clean Technology
    • /
    • v.13 no.3
    • /
    • pp.161-172
    • /
    • 2007
  • Fusion technology based on the nanotechnology should be introduced to clean technology for the breakthrough advances. Today, nanoparticles, nanotubes and other engineered nanomaterials are already in use in hundreds of everyday consumer products, and these materials are able to move around the human and environmental mediamore readily than larger particles of pollution. Because of their extremely small size and large surface area, nanoparticles are known to be more reactive and toxic than larger particles. Consequently, this feature raised many concerns of significant health, safety and environment. Herein, we reviewed risk assessment for health and environmental hazards of nanomaterials, and then revealed the potential hazardous of nanomaterials.

  • PDF

Effect of ZnO and TiO2 Nanopaticles (NPs) on Microorganisms Growth in Activated Sludge (활성슬러지에서의 미생물 성장에 대한 ZnO와 TiO2 나노물질의 영향)

  • Ha, Min Jeong;Lee, Yeo Eun;Jang, Am
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.38 no.4
    • /
    • pp.177-183
    • /
    • 2016
  • Sewage treatment using microorganisms is affected by multiple factors such as microbial properties, characteristics of sewage and operating conditions, and nanoparticles inflow may cause negative effects on sewage treatment system especially on the system stability and efficiency. It was studied to assess the toxic effects of nanoparticles on microorganism growth. The activated sludge in the sewage treatment plant of university was cultured in the optimized medium for each strain. Bacillus (gram-positive), Pseudomonas and E.coli (gram-negative) in the activated sludge were selected as target microorganisms, and ZnO and $TiO_2$ were chosen as nanoparticles. For same concentration of nanoparticles, average growth inhibition rate of Bacillus was 60% or more, while that of Pseudomonas was less than 10%. The toxicity of nanoparticles was shown to be higher for gram-positive bacteria than gram-negative bacteria because of their differences on structure of cell wall, components of cell wall protein, physiology of cells and metabolism. ZnO affected 3 times more negative on the growth of microorganisms as compared to $TiO_2$. It was assumed that, therefore, toxicity of ZnO was found to be greater than $TiO_2$.

자기조합형 세리신-PEG 나노입자의 합성과 특성

  • 조광용;문재유;김진국;정의수;엄상영;이용우;이광길;여주홍;조종수
    • Journal of the Society of Cosmetic Scientists of Korea
    • /
    • v.28 no.1
    • /
    • pp.116-134
    • /
    • 2002
  • 세리신은 누에고치의 고치실에서 추출되는 천연 단백질로서 많은 수산화기를 가지고 있어 뛰어난 보습성을 가진다. 이에 화장품에의 응용이 기대되나, 물에 잘 녹지 않는 특성을 가지고 있어서 화장품 원료로 사용하기에 어렵다는 단점이 있다. 본 연구에서는 친양쪽성 화합물인 poly(ethylene glycol)(PEG)을 세리신에 도입하여 수용성이며 자기조합형(self-assembled) 세리신-PEG 결합체를 합성하였다. 세리신내의 tyrosine 잔기의 방향 족 수산화기가 반응사이트임을 $^1$H-NMR 분석으로 알 수 있었으며, IR과 CD 측정으로 PEG 사슬의 도입으로 세리신의 구조가 불규칙한 coil구조에서 $\beta$-sheet구조로 구조적 변화가 일어남을 알 수 있었다. 또한 DSC 분석에서 세리신-PEG결합이후 각각의 녹는점이 떨어지는 것을 확인하여 상호 결정성에 영향을 주는 것을 확인하였다. 세리신-PEG 결합체는 자기조합하여 소수성 상호작용을 통해 200-400nm의 구형 나노입자를 이루며 투석방법을 통하여 얻을 수 있었다. 또한, 세리신-PEG 나노입자는 세리신자체보다 더 높은 보습력을 가지는 것을 확인하였다. 세리신-PEG 결합체의 cytotoxicity는 MTT assay에 의해 독성이 없음을 확인하였으며, 동물실험에 의한 독성도 전혀 나타내지 않음을 알 수있었다. 나노입자의 특성과 세리신의 보습성, 세리신-PEG의 친양쪽성 특성으로 세리신-PEG결합체 나노입자는 그 자체로도 원료로 사용 될 수 있을 뿐 아니라 생리 활성성분의 운반체로의 개발이 기대되어 진다.

Toxicity of Silver Nanoparticles and Application of Natural Products on Fabric and Filters as an Alternative (은나노 입자의 독성 메커니즘 및 천연물을 활용한 은나노 대체 항균 소재 연구)

  • Karadeniz, Fatih;Kim, Han Seong
    • Journal of Life Science
    • /
    • v.28 no.7
    • /
    • pp.864-873
    • /
    • 2018
  • There has been increasing attention and research in various nanoparticle applications. Nanoparticles have been used for a variety of purposes in different departments including but not limited to cosmetics, food, machinery, and chemical. A highly sought-after field to use nanoparticles, especially natural or artificial silver nanoparticles (SNPs), is the utilization of their significant antimicrobial properties in daily items such as fabrics, indoor air filters, and, water filtration units where abundant bacterial and fungal growth are inevitable. These applications of SNPs, however, have enabled continuous human exposure and hence paved the way for potential SNP toxicity depending on exposure method and particle size. This potential toxicity has led to researches on safer antimicrobial solutions to be utilized in textile and filtration. In this context, products of natural origin have gained expanding interest due to their eco-friendly, cost-effective, and biologically safe properties along their promising antibacterial and antifungal activities. Natural product-applied fabrics and filters have been shown to be comparable to those that are SNP-treated in terms of ease production, material durability, and antimicrobial efficiency. This article summarizes and assesses the current state of in vitro and in vitro toxicity of SNPs and discusses the potential of natural products as an alternative.

Disease inducing material ; Zinc Oxide nanowire detection (질병 유발 독성 물질(산화아연 나노선) 검출 기술 개발)

  • You, Juneseok;Park, Jinsung;Jang, Kwewhan;Lee, Sangmyung;Na, Sungsoo
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
    • /
    • 2014.04a
    • /
    • pp.81-82
    • /
    • 2014
  • Recently it is often reported about toxic nanomaterials to organisms. In other words, it is called nanotoxicity, toxic nanomaterials have extremely toxic properties. Zinc oxide is widely used as a promising nanomaterials, but some researchers are warning that nanotype zinc oxide has nanotoxicity. One of typical zinc oxide materials is a zinc oxide nanowire, especially, there is no technique which is detecting a zinc oxide nanowire because of its geometric. In here, we use reduced graphene oxide in order to detect zinc oxide nanowire and use DNA immobilized cantilever sensor, we detect graphene wrapped zinc oxide nanowire. Detection of a zinc oxide nanowire is measured by shifting of cantilever's resonance frequency based on vibration theory. It is proved that cantilever sensor is valid for nanomaterial detection. We showed that detection of a zinc oxide nanowire is successful.

  • PDF