• Title/Summary/Keyword: anatomical distribution of toxicity

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Toxicity of Pufferfish in Korea -1. Anatomical Distribution of Toxicity of pufferfish Takifugu obscurus(Hwang-bok)- (한국산 복어의 독성 -1. 황복의 부위별 독성-)

  • JEON Joong-Kyun;YOO Jae-Myoung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.2
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    • pp.137-140
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    • 1995
  • The pufferfish Takifugu obscurus (hwang-bok) was examined for toxicity. Forty-six specimens, which had Gaught at the Imjin River in 1992 and 1993, Korea, were collected and assayed for anatomical distribution of toxicity by the mouse assay method. Ovary and liver showed very strong toxicity, testis, intestine, gall bladder and spleen did moderate toxicity, muscles and skin did weak toxicity, and blood was non-toxic. The results of this study were different from those of Tani, who had examined the toxicity in 19 species of pufferfish, in terms of toxicity in testis, muscle, and skin. The toxicity of testis and muscle had been known to be non-toxic or weakly toxic previously, however, they were known to have weak or moderate toxicity. Therefore, careful attention should be taken to prevent food poisoning by pufferfish ingestion.

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Toxicity of Pufferfish in Korea -2. Toxicity of Pufferfish Takifugu vermicularis radiatus (Gukmeri-bok)- (한국산 복어의 독성 -2. 국매리복의 독성-)

  • JEON Joong-Kyun;YOO Jae-Myoung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.2
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    • pp.141-144
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    • 1995
  • The pufferfish Takifugu vermicularis radiatus (Gukmeri-bog) was examined for toxicity. Thirty-one specimens, which had obtained from creeks of Inchon and Ansan in Spring and Autumn of 1992 and 1993, Korea, were assayed for anatomical distribution of toxicity by mouse bioassay method. Ovary, testis, liver and muscle showed very strong toxicity, and intestine and skin did moderate toxicity. Their average toxicities were moderately toxic in all. Moreover, the toxicities of liver and intestine were stronger in Spring than Autumn. Judging from the results, T. vermicularis radiatus is considered to be very harmful fish. Consequently, it is necessary to take a proper preventive step against food poisoning by pufferlish ingestion.

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Toxicity of the Imported Pufferfish, Fugu flavidus ('Samchaebog'), from China (중국으로부터 수입된 삼채복(Fugu flavidus)의 독성)

  • KIM Dong-Soo;KIM Sang-Rok;LEE Myung-Ja;SEOL Myung-Hoon;JEONG Dong-Youn;KIM Hyun-Dae
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.5
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    • pp.533-538
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    • 1995
  • Ten specimens of the imported pufferfish, fugu flavidus ('Sarnchaebog'), from China were assayed for anatomical distribution of toxicity, Also, a toxic ovary of each specimen was excised, and transferred into Bio-gel P-2 column chromatography for purification of the toxins. The average toxicity of all specimens assayed was calculated to be $4.1\pm 0.5\;in\;liver,\;2.8\pm1.1\;intestine,\;0.8\pm0.5\;skin,\;2.3\pm1.5\;testis\;39.0\pm16.0\;ovary\;and\;7.0\pm2.0 MU/g$ bile, respectively; Ovary was weakly toxic, but others were non-toxic or weakly toxic. Moreover, instrumental analyses including thin layer chromatography(TLC) and electrophoresis disclosed tetrodotoxin (TTX) and anhydro tetrodotoxin (anh-TTX), respectively. The toxins of the ovary gave four peaks in high performance liquid chromatography (HPLC) whose retention times (14 and 24 min) were close to those of TTX and anh-TTX, respectively.

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Toxicity of the Pufferfish Fugu stictonotus ('Ggachilbog') Collected at a Fish Market of Pusan (시판되고 있는 까칠복(Fugu stictonotus)의 독성)

  • KIM Kyung-Chan;PARK Jin-Woo;LEE Myung-Ja;KIM Sang-Rok;KIM Dong-Soo;KIM Hyun-Dae;PARK Yeung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.28 no.1
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    • pp.31-34
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    • 1995
  • Ten specimens (5 males and 5 females) of the pufferfish, fugu stictonotus ('gachilbog'), were collected at a fish market of Pusan, Korea in July 1993, and examined for anatomical distribution of toxicity by mouse assay method. The frequency of toxic specimens was $40\%\;for\;liver,\;60\%$ for ovary, $40\%\;for\;skin\;and\;60\%$ for bile in female puffers. The highest toxicities were 107, 107, 29 and 93MU/g for liver, ovary, skin and bile, respectively; and average toxicity $\pm S.E.\;values\;were\;14\pm11,\;48\pm22.4\pm3\;and\;12\pm9MU/g,$ respectively. The range of total toxicity was shown to be from 0 to 35,316MU. The characteristic pattern of toxin distribution observed on these specimens was exhibited; both muscle and testis were non-toxic, but others were weakly toxic. Also, there was significant difference for toxicity between male and female specimens.

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Toxicity of the Grass Puffer, Takifugu niphobles (Bogseom) (복섬(Takifugu niphobles)의 독성)

  • 류창호;김동근;김종현;장준호;이종수
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.7
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    • pp.986-990
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    • 2003
  • The living Glass puffers, Takifugu niphobles (Bogseom as Korean name), 10 specimens, were purchased at Tongyeong traditional fisheries market every month from November, 2001 to October, 2002, and tested anatomical distribution of the toxicity such as muscle, skin, intestine, liver and ovary by mouse bioassay method. Significant seasonal variations of the toxicity were not shown in muscle, skin, intestine and liver except having lower toxicity in spawning season (May and June) than non-spawning seasons. 92 specimens (76.7%) out of 120 ones were non toxic (below 10 MU/g) for the edible and 28 ones (23.3%) were weakly toxic (10 MU/g∼l00 MU/g) for the non-edible in muscle ranged between 0 MU/g and 46.4 MU/g. All of those toxicity were shown over 10 MU/g in skin for the non-edible in skin ranged from 10.0 MU/g to 674.4 MU/g. Toxicity range in intestine and liver was varied between non-toxic and strongly toxic (over 1,000 MU/g) for individual specimens. Toxicity range of the ovary found only in May (7 specimens) and June (1 specimens) was 84.2 MU/g to 2,191.3 MU/g.

Difference of Toxicities among Tissues in the Pufferfish Fugu xanthopterus('Ggachibog') (까치복, Fugu xanthopterus의 조직별 독성차이)

  • KIM Hyun-Dae;JEONG Dong-Youn;KIM Dong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.24 no.6
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    • pp.363-368
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    • 1991
  • Twenty-four specimens of the pufferfish Fugu xantheptens, Korean name, 'Ggachibog', collected at a fish market of Pusan were examined for anatomical distribution of toxicity by the mouse bioassay method. Frequency of toxic specimens was 88, 75, 54, 13, 71, 80 and $71\%$, in terms of liver, intestine, skin, muscle, testis, ovary and bile, respectively. Their the highest toxicity scores were 417, 387, 112, 17, 39, 403 and 178 MU/g, respectively; and average toxicity values were $110\pm25.0(mean \pm S.E.)$, $73\pm20.3,\;17.8\pm 5.1,\;2.7\pm1.1,\;15.6\pm5.4,\;115\pm33.0\;and\;34\pm9.3 MU/g,$ respectively. A significant correlation between the toxicities of liver and intestine(r=0.93), between those of liver and skin (r=0.79) and between those of liver and ovary(r=0.83) was observed.

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Toxicity of the Tiger Puffer, Fugu rubripes rubripes, Sold at Jagalchi Fish Market in Pusan (부산시내 자갈치 어시장에서 시판되는 자주복 Fugu rubripes rubripes의 독성)

  • 김지회;이태식;이희정;김광수;박정흠;변한석;손광태
    • Journal of Food Hygiene and Safety
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    • v.15 no.1
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    • pp.46-50
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    • 2000
  • Totally, twenty seven specimens of tiger puffer, Fugu rubripes rubripes were collected at Jagalchi fish market in Pusan, Korea during January, April and September in 1995. Anatomical distribution of pufferfish toxin in tiger puffer was examined by mouse bioassay. The frequency rate of toxic specimens containing $\geq$ 10 MU/g was 14.8% in liver; 16.7% in gonad; and 14.8% in skin, and no toxin was detected in muscle. The highest toxin level found was 160 MU/g in liver, 600 MU/g in gonad and 26 MU/g in skin, and each average toxin level (mean$\pm$ standard error) was 7$\pm$6, 50$\pm$35 and 5$\pm$1 MU/g, respectively. Some specimens collected in January and April were toxic, while none of the specimens collected in September showed its toxicity. Although toxicity of tiger puffer showed the seasonal variation, tested tiger puffer was evaluated as a safe seafood fur consumption, in that an acceptable level of toxin was found in the edible muscle and skin.

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Studies on Distribution, Characterization and Detoxification of Shellfish in Korea 1. A Study on the Distribution of Paralytic Shellfish Poison (한국산 주요패류에 대한 독의 분포, 특성 및 제독에 관한 연구 1. 마비성패류독의 분포에 관하여)

  • DONG Dong-Suck;SHIN Il-Shik;CHO Hak-Rae;KIM Ji-Hoe;PYEUN Jae-Hyeung;PARK Young-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.21 no.2
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    • pp.113-126
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    • 1988
  • Paralytic shellfish poison(PSP) accmulate in shellfish as a result of feeding toxic dinoflagellates. The shellfish do not seem to be harmed by the toxins, but become toxic to humans and other animals that feed on them. The purpose of this study was to investigate the distribution and changes of PSP by species of shellfish, collected area and collected month. Also, the correlation between PSP and toxic dinoflagellate, Protogonyaulax tamarensis, was investigated. Five hundred and six samples of 13 kinds of shellfish for PSP bioassay were collected at the shellfish growing area of Pusan, Masan, Chungmu, $Samch\check{o}npo, Y\check{o}su, Mokpo and Daech\check{o}n$ located in South Korea during the study period from May, 1985 to Octcber, 1987. Most of the samples submitted were free from PSP except sea mussel, short - necked clam and ark shell. Among the intoxicated samples, PSP was most often detected in sea mussel. PSP was detected mainly in spring$(February\~May)$ in the southern coast of Korea. In case of Pusan, exceptionally, toxic sea mussel have been found even June and July in 1987. The toxicity score of toxic shellfishes examined was ranged from 23.44 to $150.26{\mu}g/100g$ of edible meat and toxicity of sea mussel was higher than other toxic shellfishes. By the study of anatomical distribution of PSP in sea mussel collected at Masan in Febuary and March, 1986, the toxin accumulated in digestive gland was about $70\%$ of all. There was no significant correlation between toxicity of sea mussel and cell numbers of P. tamarensis that one of the causitive organism of PSP during the studying period in Masan area. There was almost no difference in toxicity of sea mussel by water depth of collection, but toxicity of surface shellfish was a little higher than those of 3.5, and 7.0m depth.

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Anatomical Distribution of Paralytic Shellfish Toxin in Bay Scallops Argopecten irradians Along the Gyeongnam Coast, Korea (경남 연안 해만 가리비(Argopecten irradians)의 부위별 마비성 패류독소 분포)

  • Kim, Dong Wook;Park, Kunbawui;Ha, Kwang Soo;Ryu, Ara;Yu, Hean Jae;Jo, Seong Hae;Jo, Sung Rae;Mok, Jong Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.52 no.3
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    • pp.241-246
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    • 2019
  • To understand the characteristics of paralytic shellfish poisoning in a major production area of the bay scallop Argopecten irradians in Korea, the seasonal variation and anatomical distribution of paralytic shellfish toxin (PST) were determined in bay scallops collected from the Gyeongnam coast of Korea from March to May 2018. PST levels in bay scallops in the survey area showed remarkable seasonal variation. PST was first detected at a level of 0.42 mg/kg on April 2, 2018, and the highest toxin level (3.15 mg/kg) was recorded on April 12. Among the tissues of bay scallops, the highest proportion of PST was found in the viscera ($54.9%{\pm}17.8%$), followed by the adductor ($22.8%{\pm}10.9%$), gonads ($8.9%{\pm}4.6%$), gills ($7.1%{\pm}3.7%$), and mantle ($6.3%{\pm}.8%$). In addition, with higher PST levels in the whole tissues of bay scallops, the proportion of PST in the viscera increased, whereas those in the mantle, gill, and gonad tissues decreased. In a high-toxicity group with more than 2.0 mg/kg PST in the whole tissues, the proportion of PST in the viscera was $71.8%{\pm}6.7%$.

Toxicity of Several Puffers Collected at a Fish Market of Pusan, Korea (부산 시중에서 판매되고 있는 복어류의 독성)

  • JEONG Dong-Youn;KIM Dong-Soo;LEE Myung-Ja;KIM Sang-Rok;BYUN Dae-Seok;KIM Hyun-Dae;PARK Yeung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.27 no.6
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    • pp.682-689
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    • 1994
  • Ninety-six specimens of nine puffer fishes landed at a fish market of Pusan, Korea were assayed for anatomical distribution of toxicity. The puffers, Lagocephalus gloveri ('geommilbog'), Fugu rubripes rubripes ('jajubog'), Fugu rubripes chinesis ('geomjajubog'), Lagocephalus wheeleri ('hinmilbog') and Arothron firmamentum ('byeolbog'), were shown to be nontoxic in muscle and skin. However, toxicities in skins of four specimens of Lagocephalus gloveri and a specimen of Arothron firmamentum were more than 10MU/g In the puffer, Fugu xanthopterus ('ggachibog'), the skin showed to be weakly toxic as far as nine specimens out of 27 ones are concerned, and the muscle was nontoxic in all specimens. Meanwhile, it was noted that the puffer, Fugu vermicularis radiatus was found to be a toxic species, differing from the toxicity known so far. Their highest toxicities were 3,880, 1,191, 1,115, 219, 289, 5,620 and 753MU/g for liver, intestine, skin, muscle, testis, ovary and bile, respectively.

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