• 제목/요약/키워드: contact sensitization

검색결과 59건 처리시간 0.03초

신규 개인제독키트, SDK시제품(가칭)의 면역독성평가에 관한 고찰 (Evaluation of Immunotoxicities of New Skin Decontamination Kit(SDK))

  • 강병철;이학모;제정환;남정석;이석만;양재만;박재학;이영순
    • Toxicological Research
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    • 제14권2호
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    • pp.205-209
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    • 1998
  • To evaluate immunotoxicity of skin decontamination kit(SDK) newly-developed in Agency for Defense Development(ADD), delayed contact hypersensitivity (maximization) test and passive cutaneous anaphylaxis(PCA) test of SDK were performed and the results were compared with those of M 291. In maximization test, sensitization reaction was induced by id injection (2.5 mg / 0.1 $\textrm{m}{\ell}$/ guinea pig or 2.5 mg+CFA/0.1 $\textrm{m}{\ell}$/guinea pig) and topical application (2.5 mg/$\textrm{m}{\ell}$/guinea pig) with SDK or M291 at an interval of 1 week, and 2 weeks later, challenged by topical application with 25 mg/$\textrm{m}{\ell}$/guinea pig. SDK and M291 did not induce any reactions, showing 0 point of sensitization score and 0% of sensitization rate. In conclusion, it is suggested that SDK and M291 do not induce delayed contact hypersensitivity. In PCA test, rats were administered id with mouse anti-SDK serum and challenged iv with a mixture of antigen SDK and Evan's blue. SDK did not induce blue spots at the injection sites of both high (2.5 mg/mouse) and low (1.25 mg/mouse) dose-induced antisera. In contrast, BSA, positive control produced spots larger than 5 mm in diameter at the injection sites of BSA-induced antiserum up to $2^2$ ~ $2^4$dilution. In conclusion, it is suggested that SDK do not induce IgE production and is not a PCA-reaction inducer.

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Cyclophosphamide가 마우스의 면역기억에 미치는 영향 (Effects of Cyclophosphamide on Immunological Memory in Mice)

  • 박영민;박윤규;안우섭;하대유
    • 대한미생물학회지
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    • 제22권2호
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    • pp.175-184
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    • 1987
  • The use of alkylating agent cyclophosphamide(CY), a widely used antitumor drug is well known as a potent immunosuppressant and has been used as a probe for investigating the functional capabilities of lymphocyte subsets of both T and B cells that play an important role in the regulation of the immune response. The present study was undertaken in an effort to assess the effects of CY on immunological memory in murine model. CY, given as a single dose of CY(250mg/kg) before sensitization with sheep red blood cells(SRBC) enhanced the primary response of Arthus and delayed-type hypersensitivity(DTH), as measured by footpad swelling reaction, but suppressed their tertiary DTH response. The similar CY pretreatment enhanced both the primary and tertiary hemagglutinin(HA) responses to SRBC, and the tertiary antibody response against polyvinylpyrroridone(PVP), a thymus-independent antigen but not the primary response against PVP. CY, given as a single dose of 250mg/kg 2 days before the primary immunization and two doses of 100mg/kg 2 days before the secondary and tertiary immunization, markedly suppressed the tertiary DTH and HA responses to SRBC. However, CY, given as small multiple daily doses(10mg/kg) over 4 days before sensitization but not after sensitization, enhanced the secondary HA response to SRBC. Contact sensitivity to dinitrofluorobenzene(DNFB) was suppressed by the drug, given either as a single large dose(300mg/kg) or as multiple dose(10mg/kg) administered 2 days before, together with or after DNFB sensitization. This suppression was more pronounced and more significant when CY was given as multiple dose. However, the enhancement of the secondary contact sensitivity to DNFB by CY was not clear-cut. The splenectomy appears to increase the enhancing effect of CY on contact sensitivity. These results suggest that CY selectively influences the immune response depending on the time of the drug administration relative to immunization and that the secondary or tertiary immune response involve memory cells with different susceptibilities to CY. Moreover, these results suggest that multiple low doses may sesectivley inhibit suppressor T cell proliferation involving DTH, HA or contact sensitivity without effecting helper T cells, but high doses presumably inhibit helper T cells and suppressor T cells with effecting B cells.

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화학물질에 대한 직업적 노출기준의 표기 항목 비교 (Comparison of Notation Items for Chemical Occupational Exposure Limits)

  • 피영규;김승원;하권철
    • 한국산업보건학회지
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    • 제30권2호
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    • pp.226-235
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    • 2020
  • Objectives: This study was to investigate the signs and notations of skin absorption, carcinogenicity, germ cell mutagenicity, and reproductive toxicity in the occupational exposure limits of Korea and of other advanced countries. Methods: Information on occupational exposure limits in Korea, the USA, the UK, Germany, and Japan was investigated through the Internet, and items marked as carcinogenicity and skin absorption were compared by country. Results: Legal occupational exposure limits have been greatly simplified. However, in the case of HSE WEL, skin absorption, carcinogenicity classification, sensitization, and in the case of DFG MAK, skin absorption, carcinogenicity, pregnancy risk group, germ cell mutagenicity, airway and skin sensitization, photo contact sensitization, and vapor pressure were provided. Conclusions: It is desirable to indicate the carcinogenicity and skin absorption within permissible limits, and to include information on critical effects in chemical substance exposure limits to uphold the right to know of industrial hygienists and workers in Korea. It is also necessary to clarify the precautions, limitations and protections for skin absorption.

실험동물에 대한 para-phenylenediamino을 함유하는 염모제의 피부 및 눈에 대한 시험 (A Study on the Skin and Eye Testing of para-phenylenediamine and commercial hairdyes containing paraphenylenediamine in animals)

  • 김정진;이순우;용금찬
    • 약학회지
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    • 제38권5호
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    • pp.562-567
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    • 1994
  • Now para-phenylenediamine(PPDA) is generally used as component of most hairdyes because it can be used more conveniently and effectively than the others. But PPDA become known to cause side effects such as skin sensitization, contact dermatitis and eye irritation. So this study was done to restudy the safety of hairdyes containing PPDA. The results of experiment were as follows. 1. As a result of primary skin irritation test and eye irritation test in white rabbits, the solution containing 5% PPDA(in saline) were classified as weak irritant but four kinds of commercial hairdyes containing PPDA were proved not to have any irritation. 2. As a result of skin sensitization test in guinea pig, four kinds of commercial hairdyes were classified as Calss I(week irritant) but three kinds of commercial hairdyes induced skin sensitization for guinea pig to 5% in test groups. These results indicate that the actual toxicity of commercial hairdyes(four kinds) is negligible. But based on the results of experiment, it is thought that there is possibility of some commercial hairdyes to induce skin sensititization.

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가감공진단(加減拱辰丹) (WSY-1075)의 접촉성 피부염 유발 모델동물에 대한 개선효과 (The Ameliorative Effects of Gagam-GongJin-dan (WSY-1075) in Contact Dermatitis-induced Animal Model)

  • 황성연;이가위;이승호;김홍준
    • 대한한의학방제학회지
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    • 제21권1호
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    • pp.131-141
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    • 2013
  • Objectives : This study was performed to assess the ameliorative effects of Gagam-GongJin-dan (WSY-1075) composited with Corni Fructus, Angelica gigantis Radix, Lycii Fructus, Ginseng Radix, Cervi parvum Cornu and Cinnamomi Cortex in contact dermatitis animal model. Methods : WSY-1075 was orally administrated the various concentrations (50-400 mg/kg, body weight/day) with one time per day for 10 days from 4 days after DNFB sensitization. We investigated ameliorative effects of WST-1075 on the scratching behavior, skin clinical serverity and inflammatory mediators in 2,4-dinitrofluorobenzene (DNFB)-induced contact dermatitis mice. Results : The orally administration of WSY-1075 (400 mg/kg) inhibited the scratching behavior induced by sensitization and challenge with DNFB. WSY-1075 (200 mg/kg or 400 mg/kg) administration also reduced the skin damage, inflammatory mediators, mast cell infiltration induced by DNFB. Moreover, WSY-1075 (above 200 mg/kg) administration inhibited the serum levels of IgE and IL-4 in DNFB-induced contact dermatitis mice. Conclusions : These results suggest that WSY-1075 administration (200 mg/kg or 400 mg/kg) has the ameliorative effects on the scratching behavior, the clinical signs, mast cell infiltration and inflammatory mediators in DNFB-induced contact dermatitis animal model mice.

Guinea Pig Maximization Test를 이용한 0.3% DA-5018 cream의 접촉성 앨러지에 대한 연구 (A Study on the Contact Allergic Skin Sensitization of 0.3% DA-5018 Cream, a Non-narcotic Analgesic Agent, with Guinea Pig Maximization Test)

  • 강경구;김동환;백남기;김원배;양중익
    • Biomolecules & Therapeutics
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    • 제4권4호
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    • pp.391-397
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    • 1996
  • The aim of this study was to assess the allergenic potential of 0.3% DA-5018 cream, a non-narcotic analgesic agent, using a guinea pig maximization test. Five male and female guinea pigs in the experimental group were sensitized in two steps. First, ,0.3% DA-5018 cream was injected intradermally, and 7 days later, the material was applied topically. After another 2 weeks test material was applied, the skin response was evaluated by visual observation. Five male and female guinea pigs served as cream base group, negative(ultreated) group or positive (2,4-dinitrochlorobenzene, DNCB) group, respectively. 0.3% DA-5018 cream provoked slight erythema in 1 out of 5 cases in male and female guinea pigs sensitized with 0.3% DA-5018 cream or cream base. The animals challenged with cream base also showed slight erythema in 1/5 female guinea pig sensitized with 0.3% 3A-5018 cream or 2/5 male guinea pjgs sensitized with cream base, respectively. Histologically, however, no indication of skin sensitization was observed in all of these cases. The positive control group was sensitized with 0.1% DNCB suspended in olive oil and challenged with 0.01% and 0.1% DNCB ointment, all the animal showed remarkable skin reactions and obvious skin sensitization reactions in a dose dependent manner. From the challenge test it was evident that 0.3% DA-5018 cream did not elicit positive skin reaction interpreted as delayed hypersensitivity reactions, compared with cream base or untreated control group. These findings indicate that allergenic side effects by 0.3% DA-5018 cream is not likely in the clinical use.

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사군자탕(四君子湯) 및 사물탕(四物湯)이 methotrexate로 유도(誘導)된 흰쥐의 면역기능저하(免疫機能低下)에 미치는 영향(影響) (Effects of Sagunjatang and Samultang on the Immunosuppression induced by Methotrexate in Rats)

  • 최윤정;김장현
    • 대한한방소아과학회지
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    • 제13권1호
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    • pp.253-275
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    • 1999
  • The effects of Sagunjatang and Samultang on the immunosuppression induced by methotrexate(MTX) in rats were investigated in this study. The multiple parameters of immunity assessed in each rats included leukocyte count, lymphocyte rate, the number of lymphocyte in tibial bone marrow, contact hypersensitivity to DNFB, morphological change of thymocyte and IgG antibody on SDS-PAGE. Sprague-Dawley male rats were used and divided into five groups at random. Group A was normal control. Group B, the MTX treatment control, was injected i.v. with 2mg/kg of on days 9, 11 after sensitization with SRBC on 5th day. Group C, the experimental control, was treated Sagunjatang for 18days and MTX. Group D was treated Samultang for 18days and MTX. Group E was treated Sagunjatang-Samultang for 18days and MTX. The dosage of Sagunjatang and Samultang was $1m{\ell}/day$ respectively. In the case of Group E, rats Were fed Sagunjatang $1m{\ell}$ in the morning and Samultang $1m{\ell}$ in the afternoon. The results are summarized as follows: 1. Leukocyte count in rats induced by intravenous sensitization with SRBC was decreased significantly in Group E. 2. Leukocyte counts of 2weeks later after being treated MTX were increased significantly in Groups C and D. 3. Lymphocyte rate in rats induced by intravenous sensitization with SRBC wasn't changed significantly in all the experimental groups. 4. Lymphocyte rate of 2weeks. later after being treated MTX was increased significantly in Group D. 5. The number of lymphocyte in tibial bone marrow was incereased significantly in Group C. 6. Contact hypersensitivity wasn't changed significantly in all the experimental groups. 7. Morphological finding of thymocyte in group C was similar to normal group as compared with control group. 8. Purified IgG of all the experimental groups showed two bands of 50,000 and 25,000 on SDS-PAGE. But there was no difference among experimental groups.

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자외선 차단제의 SPF 지수와 피부자극지수와의 상관성 연구 (Studies on the Correlation between SPF Index and Skin Irritation Index of Sunscreens)

  • 김종원;서수경;최주영;박창원;서경원;김규봉;김광진;김재희;이선희
    • Biomolecules & Therapeutics
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    • 제10권4호
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    • pp.246-252
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    • 2002
  • In recent years, the safety of sunscreens has been challenged based on the reports of their adverse effect on users; dermatitis, allergic contact dermatitis and photo allergic contact dermatitis. The unscientific idea that higher SPF sunsreen is good for health mealeads many users to tend to prefer higher SPF sunscreen. In the toxicological aspect, the need to investigate the safety of sunscreens is steadily increasing. However, there were few studies on the correlation between sun protection factor (SPF) and the safety of sunscreens. The objective of this study was to assess whether there was a correlation between SPF and the safety of sunscreens. We measured in vitro SPF index using homosalate as a standard and examined the toxicity tests such as primary skin irritation tests, ocular irritation test and skin sensitization test. Homosalate (HS), octyl methoxycinnamate (OMC), octyl salicylate (OS), octocrylene (OC) as UVB organic filter and benzophenone-3 (BP3), butyl methoxy dibenzoil methane (BMDM) as UVA organic filter, and titanium dioxide (TD), zinc oxide (ZO) as inorganic filters were used. The skin irritation indexes in rabbits treated with HS, OMC, OS, BP3, and BMDM were significantly increased as SPF indices were increased. Neither ocular irritation in rabbits nor skin sensitization in guinea pigs were increased. It suggests that there might be a good correlation between SPF and the skin irritation indices of organic UV filters and skin irritation might be one of most sensitive index to assess the safety of sunscreens.

Photoimmunology -Past, Present and Future-

  • Daynes, Raymond A.;Chung, Hun-Taeg;Roberts, Lee K.
    • 대한미생물학회지
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    • 제21권3호
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    • pp.311-329
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    • 1986
  • The experimental exposure of animals to sources of ultraviolet radiation (UVR) which emit their energy primarily in the UVB region (280-320nm) is known to result in a number of well-described changes in the recipient's immune competence. Two such changes include a depressed capacity to effectively respond immunologically to transplants of syngeneic UVR tumors and a markedly reduced responsiveness to known inducers of delayedtype (DTH) and contact hypersensitivity (CH) reactions. The results of experiments that were designed to elucidate the mechanisms responsible for UVR-induced immunomodulation have implicated: 1) an altered pattern of lymphocyte recirculation, 2) suppressor T cells(Ts), 3) deviations in systemic antigen presenting cell (APC) potential. 4) changes in the production of interleukin-1-like molecules, and 5) the functional inactivation of epidermal Langerhans cells in this process. The exposure of skin to UVR, therefore, causes a number of both local and systemic alterations to the normal host immune system. In spite of this seeming complexity and diversity of responses, our recent studies have established that each of the UVR-mediated changes is probably of equal importance to creating the UVR-induced immunocompromised state. Normal animals were exposed to low dose UVR radiation on their dorsal surfaces under conditions where a $3.0\;cm^2$ area of skin was physically protected from the light energy. Contact sensitization of these animals with DNFB, to either the irradiated or protected back skin, resulted in markedly reduced CH responses. This was observed in spite of a normal responsiveness following the skin sensitization to ventral surfaces of the UVR-exposed animals. Systemic treatment of the low dose UVR recipients with the drug indomethacin (1-3 micrograms/day) during the UVR exposures resulted in a complete reversal of the depressions observed following DNFB sensitization to "protected" dorsal skin while the altered responsiveness found in the group exposed to the skin reactive chemical through directly UVR-exposed sites was maintained. These studies implicate the importance of EC as effective APC in the skin and also suggest that some of the systemic influences caused by UVR exposure involve the production of prostaglandins. This concept was further supported by finding that indomethacin treatment was also capable of totally reversing the systemic depressions in CH responsiveness caused by high dose UVR exposure (30K joules/$m^2$) of mice. Attempts to analyze the cellular mechanisms responsible established that the spleens of all animals which demonstrated altered CH responses, regardless of whether sensitization was through a normal or an irradiated skin site, contained suppressor cells. Interestingly, we also found normal levels of T effector cells in the peripheral lymph nodes of the UVR-exposed mice that were contact sensitized through normal skin. No effector cells were found when skin sensitization took place through irradiated skin sites. In spite of such an apparent paradox, insight into the probable mechanisms responsible for these observations was provided by establishing that UVR exposure of skin results in a striking and dose-dependent blockade of the efferent lymphatic vessels in all peripheral lymph nodes. Therefore, the afferent phases of immune responses can apparently take place normally in UVR exposed animals when antigen is applied to normal skin. The final effector responses, however, appear to be inhibited in the UVR-exposed animals by an apparent block of effector cell mobility. This contrasts with findings in the normal animals. Following contact sensitization, normal animals were also found to simultaneously contain both antigen specific suppressor T cells and lymph node effector cells. However, these normal animals were fully capable of mobilizing their effector cells into the systemic circulation, thereby allowing a localization of these cells to peripheral sites of antigen challenge. Our results suggest that UVR is probably not a significant inducer of suppressor T-cell activity to topically applied antigens. Rather, UVR exposure appears to modify the normal relationship which exists between effector and regulatory immune responses in vivo. It does so by either causing a direct reduction in the skin's APC function, a situation which results in an absence of effector cell generation to antigens applied to UVR-exposed skin sites, inhibiting the capacity of effector cells to gain access to skin sites of antigen challenge or by sequestering the lymphocytes with effector cell potential into the draining peripheral lymph nodes. Each of these situations result in a similar effect on the UVR-exposed host, that being a reduced capacity to elicit a CH response. We hypothesize that altered DTH responses, altered alloresponses, and altered graft-versus-host responses, all of which have been observed in UVR exposed animals, may result from similar mechanisms.

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