• Title/Summary/Keyword: Drug effects

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Antispasmodic and Analgesic Effects by Concurrent Administration of Etomidoline and Nefopam$\cdot$HCl (Etomidoline과 Nefopam$\cdot$HCl 병용투여시의 진경 및 진통 효과에 관한 연구)

  • 허인회;안형수
    • YAKHAK HOEJI
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    • v.25 no.1
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    • pp.27-35
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    • 1981
  • Etomidoline is a new synthetic atropine-like drug. The present investigation aimed to study the combined effects of etomidoline and neofopam hydrochloride which has an analgesic and muscle relaxant activity, compared with the effects of each drugs. Acute toxicities (ID$_{50}$) in mouse were 132mg/Kg (p.o.) and 49mg/Kg (i.p.) when combination ratio of etomidoline and neofopam was 1:5 and 103 mg/Kg (p.o.) and 30mg/Kg (i.p.) with the ratio of 1:10. Etomidoline showed more potent anticholinergic effects than neofopam in the isolated rat intestine. Whereas, antibarium effects were twice as active with neofopam than with etomidoline. When etomidoline and neofopam were added in combination ratio of 1 : 5, papaverine-like avtivity was increased, but no changes of anticholinergic effect were observed. Analgesic effect was measured by the anti-writhing method of Whittle in mice. Both of the concurrent and single administration of etomidoline and nefopam reduced significantly the writhing number and the effect of the concurrent administration was more active than that of single, and 1 : 5 combination was slightly more potent than 1:10. Each drug or the combined drug was administered to mice and observed the change of the pupil size. Pupil sizes were increased with each drug and with combined drug, although there were no significant differences between the each group of drugs. However, those effects were less than that of atropine sulfate.e.

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Practice Guideline of Use of Benzodiazepines in Psychiatric Field (정신과 영역에서 벤조다이아제핀계 약물의 사용과 문제점)

  • Oh Kang-Seob
    • Anxiety and mood
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    • v.1 no.1
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    • pp.37-42
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    • 2005
  • Benzodiazepines are widely used for a variety of conditions in psychiatric field. In this article, the author reviewed the indications, the effects on anxiety and sleep disorders, the side effects, the drug-drug interactions, and the tapering strategies. Benzodiazepines were relatively safe and useful for the treatment of anxiety and sleep disorders. However, used clinically, benzodiazepines can induce many adverse effects (e. g. over-sedation, cognitive impairments, paradoxical effects, dependence and withdrawal symptoms, and so on). Currently available informations about their effects on the developing fetus is controversial. For this reason, pregnant women and nursing mother should be cautioned against the use of benzodiazepines. Drug-drug interactions have to be considered in combination treatments. For the tapering issues, gradual tapering was important to prevent the withdrawal symptoms. Especially, the tapering schedules have to be individualized for the each long-term benzodiapzepine users.

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Effects of Ginseng on the Drug Metabolizing Enzymes (인삼이 간의 약물 대사 효소에 미치는 영향)

  • 김낙두
    • YAKHAK HOEJI
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    • v.28 no.1
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    • pp.29-33
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    • 1984
  • The paper aimed to review the influences of ginseng on the metabolism of foreign substances and on the activity of hepatic drug metabolizing enzyme system in mouse or rat liver. It has been known that ginseng components reduces the motality rates and the toxic effects induced by foreign materials. Chronic pretreatment of mouse or rat with ginseng extract fractions or saponin caused the increase in the metabolism of foreign materials and the activity of drug metabolizing enzymes, such as cytochrome $P_{450}$, NADPH cytochrome C reductase and glucuronyl S-transferase in liver. Thus, it may be concluded that decrease in toxic effect of foreign substances by ginseng pretreatment may be partly related to the induction of drug metabolizing enzymes in liver.

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Efficacy and Safety of Ziprasidone (지프라시돈의 효능 및 안전성)

  • Yu, Bong G.
    • Korean Journal of Clinical Pharmacy
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    • v.11 no.2
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    • pp.89-96
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    • 2001
  • Ziprasidone is equally effective as haloperidol in treating schizophrenia with fewer side effects and drug interactions. Ziprasidone is an atypical antipsychotic agent and works by blocking serotonin and dopamine receptors in the central nervous system, specifically 5-HT2A and D2 receptors. Low anticholinergic side-effects and low EPS would recommend the drug for use in the elderly. Ziprasidone inhibits reuptake of norepinephrine and serotonin at neurojunction sites in vitro, indicating a potential efficacy for depression and negative symptoms which often follow after exacerbation of schizophrenia. Patients with recent acute myocardial infarction and uncompensated heart failure are contraindicated to the drug due to a possibility of QT prolongation. Although ziprasidone is metabolized by cytochrome P450 3A4, there is no significant drug interaction with the drugs that induce or inhibit the isoenzyme. Ziprasidone is safe with coadministration of lithium and there has been no significant drug interaction reported with oral birth control pills.

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Cytotoxic Triterpenoids from the Fruits of Ligustrum japonicum

  • Thi Ngo, Quynh-Mai;Cao, Thao Quyen;Woo, Mi Hee;Min, Byung Sun;Weon, Kwon-Yeon
    • Natural Product Sciences
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    • v.24 no.2
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    • pp.93-98
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    • 2018
  • Medicinal plants are potential sources of anticancer agents screening. A large number of phytochemicals, including triterpenoids, have been reported to have significant cytotoxic effects on cancer cells. From the fruits of Ligustrum japonicum Thunb., thirteen triterpenoids (1 - 13) were isolated and evaluated for their cytotoxic activity against Hela and HL-60 cells. As results, 8 (oleanolic acid) showed significant effects on Hela with $IC_{50}$ values of $5.5{\mu}M$, and moderate effects on HL-60 cells with $IC_{50}$ values of $55.9{\mu}M$. Meanwhile, 10 (oleanderic acid) and 11 ($3{\beta}$-acetoxy-urs-12-en-28-oic acid) exhibited moderate inhibitory effects on Hela with $IC_{50}$ value of 55.0 and $68.8{\mu}M$, respectively. Moreover, 10 showed cytotoxic effect on HL-60 cell line with $IC_{50}$ value of $63.9{\mu}M$. To our knowledge, this is the first report that oleanderic acid was isolated from L. japonicum and investigated in cytotoxic effects on Hela and HL-60 cells.

Development of Polymeric Nanopaclitaxel and Comparison with Free Paclitaxel for Effects on Cell Proliferation of MCF-7 and B16F0 Carcinoma Cells

  • Yadav, Deepak;Anwar, Mohammad Faiyaz;Garg, Veena;Kardam, Hemant;Beg, Mohd Nadeem;Suri, Suruchi;Gaur, Sikha;Asif, Mohd
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.5
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    • pp.2335-2340
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    • 2014
  • Paclitaxel is hydrophobic in nature and is recognized as a highly toxic anticancer drug, showing adverse effects in normal body sites. In this study, we developed a polymeric nano drug carrier for safe delivery of the paclitaxel to the cancer that releases the drug in a sustained manner and reduces side effects. N-isopropylacrylamide/vinyl pyrrolidone (NIPAAm/VP) nanoparticles were synthesized by radical polymerization. Physicochemical characterization of the polymeric nanoparticles was conducted using dynamic light scattering, transmission electron microscopy, scanning electron microscopy and nuclear magnetic resonance, which confirmedpolymerization of formulated nanoparticles. Drug release was assessed using a spectrophotometer and cell viability assays were carried out on the MCF-7 breast cancer and B16F0 skin cancer cell lines. NIPAAm/VP nanoparticles demonstrated a size distribution in the 65-108 nm range and surface charge measured -15.4 mV. SEM showed the nanoparticles to be spherical in shape with a slow drug release of ~70% in PBS at $38^{\circ}C$ over 96 h. Drug loaded nanoparticles were associated with increased viability of MCF-7 and B16F0 cells in comparison to free paclitaxel. Nano loaded paclitaxel shows high therapeutic efficiency by sustained release action for the longer period of time, i increasing its efficacy and biocompatibility for human cancer therapy. Therefore, paclitaxel loaded (NIPAAm/VP) nanoparticles may provide opportunities to expand delivery of the drug for clinical selection.

Drug Development and Guideline for Safety Pharmacology Studies (신약개발과 안전성약리시험 가이드라인)

  • 최기환;박인숙;임화경;오우용;왕소영;김소희;김주일;김동섭
    • YAKHAK HOEJI
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    • v.47 no.2
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    • pp.104-109
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    • 2003
  • The present paper reviews the notion and comparison of the Korea Food and Drug Administration(KFDA) general pharmacology and the International Conference on Harmonisation (ICH) safety pharmacology. General pharmacology or safety pharmacology is termed the study to determine the potential of a compound to induce adverse pharmacological effects. KFDA general pharmacology studies have been considered an important component in drug safety assessment and these were originally referred to those designed to examine effects other than the primary therapeutics effect of a drug candidate. The KFDA notified the Guideline for General Pharmacology in 1997. Safety pharmacology studies were focused on identifying adverse effects on physiological functions. In the ICH came into place S7A Safety Pharmacology Studies for Human Pharmaceuticals in 2001. A new chemical entity should be assessed for its side effects, initially in those physiological systems which are generally agreed to be the key systems that are essential for life; these "core system" include the central nervous system, cardiovascular system and respiratory system in safety pharmacology studies. These studies should be performed in compliance with Good Laboratory Practice (GLP).