• Title/Summary/Keyword: 약제 상호작용

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Herbicidal Efficacy of Bispyribac-sodium Combined with Other Herbicides for Annual Bluegrass(Poa annua L.) Suppression (새포아풀(Poa annua L.) 방제를 위한 Bispyribac-sodium과 타약제와의 혼합 상호작용)

  • Park, Nam-Il;Lee, In-Yong;Park, Jae-Eup;Kim, Ho-Jun;Chun, Jae-Chul;Ogasawara, Masaru
    • Asian Journal of Turfgrass Science
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    • v.21 no.1
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    • pp.39-49
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    • 2007
  • Bispyribac-sodium is a new-type herbicide that prevents the occurrence of annual bluegrass by the suppression of anthesis and inflorescence emergence on the bent green. The greenhouse experiment was conducted to investigate interaction effect of the bispyribac-sodium with 21 soil- and foliar-applied herbicides in regards of herbicidal activity of annual bluegrass. The remarkable synergism was not found on the combination of bispyribac-sodium with benfluralin, pendimethalin, oryzalin, siduron, chlorphtalim, isoxaben, bifenox, tenylchlor, indanofan, bentazone, imazosulfuron, imazaquin, halosulfuron-methyl and limsulfuron. However, mixture of bispyribac-sodium with mecoprop, triclopyr, metsulfuron-methyl, cyclosulfamuron, pyrazosulfuron-ethyl and pyributicarb produced greater synergism of herbicidal activity when compared with unmixed, single application. Phytotoxicity was low on bentgrass green and fast recovery was observed. In future, it would be strongly necessary to do research to Investigate the effect of bispyribac-sodium combination with other herbicides under various environment and management practices on-site bentgrass green.

Interpretation of Interaction of Herbicides on Principal Paddy Weeds - By Use of Oxyfluorfen and Bensulfuron-methyl Data - (주요(主要) 논 잡초종(雜草種)에 대한 제초제간(除草劑間)의 상호작용효과(相互作用效果) 해석연구(解析硏究) - Oxyfluorfen과 Bensulfuron을 예(例)로 -)

  • Han, J.H.;Guh, J.O.;Chon, S.U.;Kwon, O.D.
    • Korean Journal of Weed Science
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    • v.12 no.2
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    • pp.144-157
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    • 1992
  • The study was conducted to compare the interprete methods and examine the feasibility of mixture use of oxyfluorfen and bensulfuron in controlling principal Paddy weeds, annuals and perennials. Application ratio of both chemicals were obtained from the combinations of 5 levels(0, 5, 10, 15, 20 g ai/ha) of each chemicals, respectively. All the treatments were applied at 5 days after transplanting and water was maintained at 3.0cm in depth. Shoot fresh-weight of weeds was assessed at 35 days after treatments. Data obtained was analysed by Colby, Isobole, Calculus, Regression and EQM method, respectively. The results from the analysis of variance on the principal weeds treated with oxyfluorfen and bensulfuron showed significant interactions at 1% level on both Echinochloa crus-galli and Eleocharis Kuroguwai, and total species at 0.5% level on both Potamogeton distinctus and Cyperus serotinus, but non significant on Scirpus juncoides and Sagittaria pygmaea. Thereafter, the results of the models applied to Echinochloa crus-galli, Eleocharis kuroguwai and total species were as follows ; 1. The Colby method gave values nearly identical to regression estimate method (both multiplicative models) as provided by Akobundu et al. The Colby method and Regression method indicated synergistic toward Echinochloa curs-galli, and total species, but antagonistic toward Eleocharis kuroguwai. 2. The Isobole method shows synergism on Echinochloa crus-galli at $ID_{50}$, and total species at $ID_{60}$ on Eleochari kuroguwai. 3. The Calculus method gave positive signs for the first differentiation and negative signs for the second differentiation except for some rates on Echinochloa crus-galli and total species, but reverse on Eleocharis kuroguwai. These result does not agree with the observed values. 4. ${\theta}$ value from the EQM method was greater than one at all combinations. This result was quite different from those of other methods. 5. The various models did not show the same results, but mixture of oxyfluorfen and bensulfuron tend to have synergistic effect. Weeding effect also was high. Treatment in terms of two chemical combination was expected to reduce rates, and to enhence weeding efficacy compared with single treatment.

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Enhancement of Cytotoxicity by the Combination of Anticancer Drugs in Human Lung Adenocarcinoma Cell Line (PC-14) (폐암세포주 (PC-14)에서 복합항암제 처치시 암세포살해능의 증강에 관한 연구)

  • Lee, Choon-Taek
    • Tuberculosis and Respiratory Diseases
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    • v.44 no.3
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    • pp.525-533
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    • 1997
  • Background : No ideal combination chemotherapy for lung cancer has been established even though lots of combination anticancer chemotherapies have been tried. For the combination of anticancer drugs, the interaction of anticancer drugs is very important but unpredictable factor. In this experiment, we designed and tested new experiment to measure the interaction of two anticancer drugs using MIT assay in an attempt to predict clinical response of the combination regimen. Methods : With human lung adenocarcinoma cell line (PC-14), the cytotoxic effect of cisplatin, adriamycin, mitomycin C and etoposide were measured by in vitro chemosensitivity test (MIT assay). The combined cytotoxic effects of combination of two drugs were also measured in every combination of the drug concentrations and analyzed the interaction by Anava analysis of two way factorial design. Results : Four individual drugs showed cytotoxic effects on PC-14 by dose dependent fashion. Comparison of two drug combinations revealed that mitomycin C + cisplatin and adriamycin + cisplatin combinations showed stronger synergistic cytotoxic effects. Conclusion : From this experiment, we suggest two combinations of mitomycin C + cisplatin and adriamycin + cisplatin as chemotherapeutic regimens for unresectable non-small cell lung cancer. Furthermore, this experimental design could be applied to other types of cancer requiring combination anticancer chemotherapy.

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Symptomatology, Interacton and Management of Rhizome Rot of Ginger by Xenobiotics (생강 뿌리썩음증상의 병징학, 기생체간 상호작용 및 약제방제)

  • Doshi, Anil;Mathur, Sneh
    • Korean journal of applied entomology
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    • v.26 no.4 s.73
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    • pp.261-265
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    • 1987
  • Three diffeerent types of symptoms were observed according to the pathogen associated with the rhizomes. The maximum rotting was observed in case when Pythium aphanidermatum was inoculated first followed by Fusarium solani. There was no interaction in case of root knot nematode Meloidogyne incognita and Pythium aphanidermatum. Average per cent germination of the rhizomes were increased significantly in each treatment and maximum in case of Alliette(.25%). The per cent pre & post drenching rotting was minimum in case of Alliette, Burgandy mixture, Dithane-M 45 and Difolatan. These fungicides also increase the yield of rhizome significantly.

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Interaction of Beta-cyclodextrin with Some Pharmaceuticals (Beta-cyclodextrin과 의약품(醫藥品)과의 상호작용(相互作用))

  • Kim, Shin-Keun
    • Journal of Pharmaceutical Investigation
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    • v.4 no.1_2
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    • pp.13-18
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    • 1974
  • Data are present for the interaction of beta-cyclodextrin with 7 pharmaceuticals in aqueous solution. By means of the solubility method of analysis, definite interaction were found to occur with all the compounds tested. The amount of these pharmaceuticals in equilibrium with their respective solid phase increased progressively with beta-cyclodextrin. A concentration of 1.5 g of beta-cyclodextrin per 100 ml of water increased the solubility of most compounds tested (except one) by 15-120%. Hydrolysis in alkali solution of chrolothiazide was retarded in the presence of beta-cyclodextrin.

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Interpretation of Weeding Efficacy by Mixture Use of Herbicide Combination, Oxyfluorfen and Glyphosate (Oxyfluorfen과 Glyphosate 조합처리(組合處理) 모형(模型)의 혼용효과(混用效果)에 대한 해석적연구(解釋的硏究))

  • Guh, J.O.;Cho, Y.W.;Lee, K.H.
    • Korean Journal of Weed Science
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    • v.7 no.2
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    • pp.236-242
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    • 1987
  • The study was conducted to interprete the fluctuation of weed vegetation in plant-sociological impacts as affected by the mixture use of oxyfluorfen and glyphosate with various dosages. Also, intended to know the real interaction between two herbicides in weeding efficacies. The better efficacy from the above mixture was recognized than from the oxyfluorfen + paraquat mixture on the perennial-sites. In lower rate mixture of oxyfluorfen, the dominance index was increased by the annual grass species (ie. Digitaria), and of glyphosate by the biennial Stellaria and perennial species (ie. Artemisia). Also, the positive maximum action of both oxyfluorfen and glyphosate in various mixture rates was categorized upto 0.55kg ai/ha for oxyfluorfen and 0.35kg ai/ha for glyphosate, respectively. However, the interaction between the above two herbicides recognized actually as negative. Consequently, the use of mixture compound of oxyfluorfen with glyphosate are expected rather to promote the control efficacy of specific weed species, to enlarge the weeding spectrum and to prolong the weeding periods than to reduce the application rate of both chemicals depending on any synergic interactions.

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Interaction in Model of Herbicide Combination Using Oxyfluorfen to Control Orchard Weeds (Oxyfluorfen을 주재(主材)로 한 과수원(果樹園) 제초제(除草劑) 조합처리(組合處理) 모형(模型)의 상호작용(相互作用) 효과(效果) 해석연구(解析硏究))

  • Guh, J.O.;Cho, Y.W.;Kwon, S.L.;Lee, W.Z.
    • Korean Journal of Weed Science
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    • v.4 no.1
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    • pp.88-95
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    • 1984
  • The study was intended to analyze the interaction effects of paraquat and oxytluorfen as an orchard herbicide-mixture. Data were prepared from the former report of authors. The algebraic expression for the actions of paraquat and oxyfluorfen on the control percentages of peach orchard weeds, and their interactions were determined from the multiple regression polynomial and plotted in three-dimensional graphs. As a result of treatments by combination of paraquat and oxyfluorfen on the field which was dominated by perennial weeds, the most effective interactions were detected at combination rates of $245\;gHa^{-1}$ paraquat and $470-705\;gHa^{-1}$ oxyfluorfen. However, to develope the long-term weeding-efficacies, the combination rates of paraquat are expected to raise up to $500-700\;gHa^{-1}$, and oxyfluorfen to fit at lower limits of rates, respectively.

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Drug Interaction of Probenecid and Lithium Carbonate (프로베네시드와 탄산리튬의 약물상호작용)

  • Lee, Jin-Hwan;Lee, Chong-Ki
    • Journal of Pharmaceutical Investigation
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    • v.17 no.2
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    • pp.95-98
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    • 1987
  • The drug interaction between probenecid and lithium carbonate was studied pharmacokinetically in rabbits. The blood level and the area under the concentration curve (AUC) of lithium carbonate administered orally were elevated by coadministration of probenecid. Probenecid inhibited the urinary excretion of lithium carbonate in rabbits. Biological half-life and $t_{max}$ of lithium carbonate were prolonged by coadministration of probenecid. From these results, dosage regimen of lithium carbonate is considered to be adjusted for effective and safe therapy in the coadministration of probenecid.

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In vitro Antimicrobial Activity in Combination of Antibacterials Against Fish-pathogenic Bacteria (병용 항균제의 어류질병 세균에 대한 시험관내 항균활성)

  • Jung, Sung-Hee;Kim, Jin-Woo
    • Journal of fish pathology
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    • v.13 no.1
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    • pp.45-51
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    • 2000
  • Bacterial diseases with mixed infection have recently occurred at land-based flounder farms in Korea. Thus, single antibacterial is not effective for therapy of mixed bacterial diseases of fish because of their different causative bacteria. The purpose of the present study was to obtain basic data for positive usefulness of a combination of antibacterials used for synergism to mixed bacterial diseases of fish. Snergistic interaction in combination of antibacterials was determined by in vitro antimicrobial activity against selected fish-pathogenic bacteria, Vibrio anguillarum, Edwardsiella tarda, Streptococcus sp., Staphylococcus epidermidis, on the basis of Checkerboard assay using fractional inhibitory concentration (FIC) indices. Synergistic interactions were observed in combinations of (oxytetracycline HCL+lincomycin), (tetracycline HCL+florfenicol), (oxytetracycline HCL+florfenicol) against V. anguillarum, (sodium nifurstyrenate+florfenicol), (tetracycline HCL+florfenicol), (sodium nifurstyrenate+oxolinic acid), (oxytetracycline HCL+florfenicol) against E. tarda, (ciprofloxacine+oleandomycin), (oxytetracycline HCL+oleandomycin), (tetracycline HCL+oleandomycin), (oxytetracycline HCL+lincomycin), (oxytetracycline HCL+spiramycin), (oxytetracycline HCL+erythromycin), (doxycycline HCL+oleandomycin), (tetracycline HCL+spiramycin) against Streptococcus sp., and (ciprofloxacine+erythromycin), (florfenicol+erythromycin), (doxycycline HCL+oleandomycin), (ciprofloxacine+oleandomycin) against S. epidermidis.

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