• Title/Summary/Keyword: 나노 독성

Search Result 156, Processing Time 0.02 seconds

Trend of Multigenerational Transfer and Toxicity Studies Using Nanomaterials (나노물질을 이용한 다세대전이 및 독성 연구 추세)

  • Moon, Jongmin;An, Youn-Joo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.38 no.7
    • /
    • pp.395-401
    • /
    • 2016
  • Nano-saftey has become an emerging issue recently, because of the broad use of nanomaterials in nano-industries and commercial areas. For a sustainable development in the nano-industry, active studies on nano-safety should be executed, especially on the potential risks in engineered nanomaterials (ENMs). Although acute and chronic assessments of nanomaterials have been extensively studied in many studies, multigenerational studies are very scarce. Overall, multigenerational studies have progressed as two different trends, studying post-generational effects or trans-generation effects. This study intended to suggest further nano-safety studies based on the trends and limitations of current ones. Through a comparative analysis, we investigated peer-reviewed multigenerational studies that used nanomaterials. Thirteen studies on post-generation effects confirmed generational nano-toxicity via several bioassays, such as mortality, fertility, and behavioral assays. Seven studies on trans-generation effects demonstrated nanomaterial pathways to next generations, using imaging techniques. Until now, mechanisms for post-generational nano-toxicity has been rarely proposed. Thus, we propose that complementary studies on such mechanisms are imperative for future studies.

Acute/Subacute Toxicity of Nano Calcium (나노 칼슘의 급성/아급성 안전성 평가)

  • Jung, Eun Young;Suh, Hyung Joo
    • Journal of the Korean Society of Food Science and Nutrition
    • /
    • v.44 no.1
    • /
    • pp.29-34
    • /
    • 2015
  • The objective of this study was to obtain data on the safety-in-use of nano calcium as a dietary supplement by assessing its acute and subacute oral toxicities in female and male Sprague-Dawley rats. A single oral dose of 5,000 mg/kg of nano calcium did not result in mortality or significant changes in the general behavior and gross appearance of the internal organs of rats. For subacute toxicity study, nano calcium was administered orally at a dose of 1,000 mg/kg daily for 14 days. There were no significant differences in organ weights between control and treated groups of both sexes. Hematological analysis and blood chemistry revealed no toxic effects of nano calcium. Pathologically, neither gross abnormalities nor histopathological changes were observed. These results show that nano calcium possesses very low toxicity as indicated in a rat model.

State-of-the-Art of Nanotechnology-based Food Products : Toxicity and Risk Assessment(II) (총설 - 나노기술을 적용한 식품의 독성 및 위해성평가 현황(II))

  • Chun, Hyang-Sook;Chang, Hyun-Joo;Ko, Sang-Hoon;Oh, Il-Ung
    • Bulletin of Food Technology
    • /
    • v.24 no.3
    • /
    • pp.308-324
    • /
    • 2011
  • 나노기술을 식품에 응용하게 되면 영양소의 전달, 식품의 색, 향미, 물성 등이 향상되고 식품 포장재나 분석에 응용하는 경우 저장성 증진이나 시료 전처리 효율 및 기기 감도를 증가시키는 것으로 알려지고 있다. 이러한 장점으로 인해 유기 및 무기 나노입자, 나노섬유, 나노에멀전, 나노크레이 등의 나노물질을 식품첨가물, 건강기능소재, 식품 접촉물질 등으로 응용하는 시도가 식품산업계에서 급속히 확산되고 있다. 나노물질의 사용범위가 다양해질수록 나노물질의 환경 및 인체 노출가능성은 높아지게 된다. 그러나 아직 나노물질의 독성 및 위해성에 대해서는 초기 단계 수준의 연구가 진행되고 있는 정도이다. 또한 나노기술의 위험 평가에 대한 신뢰성이 제고될 수 있도록 나노물질에 대한 유해성 자료의 생산뿐만 아니라 나노물질의 물리화학적 특성과 노출량을 측정할 수 있는 적절한 측정수단이 확립되어야 한다. 나아가 식품에 나노기술의 적용으로 인한 이익은 최대화하고 부작용은 최소화하여 소비자의 건강을 보호하기 위해 식품나노물질의 생산, 가공, 유통, 소비, 폐기 등에 관한 전 생애(lifecycle) 평가 및 관리가 이루어지도록 적절한 제도적 장치가 마련되어야 한다.

  • PDF

Microcosm Studies of Nanomaterials in Water and Soil Ecosystems (수생태 및 토양생태계에서 나노물질의 마이크로코즘 연구)

  • Yoon, Sung-Ji;An, Youn-Joo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.34 no.4
    • /
    • pp.288-294
    • /
    • 2012
  • The current growth of nano-industries has resulted in released nanoparticles entering into water and soil ecosystems via various direct or indirect routes. Physicochemical properties of nanoparticles differ from bulk materials, and nanomaterials influence the fates of nanoparticles and the interactions of living or non-living things in the environment. Microcosm analysis is a research methodology for revealing natural phenomena by mimicking part of an ecosystem under controlled conditions. Microcosm study allows for the integrated analysis of toxic effects and fates of nanoparticles in the ecosystem. Ecotoxicity studies of nanomaterials are steadily increasing, and microcosm studies of nanomaterials are currently beginning to surface. In this study, microcosm studies of nanomaterials in water and soil ecosystems were extensively investigated based on SCI(E) papers. We found that the microcosm studies have been reported in 12 instances, and mesocosm studies have been reported in only once until now. Advanced research was mostly evaluated at the microorganism level. But integrated analysis of nanotoxicity is required to research the interactions based of various species. Thus, our studies analysed the trend of microcosm studies on nanomaterials in water and soil ecosystems and suggested future directions of microcosm research of nanomaterials.

Current Status and Prospect of Nanopowder Technology (나노분말 기술의 현황 및 전망)

  • Park, Jong-Ku
    • Proceedings of the Korean Society of Toxicology Conference
    • /
    • 2005.05a
    • /
    • pp.27-39
    • /
    • 2005
  • 나노기술은 21세기 초반 첨단산업을 이끌어갈 핵심기술 중의 하나로 여러 나라들이 국가적인차원에서 전략적으로 개발하고 있다. 나노기술은 초정밀 가공기술, 원자 혹은 분자 단위의 조립(조합)기술, 소재공정기술 등의 기술 분야를 포함하며 나노스케일 영역에서 나노소재를 이용(제조 및 가공)하여 새로운 응용분야를 창출해내 거나 기존 산업을 더욱 고도화하는데 기여하는 기술이다. 나노소재는 금속, 세라믹, 고분자, 생체물질 등의 특정 물질 영역에 국한되지 않고 다양한 형태, 다양한 물성을 갖고 있으며 나노기술 구현에 있어서 직접적인 대상 혹은 중간매체에 해당한다. 따라서 나노소재기술은 대단히 광범위한 영역을 포함하는 나노기술의 바탕을 이루는 기반기술 또는 원천기술이라고 할 수 있다. 여러 형태의 나노소재 중에서 가장 저차원(0차원)의 물질에 해당하는 나노분말은 기술적으로 가장 실용화에 근접해 있으며 이미 많은 상용화 사례들이 나타나고 있다. 나노분말 기술은 기술 성숙도 측면에서 뿐만 아니라 확장성(유용성), 신규성(혁신성) 측면에서 대단한 가능성을 갖고 있기 때문에 향후 대단히 빠른 속도로 시장이 확대될 전망이다. 본 발표에서는 나노분말 기술의 개발 현황 및 전망에 대하여 언급하고자 한다.

  • PDF

Bioassessment of Nanoparticle Toxicity based on Seed Germination and Germination Index of Various Seeds (다양한 씨앗의 발아 및 발아지수에 근거한 나노입자 생물학적 독성평가)

  • Gu, Bon Woo;Lee, Min Kyeung;Shi, Yu Tao;Kong, In Chul
    • Clean Technology
    • /
    • v.21 no.1
    • /
    • pp.39-44
    • /
    • 2015
  • This study investigated the effects of six metal oxide nanoparticles (NPs: CuO, NiO, TiO2, Fe2O3, Co3O4, ZnO) on seed germination and germination index (G.I) for five types of seeds: Brassica napus L., Malva verticillata L., Brassica olercea L., Brassica campestris L., Daucus carota L. NPs of CuO, ZnO, NiO show significant toxicity impacts on seed activities [CuO (6-27 mg/L), ZnO (16-86 mg/L), NiO (48-112 mg/L)], while no significant effects were observed at > 1000 mg/L of TiO2, Fe2O3, Co3O4. Tested five types of seed showed different sensitivities on seed germination and root activity, especially on NPs of CuO, ZnO, NiO. Malva verticillata L. seed was highly sensitive to toxic metal oxide NPs and showed following EC50s : CuO 5.5 mg/L, ZnO 16.4 mg/L, NiO 53.4 mg/L. Mostly following order of toxicity was observed, CuO > ZnO > NiO > Fe2O3 ≈ Co3O4 ≈ TiO2, where slightly different toxicity order was observed for carrot, showing CuO > NiO ≈ ZnO > Fe2O3 ≈ Co3O4 ≈ TiO2.

Toxicity Analysis of Carbon Nanotubes Based on Their Physicochemical Properties (서로 다른 물리화학적 특성을 갖는 탄소나노튜브(CNT)의 생물학적 독성 분석)

  • Kim, Soo-Nam;Kang, Min-Sung;Han, Young-Ah;Kim, Jae-Hwan;Roh, Jin-Kyu;Kim, Young-Hun;Choi, Sang-Dun;Park, Eun-Jung
    • Clean Technology
    • /
    • v.17 no.3
    • /
    • pp.273-279
    • /
    • 2011
  • The physicochemical properties of manufactured nanomaterials can vary depending upon the methods of manufacture, although the utilized raw materials are same. Hence, the toxicity can also vary based on the methods of nanomaterials manufacture. In this study, we compared the toxicity effect of two types of CNTs (MWCNT, multi-walled carbon nanotube; SWCNT, single-walled carbon nanotube) that differ in length and wall number. In case of MWCNTs, inflammatory responses were more strongly induced in longer groups, whereas body weights more clearly decreased in shorter groups. SWCNT significantly decreased the relative weights of brain and kidney, and the inflow of immune cells and the hematological changes were observed significantly on day 1 and day 7 after exposure, respectively. Our results showed that the length and wall number of CNTs can serve as critical factors in the exhibited inflammation and toxicity.

Study on ZnO Nanoparticle Dispersions in Test Media Including Natural Organic Matter for Ecotoxicological Assessment (천연유기물을 포함한 산화아연 나노입자 분산배지의 생태독성평가 적용성 연구)

  • Park, Sun-Young;Kim, Kyung-tae;Shin, Yu-jin;Kim, Ji-eun;Lee, Jae-woo;Jo, Eunhye;Sung, Hwa kyung;Kim, Pil-je;Choi, Kyung-hee;Eom, Ig-chun
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.39 no.11
    • /
    • pp.634-640
    • /
    • 2017
  • Toxicity and fate assessment is necessary in the evaluation of the environmental, health and safety risks of engineered nanomaaterials (ENMs). Therefore, in order to ensure the reproducibility, reliability and relevance of ENMs toxicity results, stable and monomodal dispersion protocols in toxicity test media are needed. Zinc oxide nanoparticles (nZnO) are widely used in various products such as cosmetic products, paper, paints etc. In this study, nZnO dispersions in ecotoxicity test media were produced by following a series of steps of modified National Institute of Standards and Technology (NIST) Special publication 1200-5. In addition, natural organic matter (humic acid (HA)) was used as a stabilizing agent to disperse nZnO in the test media. The hydrodynamic diameters (HDD) of the nZnO in dispersion ranged between 150 and 200 nm according to the dynamic light scattering (DLS) measurement. Based on these dispersions in ecotoxicity test using ecological species (Oryzias latipes, Daphnia magna, Pseudokirchneriella subcapitata and Chironomusus riparius), dispersion protocol was found to have a considerable potential in ecotoxicity test of ENMs.

Removal of ZnO Nanoparticles in Aqueous Phase and Its Ecotoxicity Reduction (수계 내 ZnO 나노입자의 제거 및 생태독성 저감)

  • Kim, Hyunsang;Kim, Younghun;Kim, Younghee;Lee, Sangku
    • Clean Technology
    • /
    • v.22 no.2
    • /
    • pp.89-95
    • /
    • 2016
  • The nanotoxicity of ZnO nanoparticles used in cosmetics and tire industry is one of emerged issues. Herein, the removal of ZnO nanoparticles dispersed in aqueous phase and its ecotoxicity were investigated. In the short-term exposure for fertilized eggs (O. latipes), the deformity was observed at 5 mg L−1 of ZnO nanoparticles in some individuals and delayed hatching of eggs by retarded growth was observed at 10 mg L−1 of ZnO nanoparticles. This result show that ZnO nanoparticles have cytotoxic effect to the organisms lived in water phase. Therefore, herein, the removal of ZnO nanoparticles in aqueous phase by chemical precipitation was investigated. After addition of Na2S and Na2HPO4, the precipitated ZnO was transformed to ZnS and Zn3(PO4)2 particles, respectively. The removal efficiency of ZnO was reached to almost 100% for two cases. In addition, the toxicity tests about ZnS and Zn3(PO4)2 particles showed no acute toxicity for D. magna. This implies that transformation of ZnO to ZnS and Zn3(PO4)2 particles with very low ionization constant might decrease effectively the toxicity of ZnO.