• 제목/요약/키워드: repeated toxicity

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Toxicity of Novel Solubilizer of Paclitaxel, Aceporol 330, in Beagle Dogs

  • Kim, Yeo-Woon;Chung, Kyu-Nung;Kang, Hoon-Suk;Sheen, Yhun-Yhong
    • Biomolecules & Therapeutics
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    • v.16 no.1
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    • pp.61-68
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    • 2008
  • In order to develop an improved paclitaxel formulation vehicle, a micelle forming solubilizer, Aceporol 330 was synthesized. It was previously reported that Aceporol 330 provided the linearity of paclitaxel plasma pharmacokinetics. In this study, the single dose toxicity test and 2-week repeated dose toxicity test of Aceporol 330 was performed in beagle dogs after intravenous administration. Single dose and 2-week repeated dose toxicity test of Aceporol 330 showed fever/generalized erythema, severe vomiting, and diarrhea in beagle dogs. However, those toxicities were less severe than those of Cremophor EL. Blood chemistry analysis of 2-week repeatedly treated beagle dogs with Aceporol 330 showed significant elevation of total cholesterol (TCHO) and triglyceride (TG) compared to that of control group. Cremophor EL also significantly increased total cholesterol (TCHO) and triglyceride (TG) as much as Aceporol 330. Results from this study indicated that Aceporol 330 was less toxic than Cremophor EL. Based on the pharmacokinetic advantages and the low toxicity of Aceporol 330 in single dose and 2-week repeated dose toxicity test, Aceporol 330 has a potential for use as a safer solubilizer for paclitaxel than Cremophor EL.

Intravenous Single Dose and Four-week Repented Dose Toxicity Study of YHB216, a Recombinant Human Erythropoietin, in Beagle Dogs (YHB216의 비글개에서 정맥내 단회 및 4주 반복투여독성시험)

  • 노용우;장호송;지형진;정은용;신지순;강민정;안경규;최연식;이종욱
    • Biomolecules & Therapeutics
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    • v.10 no.1
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    • pp.59-69
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    • 2002
  • Recently, recombinant human erythropoietin (rHu-EPO) has been used to treat various types of anemia. YHB216 is a new rHu-EPO developed by Yuhan Research Institute. In this study, we investigated the single dose and 4-week repeated dose toxicity of YHB216 in Beagle dogs. In the single dose toxicity study, YHB216 was administered intravenously at single dose levels of 0 and 25,000 IU/kg to dogs (2 dogs/sex/group). There were no treament-related changes in survivals, clinical signs, body weight gain, hematological values, blood chemical values, and necropsy finding during experimental period. In the repeated dose toxicity study, YHB216 was administered intravenously to dogs for 4 weeks at the dose levels of 0, 100, 500, and 2,500IU/kg (3 dogs/sex/group). There were no toxicologically significant changes in clinical signs, body weights, food and water consumptions, ophthalmoscopy, urinalysis and blood chemistry. There were increased values of red blood cell, hemoglobin, and hematocrit at all treated groups. Spleen revealed increased weight and extramedullary hematopoiesis at 500 IU/kg or more. These changes are all considered to be Pharmacology-related effects and were recovered after 4-week recovery period. From these results, it is concluded that LD50 value was above 25,000 IU/kg in the single dose toxicity study of YHB216 in dogs and the no observed adverse effect level (NOAEL) was 100 IU/kg day in the repeated dose toxicity study of YHB216 in dogs.

Study on a 4-Week Recovery Test of Sweet Bee Venom after a 13-Week, Repeated, Intramuscular Dose Toxicity Test in Sprague-Dawley Rats

  • Kang, Hyunmin;Lim, Chungsan;Lee, Seungbae;Kim, Byoungwoo;Kwon, Kirok;Lee, Kwangho
    • Journal of Pharmacopuncture
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    • v.17 no.2
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    • pp.18-26
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    • 2014
  • Objectives: This study was performed to check for reversibility in the changes induced by a 13-week, repeated, dose toxicity test of Sweet Bee Venom (SBV) in Sprague-Dawley (SD) rats. Methods: Fifteen male and 15 female SD rats were treated with 0.28 mg/kg of SBV (high-dosage group) and the same numbers of male and female SD rats were treated with 0.2 mL/kg of normal saline (control group) for 13 weeks. We selected five male and five female SD rats from the high-dosage group and the same numbers of male and female SD rats from the control group, and we observed these rats for four weeks. We conducted body-weight measurements, ophthalmic examinations, urinalyses and hematology, biochemistry, histology tests. Results: (1) Hyperemia and movement disorder were observed in the 13-week, repeated, dose toxicity test, but these symptoms were not observed during the recovery period. (2) The rats in the high-dose group showed no significant changes in weight compared to the control group. (3) No significant differences in the ophthalmic parameters, urine analyses, complete blood cell counts (CBCs), and biochemistry were observed among the recovery groups. (4) No changes in organ weights were observed during the recovery period. (5) Histological examination of the thigh muscle indicated cell infiltration, inflammation, degeneration, necrosis of muscle fiber, and fibrosis during the treatment period, but these changes were not observed during the recovery period. The fatty liver change that was observed during the toxicity test was not observed during the recovery period. No other organ abnormalities were observed. Conclusion: The changes that occurred during the 13-week, repeated, dose toxicity test are reversible, and SBV can be safely used as a treatment modality.

Four-week Repeated Oral Dose Toxicity Study of A New Hepatotherapeutic Agent GODEX (HEPADIF-S) in Rats (새로운 간질환치료제(고덱스: 헤파디프에스)의 랫드에 대한 4주반복투여 경구독성시험)

  • 강종구;정은용;박선희;김선희;이수해;장호송;황재식;남상윤
    • Toxicological Research
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    • v.17 no.2
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    • pp.107-114
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    • 2001
  • This study was designed to evaluate a repeated oral dose toxicity of a new hepatotherapeutic agent GODEX in Sprague-Dawley rats. Male and female rats were orally administered with dosages of 500, 100, 20, and 0 /kg/day of GODEX daily for 4 weeks, respectively. There were no dose-related changes in clinical signs, body weight changes, food and water consumption, opthalmoscopy, organ weights, urine analysis, biochemical examination, and hematological findings of all animals treated with GODEX. Gross and histopathological findings revealed no evidence of specific toxicity related to GODEX. These indicate that GODEX may have no side effects and its oral maximum tolerated dose value may be over 500 mg/kg in rats.

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Assessment on combined repeated dose and reproduction/developmental toxicity of benzoyl peroxide

  • Sanghwan Song;Kim, Su-Hyon;Heekyung Bae;Lee, Moon-Soon;Park, Kwangsik
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2002.11b
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    • pp.171-171
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    • 2002
  • This study was carried out by an Korean GLP laboratory to assess the combined repeated dose, reproduction and developmental toxicity of benzoyl peroxide for OECD SIDS(Screening Information Data Set) program. Male and female Sprague Dawley rats were exposed to benzoyl peroxide at levels of 0, 250, 500 and 1,000 mg/kg/day for 29 days for male and for 41-51 days for female.(omitted)

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Single and 13-week Repeated Dose Toxicity Study of DA-3002, An Authentic Recombinant Human Growth Hormone (천연형 인성장호르몬 DA-3002의 단회 및 13주 반복투여독성연구)

  • 김옥진;강경구;안병옥;백남기;이순복;김원배;양중익
    • Biomolecules & Therapeutics
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    • v.2 no.2
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    • pp.161-172
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    • 1994
  • This study was conducted to examine DA-3002, a biosynthetic human growth hormone, for its acute and subacute toxicities in mice and rats. The drug was administered subcutaneously and orally at a dose level of 1.0, 3.0, 8.9, 26.7 or 80.0 lU/kg once for single dose toxicity and given subcutaneously at a dose level of 0.34, 1.7 or 8.4 lU/kg daily for 13 weeks to investigate repeated dose toxicity. In the acute toxicity study, doses up to 80 lU/kg had no adverse effect on the behavior or body weight gain. Pathological examinations revealed no abnormal changes which could be attributed to toxic effect of DA-3002. In the subacute toxicity study, the growth hormone was tolerated well in broth mice and rats. No drug related deaths occurred and all animals appeared to be normal throughout the dosing period. Increases in body weight gain, food utilisation and absolute organ weights were observed in the rats in the high dose group. Mild changes in the blood chemical parameters were also seen in the treated groups. Histopathologically, however, no abnormal changes were observed in any organ. The changes noted during the treatment periods presumably represent exaggerated pharmacological effects of the growth hormone, and no observed adverse effect level (NOAEL) was considered to be more than 8.4 lu/kg/day.

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Intravenous Single and Two Week Repeated Dose Toxicity Studies of Rice Cells-derived Recombinant Human Granulocyte-Macrophage Colony Stimulating Factor on Rats

  • Ji, Jung-Eun;Lee, Jung-Min;Choi, Jong-Min;Choi, Young-Hwa;Kim, Seok-Kyun;Ahn, Kyong-Hoon;Lee, Dong-Hoon;Kim, Ha-Hyung;Han, Kyu-Boem;Kim, Dae-Kyong
    • Toxicological Research
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    • v.23 no.4
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    • pp.383-389
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    • 2007
  • Recombinant human granulocyte-macrophage colony stimulating factor (hGM-CSF) regulates proliferation and differentiation of hematopoietic progenitor cells and modulates function of the mature hematopoietic cells. In the previous study, we reported that hGM-CSF could be produced in transgenic rice cell suspension culture, termed rhGM-CSF. In the present study we examined the single and repeated dose toxicity of rice cells-derived hGM-CSF in SD rats. During single dose toxicity study for 7 days, there were no any toxic effects at any dose of from 10 to $1000{\mu}g/kg$. The lethal dose ($LD_{50}$) was not found in this range. Moreover, repeated dose toxicity study of 14-days period and at the doses of 50 and $200{\mu}g/kg$ (i. v.) of rhGM-CSF did not show any changes in food and water intake. There were also no significant changes in both body and organ weights between the control and the test groups. The hematological and blood biochemical parameters were statistically not different in all the groups. These results suggest that rhGM-CSF has no toxicity in SD rats.

A 90-Day Inhalation Toxicity Study of Ethyl Formate in Rats

  • Lee, Mi Ju;Kim, Hyeon-Yeong
    • Toxicological Research
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    • v.33 no.4
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    • pp.333-342
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    • 2017
  • Ethyl formate, a volatile solvent, has insecticidal and fungicidal properties and is suggested as a potential fumigant for stored crop and fruit. Its primary contact route is through the respiratory tract; however, reliable repeated toxicological studies focusing on the inhalation route have not been published to date. Therefore, the present study was conducted to investigate the safety of a 90-day repeated inhalation exposure in rats. Forty male and 40 female rats were exposed to ethyl formate vapor via inhalation at concentrations of 0, 66, 330, and 1,320 ppm for 6 hr/day, 5 days a week for 13 weeks. Clinical signs, body weights, food consumption, urinalysis, hematologic parameters, serum chemistry measurements, organ weights, necropsy, and histopathological findings were compared between the control and ethyl formate-exposed groups. Locomotor activity decreased during exposure and recovered afterward in male and female rats exposed to 1,320 ppm ethyl formate. Body weight and food consumption continuously decreased in both sexes exposed to 1,320 ppm ethyl formate from week 1 or 3 compared with the control values. The increases in adrenal weight and decreases in thymus weight were noted in both sexes exposed to ethyl formate at 1,320 ppm. Degeneration, squamous metaplasia of olfactory epithelium in the nasopharyngeal tissue, or both were noted in the male and female rats at 1,320 ppm and female rats at 330 ppm ethyl formate. Taken together, our results indicate that ethyl formate-induced changes were not observed in male and female rats at 330 and 66 ppm, respectively. This indicates that exposure to ethyl formate at concentrations below 66 ppm for 90 days is relatively safe in rats. This is the first report of a full-scale repeated inhalation toxicity assessment in rats and could contribute to controlling occupational environmental hazards related to ethyl formate.