• 제목/요약/키워드: nanoparticles toxicity

검색결과 129건 처리시간 0.026초

금나노 물질이 북방산개구리에 미치는 영향 (Effects of Gold Nanoparticles on eggs and tadpoles of Rana dybowskii)

  • 김은지;고원배;한얼;김호진;고정원;정훈
    • 한국습지학회지
    • /
    • 제17권4호
    • /
    • pp.407-413
    • /
    • 2015
  • 나노물질이 포함된 다양한 제품들이 증가하고 있으며, 나노물질의 수생태계 노출에 대해서는 불가피하다. 따라서 우리는 금나노입자를 이용하여 국내 다양한 습지 환경에 널리 서식하는 북방산개구리에 대한 독성평가(부화율, 바디컨디션, 행동학적민감도)를 해보았다. 행동학적 민감도는 포식자 회피반응 정도를 이용하여 Ethvision XT 9으로 측정하였다. 금나노입자에 대한 부화율과 STL의 독성은 나타나지 않았다. 하지만 금나노입자에 노출된 올챙이들은 외부자극에 대한 행동학적 민감도가 감소하였다. 이러한 결과는 실험대상 동물의 행동학적 특성을 이용한 새로운 독성평가 방식을 제시한다.

Antimicrobial Fiber Products Treated with Silica Hybrid Ag Nanoparticles

  • Kim, Hwa-Jung;Park, Hae-Jin;Choi, Seong-Ho;Park, Hae-Jun
    • 방사선산업학회지
    • /
    • 제6권3호
    • /
    • pp.273-279
    • /
    • 2012
  • Silica hybrid silver nanoparticles showing the strong antimicrobial activity, in which nano-silver is bound to silica molecules, has been synthesized using ${\gamma}-irradiation$ at room temperature. The present study relates to an antimicrobial composition for coating fiber products comprising silica hybrid silver nanoparticles. In this study, we describe antimicrobial fiber products coated with the silica hybrid silver nanoparticles and a method of antimicrobially treating fiber products by coating the fiber products with the silica hybrid silver nanoparticles. The antimicrobial fiber products exhibited excellent antimicrobial effects. In detailed practice, when the present composition comprising nanosized silica-silver was applied to a cloth (fabric) in a concentration of $6.4mg\;yard^{-1}$, the viable cell number decreased to less than 10 cells before and after laundering, resulting in a reduction of 99.9% or greater in the viable cell number. The present composition displays long-lasting potent disinfecting effects on bacteria. Also, we investigated the toxicity of silica hybrid silver nanoparticles in rats. The skin of rats was treated with a 30 ppm nanoparticles solution ($2ml\;Kg^{-1}$) for 8 days. No toxicity was detected in the treatment. These results suggest that the fiber products coated with the silica hybrid silver nanoparticles can be used to inhibit the growth of various microorganisms.

In vivo Genotoxicity of Silver Nanoparticles after 90-day Silver Nanoparticle Inhalation Exposure

  • Kim, Jin-Sik;Sung, Jae-Hyuck;Ji, Jun-Ho;Song, Kyung-Seuk;Lee, Ji-Hyun;Kang, Chang-Soo;Yu, Il-Je
    • Safety and Health at Work
    • /
    • 제2권1호
    • /
    • pp.34-38
    • /
    • 2011
  • Objectives: The antimicrobial activity of silver nanoparticles has resulted in their widespread use in many consumer products. Yet, despite their many advantages, it is also important to determine whether silver nanoparticles may represent a hazard to the environment and human health. Methods: Thus, to evaluate the genotoxic potential of silver nanoparticles, in vivo genotoxicity testing (OECD 474, in vivo micronuclei test) was conducted after exposing male and female Sprague-Dawley rats to silver nanoparticles by inhalation for 90 days according to OECD test guideline 413 (Subchronic Inhalation Toxicity: 90 Day Study) with a good laboratory practice system. The rats were exposed to silver nanoparticles (18 nm diameter) at concentrations of $0.7\;{\times}\;10^6$ particles/$cm^3$ (low dose), $1.4\;{\times}\;10^6$ particles/$cm^3$ (middle dose), and $2.9\;{\times}\;10^6$ particles/$cm^3$ (high dose) for 6 hr/day in an inhalation chamber for 90 days. The rats were killed 24 hr after the last administration, then the femurs were removed and the bone marrow collected and evaluated for micronucleus induction. Results: There were no statistically significant differences in the micronucleated polychromatic erythrocytes or in the ratio of polychromatic erythrocytes among the total erythrocytes after silver nanoparticle exposure when compared with the control. Conclusion: The present results suggest that exposure to silver nanoparticles by inhalation for 90 days does not induce genetic toxicity in male and female rat bone marrow in vivo.

Effects of Platinum Nanoparticles on the Postnatal Development of Mouse Pups by Maternal Exposure

  • Park, Eun-Jung;Kim, He-Ro;Kim, Young-Hun;Park, Kwang-Sik
    • Environmental Analysis Health and Toxicology
    • /
    • 제25권4호
    • /
    • pp.279-286
    • /
    • 2010
  • Objectives : Platinum nanoparticles (PNPs) are potentially useful for sensing, catalysis, and other applications in the biological and medical sciences. However, little is known about PNP toxicity. In this study, adverse effects of PNPs on the postnatal development of mouse pubs were investigated. Methods : PNPs (size: 20 nm) were prepared and orally administered to mice during premating, gestation, and lactation periods (0.25 mg/kg, 0.5 mg/kg, and 1 mg/kg). Maternal and pup toxicity were evaluated. Results : PNPs did not affect blood biochemical parameters or mortality in dams during the experimental period. Histopathological signs were not observed and pup number was not different between the control and treated groups. Deformity and stillbirth were not observed in the pups. However, PNPs increased pup mortality and decreased the infant growth rate during the lactation period. Conclusion : PNPs may have adverse effects to the postnatal development of mouse pups.

Toxicity of nanoparticles_ challenges and opportunities

  • Ramanathan, Amall
    • Applied Microscopy
    • /
    • 제49권
    • /
    • pp.2.1-2.11
    • /
    • 2019
  • Nanomaterials (NMs) find widespread use in different industries that range from agriculture, food, medicine, pharmaceuticals, and electronics to cosmetics. It is the exceptional properties of these materials at the nanoscale, which make them successful as growth promoters, drug carriers, catalysts, filters and fillers, but a price must be paid via the potential toxity of these materials. The harmful effects of nanoparticles (NPs) to environment, human and animal health needs to be investigated and critically examined, to find appropriate solutions and lower the risks involved in the manufacture and use of these exotic materials. The vast number and complex interaction of NM/NPs with different biological systems implies that there is no universal toxicity mechanism or assessment method. The various challenges need to be overcome and a number of research studies have been conducted during the past decade on different NMs to explore the possible mechanisms of uptake, concentrations/dosage and toxicity levels. This review article examines critically the recent reports in this field to summarize and present opportunities for safer design using case studies from published literature.

Toxicity evaluation based on particle size, contact angle and zeta potential of SiO2 and Al2O3 on the growth of green algae

  • Karunakaran, Gopalu;Suriyaprabha, Rangaraj;Rajendran, Venkatachalam;Kannan, Narayanasamy
    • Advances in nano research
    • /
    • 제3권4호
    • /
    • pp.243-255
    • /
    • 2015
  • In this investigation, ecotoxicity of nano and micro metal oxides, namely silica ($SiO_2$) and alumina ($Al_2O_3$), on the growth of green algae (Porphyridium aerugineum Geitler) is discussed. Effects of nano and micro particles on the growth, chlorophyll content and protein content of algae are analysed using standard protocols. Results indicate that $SiO_2$ nano and micro $SiO_2$ particles are non-toxic to P. aerugineum Geitler up to a concentration of 1000 mg/L. In addition, $Al_2O_3$ microparticles are less toxic to P. aerugineum Geitler, whereas $Al_2O_3$ nanoparticles are found to be highly toxic at 1000 mg/L. Moreover, $Al_2O_3$ nanoparticles decrease the growth, chlorophyll content, and protein content of tested algae. In addition, zeta potential and contact angle are also important in enhancing the toxicity of metal oxide nanoparticles in aquatic environment. This study highlights a new insight into toxicity evaluation of nanoparticles on beneficial aquatic organisms such as algae.

Preparation and Cytotoxicity Comparison of Type A Gelatin Nanoparticles with Recombinant Human Gelatin Nanoparticles

  • Won, Young-Wook;Kim, Yong-Hee
    • Macromolecular Research
    • /
    • 제17권7호
    • /
    • pp.464-468
    • /
    • 2009
  • Gelatin nanoparticles derived from bovine or porcine have been developed as various types of drug delivery system, and they need to be cross-linked to maintain their physicochemical properties in aqueous environments. Although gelatin is a widely used material in pharmaceutical industries, the safety issue of animal-origin gelatins, such as transmissible mad cow disease and anaphylaxis, remains to be solved. The purpose of this study was to prepare type A gelatin (GA) nanoparticles by modified, two-step, desolvation method and compare the toxicity of the resulting GA nanoparticles with recombinant human gelatin (rHG) nanoparticles. The GA nanoparticles were characterized, and drug loading and release pattern were measured. FITC-BSA, a model protein, was efficiently loaded in the nanoparticles and then released in a biphasic and sustained release pattern without an initial burst. In particular, the cell viability of the GA nanoparticles was less than that of the rHG nanoparticles. This finding suggests that rHG nanoparticles should be considered as an alternative to animal-origin gelatin nanoparticles in order to minimize the safety problems.

Comparative Toxicity Studies of Ultra-Pure Ag, Au, Co, and Cu Nanoparticles Generated by Laser Ablation in Biocompatible Aqueous Solution

  • Kim, Yea-Seul;Kim, Kuk-Ki;Shin, Seon-Mi;Park, Seung-Min;Hah, Sang-Soo
    • Bulletin of the Korean Chemical Society
    • /
    • 제33권10호
    • /
    • pp.3265-3268
    • /
    • 2012
  • Nanoparticles (NPs) are increasingly used in consumer products, which have aroused many concerns and debates regarding their fate in biological systems from a point of their safety/toxicity. Although a number of studies on the biological effects of NPs have been published, these are often complicated by the possible toxicity of conventional NPs, caused by contamination with chemical precursors or additives during their synthesis and/or purification procedures. To explicitly understand the toxicity basis of NPs, it is necessary to directly address a main problem related to their intrinsic/inherent toxicity and/or incompatibility with biological objects. The present study is designed to take advantage of a novel laser-assisted method called laser ablation to generate Ag, Au, Co, and Cu NPs in biocompatible aqueous solution, and to evaluate the toxicity of the resulting ultra-pure NPs. Our results show that the ultra-pure NPs with nascent surfaces possess moderate cytotoxicity to human cells in a cell-dependent manner.

Increased Gene Expression in Cultured BEAS-2B Cells Treated with Metal Oxide Nanoparticles

  • Park, Eun-Jung;Park, Kwang-Sik
    • Toxicological Research
    • /
    • 제25권4호
    • /
    • pp.195-201
    • /
    • 2009
  • Recent publications showed that metal nanoparticles which are made from $TiO_2,\;CeO_2,\;Al_2O_3,\;CuCl_2,\;AgNO_3$ and $ZnO_2$ induced oxidative stress and pro-inflammatory effects in cultured cells and the responses seemed to be common toxic pathway of metal nanoparticles to the ultimate toxicity in animals as well as cellular level. In this study, we compared the gene expression induced by two different types of metal oxide nanoparticles, titanium dioxide nanoparticles (TNP) and cerium dioxide nanoparticles (CNP) using microarray analysis. About 50 genes including interleukin 6, interleukin 1, platelet-derived growth factor $\beta$, and leukemia inhibitory factor were induced in cultured BEAS2B cells treated with TNP 40 ppm. When we compared the induction levels of genes in TNP-treated cells to those in CNP-treated cells, the induction levels were very correlated in various gene categories (r=0.645). This may suggest a possible common toxic mechanism of metal oxide nanoparticles.

An Image Cytometric MTT Assay as an Alternative Assessment Method of Nanoparticle Cytotoxicity

  • Lee, Song Hee;Park, Jonghoon;Kwon, Dongwook;Yoon, Tae Hyun
    • Bulletin of the Korean Chemical Society
    • /
    • 제35권7호
    • /
    • pp.1933-1938
    • /
    • 2014
  • Despite increasing importance of in vitro cell-based assays for the assessment of nanoparticles (NPs) cytotoxicity, their suitability for the assessment of NPs toxicity is still in doubt. Here, limitations of widely used cell viability assay protocol (i.e., MTT asssay) for the cytotoxicity assessment of P25 $TiO_2$ NPs were carefully examined and an alternative toxicity assessment method to overcome these limitations was proposed, where the artifacts caused by extracellularly formed formazan and light scattered by agglomerated NPs were minimized by measuring only the intracellular formazan via image cytometric methods.