• Title/Summary/Keyword: Toxic Plants

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Anti-cancer Activity of Korean Local Plant Extracts Inducing Apoptosis in Various Carcinoma Cells (암세포 특이적 세포 사멸을 유도하는 자생식물 추출물의 항암 효과)

  • Yoon, Yi-Kwan;Lee, Seung-Eun;Lee, Dong-Jin;Rho, Mun-Chual;Sung, Jung-Suk;Park, Chung-Berm;Jang, Young-Joo
    • Korean Journal of Pharmacognosy
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    • v.40 no.1
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    • pp.6-12
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    • 2009
  • Thirty five methanol extracts from 19 natural local plants, which have been used as traditional anti-cancer medicine, were prepared. They were analyzed the cytotoxic effects on primary fibroblast cells and carcinoma cells. The root extract of Solanum nigrum were highly toxic in both cell lines with $IC_{50}$ values of less than $0.01{\mu}g/{\mu}l$, and 26 of 35 extracts were toxic in all cells with $IC_{50}$ values of $0.1{\sim}2{\mu}g/{\mu}l$. Three extracts including the fruit extracts of Solanum nigrum and Morus alba had no cytotoxic activity in both cell lines. Five of 35 extracts were highly toxic in cancer cells than in primary cells. Because primary cells were more resistant on these extracts, the five extracts were selected for anti-cancer agent candidates. Apoptosis or programmed cell death has an essential role in chemotherapy-induced tumor cell killing. Recently, inducers of apoptosis have been used in cancer therapy. When two of 5 cancer cell-specific cytotoxic extracts (Ulmus parvifolia and Zelkova serrata) were treated in concentration of $0.02{\sim}0.1{\mu}g/{\mu}l$, apoptosis were increased at 3-5 times in cancer cell lines. Finally, the apoptotic effects of these extracts were confirmed by cleavages of both poly-(ADP-ribose)-polymerase and caspase-3 as apoptotic markers. In this report, we suggested that two of 35 medicinal herb extracts can be useful anti-cancer drug candidates inducing apoptosis in several carcinoma cell lines.

The Effect of Poncirin on Hexavalent chromium in NIH3T3 Fibroblasts in Vitro (배양 섬유모세포에서 6가 크롬의 세포독성에 대한 Poncirin의 영향)

  • Jeon, Sung-Woo;Yang, Seung-Jin;Choi, Byung-Nam;Suk, Seung-Han;Hong, Gi-Yun;Song, Ho-Joon;Han, Du-Suk
    • The Korea Journal of Herbology
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    • v.21 no.1
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    • pp.101-107
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    • 2006
  • Objectives : It is well known that hexavalent chromium has toxic effect on normal cells. Recently, toxic effect of hexavalent chromium is diminished by the some extracts derived from herbs or plants. But, the toxic or protective mechanism of hexavalent chromium is well unknown. This study was performed to examine the protective effect of poncirin against $Na_2Cr_2O_7$-induced cytotoxicity on NIH3T3 fibroblasts. Methods : The protective effect of the cytotoxicity induced by $Na_2Cr_2O_7$ was measured by the cell viability after NIH3T3 fibroblasts were cultured with or without $Na_2Cr_2O_7$ for 48 hours. Antitoxic effects of poncirin on the cytotoxicity induced by $Na_2Cr_2O_7$ were examined by colorimetric assays such as MTT or XTT assay. Results : $Na_2Cr_2O_7$ decreased cell viability by the decreased absorbance in MTT or XTT assay, but, the poncirin increased cell viability which was decreased by $Na_2Cr_2O_7$-induced cytotoxicity on NIH3T3 fibroblasts. Conclusion : These results suggest that $Na_2Cr_2O_7$ showed cytotoxicity effect on NIH3T3 fibroblasts by the decrease of cell viavility, and poncirin was effective in the protection of $Na_2Cr_2O_7$-induced cytotoxicity in these cultures.

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Status of reports of adverse events related to botanical herbal medicines with toxic precautions officially managed by Korean government: A descriptive analysis from WHO VigiAccess (WHO VigiAccess에 수록된 식물성 독성주의한약재 관련 이상사례 보고 현황)

  • Mikyung Kim
    • The Journal of Korean Medicine
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    • v.45 no.1
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    • pp.165-181
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    • 2024
  • Objectives: This study was aimed to review the global status of adverse event (AE) reports and the characteristics of the reported AEs of plants managed as herbal medicines (HMs) with toxic precautions in Korea. Methods: This is a cross-sectional quantitative study that analyzed information available through VigiAccess, a website that provides summarized statistical information from the WHO's global AE database to the public. VigiAccess was searched in 8 Jan, 2024. Information on the total number of reports, number of reports by year and continent, and the age and gender of patients were obtained, and the types of frequently reported AEs were also reviewed. Results: Data on the status of report submissions were obtained for a total of 9 HMs including Aconitum ciliare, Aconitum carmichaeli, Arisaema japonicum, Pinellia ternata, Euphorbiae Lathyridis, Croton tiglium, Strychni Ignatii, Strychnons nux-vomica, and Linum usitatissimum. The number of reports per HM was from 1 to 137. The most commonly reported type of AEs were gastrointestinal disorders in most of the HMs, followed by neurological disorders. Serious adverse events were reported only in Strychni Ignatii, Strychnons nux-vomica, and Linum usitatissimum, including one case of death. Conclusions: This study shows the status of reported AEs of botanicals considered as HMs with toxic precautions in Korea based on real world data. However, when interpreting the findings of this study, readers should consider the significant limitations of this study mainly because of the characteristics of the data source.

Effects of Organic Matter Concentration in Soil on Phytoavailability of Cadmium in Medicinal Plants

  • Noh, Yong-dong;Kim, Kwon-Rae;Kim, Won-Il;Jung, Ki-Yuol;Hong, Chang Oh
    • Korean Journal of Soil Science and Fertilizer
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    • v.48 no.5
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    • pp.319-325
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    • 2015
  • The safety of plant species used as a source for herbal medicines and dietary supplements has recently been questioned due to poisonings associated with the presence of cadmium (Cd) in these plants. These plants can derive Cd from their presence in the soil. Organic matter (OM) concentrations in soils could affect the availability of Cd for plants. To determine the effect of OM concentration in soil on the concentration of plant available Cd and uptake of this toxic element by medicinal plants, soil and plant samples were collected from 102 fields supporting for 5 species of medicinal plants in 6 province of South Korea. Concentrations of OM and dissolved organic carbon (DOC) in soils affected the phytoavailability of Cd. One M $NH_4OAc$ extractable Cd concentration in soil increased with increasing OM concentrations. There were significantly positive relationships between 1 M $NH_4OAc$ extractable Cd concentration and OM concentration in soil and between 1 M $NH_4OAc$ extractable Cd concentration and DOC concentration. Likewise, OM and DOC concentrations significantly affected Cd concentration in medicinal plant soils. Cadmium concentration in medicinal plants increased with increasing OM concentration in soil [Cd concentration $(mg\;kg^{-1})= 0.179+1.424{\times}10^{-3}$ OM concentrations, $R^2=0.042*$] and with DOC concentration [Cd concentration $(mg\;kg^{-1})= 0.150+5.870{\times}10^{-4}$ DOC concentrations, $R^2=0.124***$]. These results might result from Cd-DOC complex which is easily absorbed Cd form by plant root. Dissolved organic carbon concentration had more positive relationship with Cd concentration in medicinal plants and 1 M $NH_4OAc$ extractable Cd concentration in soils than OM. Cadmium concentration in all 5 species of medicinal plant (Atractylodes macrocephala Koidzumi, Astragalus membranaceus, Codonopsis lanceolata, Platycodon grandiflorum, and Rehmannia glutinosa) significantly increased with increasing DOC concentration in soil. From the above results, formation of Cd-DOC complex caused by OM application might be mainly attributed to increase in Cd concentration in medicinal plants.

Probabilistic Safety Assessment of Gas Plant Using Fault Tree-based Bayesian Network (고장수목 기반 베이지안 네트워크를 이용한 가스 플랜트 시스템의 확률론적 안전성 평가)

  • Se-Hyeok Lee;Changuk Mun;Sangki Park;Jeong-Rae Cho;Junho Song
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.36 no.4
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    • pp.273-282
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    • 2023
  • Probabilistic safety assessment (PSA) has been widely used to evaluate the seismic risk of nuclear power plants (NPPs). However, studies on seismic PSA for process plants, such as gas plants, oil refineries, and chemical plants, have been scarce. This is because the major disasters to which these process plants are vulnerable include explosions, fires, and release (or dispersion) of toxic chemicals. However, seismic PSA is essential for the plants located in regions with significant earthquake risks. Seismic PSA entails probabilistic seismic hazard analysis (PSHA), event tree analysis (ETA), fault tree analysis (FTA), and fragility analysis for the structures and essential equipment items. Among those analyses, ETA can depict the accident sequence for core damage, which is the worst disaster and top event concerning NPPs. However, there is no general top event with regard to process plants. Therefore, PSA cannot be directly applied to process plants. Moreover, there is a paucity of studies on developing fragility curves for various equipment. This paper introduces PSA for gas plants based on FTA, which is then transformed into Bayesian network, that is, a probabilistic graph model that can aid risk-informed decision-making. Finally, the proposed method is applied to a gas plant, and several decision-making cases are demonstrated.

Identification of Transition Characteristics and Bio-concentration Factors of Heavy Metal (loid)s in the Selected Perennial Root Medicinal Plants

  • Kim, Won-Il;Noh, Hyun Myung;Hong, Chang-Oh;Kim, Da-Young;Kim, Kwon-Rae;Oh, Kyeong-Seok;Moon, Byeong-Churl;Kim, Ji-Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.50 no.4
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    • pp.251-258
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    • 2017
  • This study was conducted to identify transition characteristics of arsenic (As), cadmium (Cd), and lead (Pb) and to calculate bio-concentration factors (BCF) in the three perennial root medicinal plants, namely Codonopsis lanceolata (Deoduck), Platycodon grandiflorum (Balloon flower) and Panax ginseng (Korean ginseng) grown in major medicinal plant producing districts in Korea. Average BCF values ranged from 0.009~0.029 in As, 0.334~1.453 in Cd, and 0.021~0.023 in Pb in three perennial root medicinal plants. The BCF values increased in the order of ginseng (0.029) > deodeok (0.012) > balloon flower (0.009) for As, balloon flower (1.453) > deodeok (0.685) > ginseng (0.334) for Cd, and ginseng (0.023) > deodeok (0.022) > balloon flower (0.021) for Pb. The BCF values calculated in this study will be useful for predicting the uptake of heavy metal (loid)s. Further study on uptake and accumulation mechanism of toxic metal (loid)s by agricultural products is required to assess the human health risk associated with soil contamination.

Influence of Metal Oxide Particles on Soil Enzyme Activity and Bioaccumulation of Two Plants

  • Kim, Sunghyun;Sin, Hyunjoo;Lee, Sooyeon;Lee, Insook
    • Journal of Microbiology and Biotechnology
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    • v.23 no.9
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    • pp.1279-1286
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    • 2013
  • Particle size and metal species are important to both soil microbial toxicity and phytotoxicity in the soil ecosystem. The effects of CuO and ZnO nanoparticles (NPs) and microparticles (MPs) on soil microbial toxicity, phytotoxicity, and bioaccumulation in two crops (Cucumis sativus and Zea mays) were estimated in a soil microcosm. In the microcosm system, soil was artificially contaminated with 1,000 mg/kg CuO and ZnO NPs and MPs. After 15 days, we compared the microbial toxicity and phytotoxicity by particle size. In addition, C. sativus and Z. mays were cultivated in soils treated with CuO NPs and ZnO NPs, after which the treatment effects on bioaccumulation were evaluated. NPs were more toxic than MPs to microbes and plants in the soil ecosystem. We found that the soil enzyme activity and plant biomass were inhibited to the greatest extent by CuO NPs. However, in a Biolog test, substrate utilization patterns were more dependent upon metal type than particle size. Another finding indicated that the metal NP uptake amounts of plants depend on the plant species. In the comparison between C. sativus and Z. mays, the accumulation of Cu and Zn by C. sativus was noticeably higher. These findings show that metal oxide NPs may negatively impact soil bacteria and plants. In addition, the accumulation patterns of NPs depend on the plant species.

Transgenic Strategy to Improve Stress Resistance of Crop Plants

  • Horvath, Gabor V.;Oberschall, Attila;Deak, Maria;Sass, Laszlo;Vass, Imre;Barna, Balazs;Kiraly, Zoltan;Hideg, Eva;Feher, Attila
    • Journal of Plant Biotechnology
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    • v.1 no.1
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    • pp.61-68
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    • 1999
  • Rapid accumulation of reactive oxygen species (ROS) and their toxic reaction products with lipids and proteins significantly contributes to the damage of crop plants under biotic and abiotic stresses. We have identified several stress activated alfalfa genes, including the gene of the alfalfa ferritin and a novel NADPH-dependent aldose/aldehyde reductase enzyme. Transgenic tobacco plants that synthesize alfalfa ferritin in vegetative tissues-either in its processed form in chloroplast or in the cytoplasmic non-processed form-retained photosynthetic function upon free radical toxicity generated by paraquat treatment and exhibited tolerance to necrotic damage caused by viral and fungal infections. We propose that by sequestering intracellular iron involved in generation of the very reactive hydroxyl radicals through a Fenton reaction, ferritin protects plant cells from oxidative damage. Our preliminary results with the other stress-inducable alfalfa gene (a NADPH-dependent aldo-keto reductase) indicate, that the encoded enzyme may play role in the stress response of the plant cells. These studies reveal new pathways in plants that can contribute to the increased stress resistance with a potential use in crop improvement.

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Allelopathic Effects of Medicinal Plants on Echinoclhoa crus-galli Beauv. (약용작물의 Allelopathy 효과에 관한 연구)

  • Kim, Sang-Yeol;Kim, Chil-Ryong;Park, Sung-Tae;Kim, Soon-Chul
    • Korean Journal of Weed Science
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    • v.17 no.4
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    • pp.407-412
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    • 1997
  • Allelopathic activity of methanol extract from medicinal plants was determined based on the inhibition of germination, shoot and root length of Echinochloa crus-galli. The response was depended on the source of extracts and concentrations. Of the 20 test plants tested, Cnidium officinale showed most inhibition according to germination, shoot and root length of E. crus-galli. Based on the plant parts, the root extract of C. officinale had more inhibitory effect on E. crus-galli than the stem+leaf extract. Phytotoxic effects of the root extract on E. crus-galli showed 75% inhibition of seed germination, 95% inhibition of shoot growth, and 100% inhibition of root growth at the concentration of 1g/petridish. Sequential partitioning of root extract with organic solvents with increasing polarity showed that the ethylacetate fraction had the greatest inhibitory effect on E. crus-galli. Germination was not inhibited at any rate of ethylacetate fraction but shoot and root growth, were significantly inhibited even at 2mg/petridish. This indicates that the most toxic phytotoxin present in the root extract may be moderate polar compound.

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Bacterial Exopolysaccharides: Insight into Their Role in Plant Abiotic Stress Tolerance

  • Bhagat, Neeta;Raghav, Meenu;Dubey, Sonali;Bedi, Namita
    • Journal of Microbiology and Biotechnology
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    • v.31 no.8
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    • pp.1045-1059
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    • 2021
  • Various abiotic stressors like drought, salinity, temperature, and heavy metals are major environmental stresses that affect agricultural productivity and crop yields all over the world. Continuous changes in climatic conditions put selective pressure on the microbial ecosystem to produce exopolysaccharides. Apart from soil aggregation, exopolysaccharide (EPS) production also helps in increasing water permeability, nutrient uptake by roots, soil stability, soil fertility, plant biomass, chlorophyll content, root and shoot length, and surface area of leaves while also helping maintain metabolic and physiological activities during drought stress. EPS-producing microbes can impart salt tolerance to plants by binding to sodium ions in the soil and preventing these ions from reaching the stem, thereby decreasing sodium absorption from the soil and increasing nutrient uptake by the roots. Biofilm formation in high-salinity soils increases cell viability, enhances soil fertility, and promotes plant growth and development. The third environmental stressor is presence of heavy metals in the soil due to improper industrial waste disposal practices that are toxic for plants. EPS production by soil bacteria can result in the biomineralization of metal ions, thereby imparting metal stress tolerance to plants. Finally, high temperatures can also affect agricultural productivity by decreasing plant metabolism, seedling growth, and seed germination. The present review discusses the role of exopolysaccharide-producing plant growth-promoting bacteria in modulating plant growth and development in plants and alleviating extreme abiotic stress condition. The review suggests exploring the potential of EPS-producing bacteria for multiple abiotic stress management strategies.