• Title/Summary/Keyword: Hemocyte

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Investigation of Optimal Temperature and Salinity for Long Distance Transport of the pacific abalone (Haliotis discus hannai) (참전복(Haliotis discus hannai)의 장거리 수송을 위한 적정 수온 및 염분 조건 탐색)

  • Yang, Sung Jin;Min, Byung Hwa;Lee, Jeong Young;Jun, Je-Cheon;Myeong, Jeong-In
    • Journal of Marine Life Science
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    • v.2 no.2
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    • pp.39-48
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    • 2017
  • This study was carried out to investigate the stress response of pacific abalone exposed to various water temperatures (4, 6, 8, and 10℃) and salinities (26, 30, and 34 psu) for 7 days, with the aim of finding optimum conditions for long-distance ocean transport of pacific abalone. At the end of the experiments, the survival rate was ranged from 98.7~100% at 8 and 10℃ but dropped to 25~55% at 4℃ in all salinity levels. The levels of SOD and glutathione in hemolymph were significantly higher at 4 and 6℃ than the control in all salinity groups, indicating that these temperatures induce severe stress in pacific abalone. It was found that THC was lowest at 6℃ in the 26 psu groups. The study showed that the hemocyte of pacific abalone populations mostly consisted of blast-like cells and hyalinocytes with the ratio of hyalinocytes being significantly lower at 4 and 6℃ than the other temperatures in the 26 psu groups. Percentages of apoptotic cells and necrotic cells were higher in the 26 psu group and 4 and 6℃ temperature groups. These results explicit that pacific abalone was exposed to greater stress at 26 psu and at 4 and 6℃ but experienced no significant higher stress at 30 and 34 psu and 8 and 10℃. It was therefore concluded that the optimum temperature and salinity for the long distance transport of pacific abalone range from 8~10℃ and 30~34 psu, respectively.

Differentially expressed genes in Penaeus monodon hemocytes following infection with yellow head virus

  • Pongsomboon, Siriporn;Tang, Sureerat;Boonda, Suleeporn;Aoki, Takashi;Hirono, Ikuo;Yasuike, Motoshige;Tassanakajon, Anchalee
    • BMB Reports
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    • v.41 no.9
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    • pp.670-677
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    • 2008
  • A cDNA microarray composed of 2,028 different ESTs from two shrimp species, Penaeus monodon and Masupenaeus japonicus, was employed to identify yellow head virus (YHV)-responsive genes in hemocytes of P. monodon. A total of 105 differentially expressed genes were identified and grouped into five different clusters according to their expression patterns. One of these clusters, which comprised five genes including cathepsin L-like cysteine peptidase, hypothetical proteins and unknown genes, was of particular interest because the transcripts increased rapidly ($\leq$ 0.25 hours) and reached high expression levels in response to YHV injection. Microarray data were validated by realtime RT-PCR analyses of selected differentially expressed transcripts. In addition, comparative analysis of the hemocyte transcription levels of three of these genes between surviving and non-surviving shrimp revealed significantly higher expression levels in surviving shrimp.

Ultrastructure of the Laval Hemocytes in Sericinus montela Grey (Lepidoptera: Papilionidae) (꼬리명주나비(Sericinus montela Grey) 유충혈구의 미세구조)

  • 채순용;김상석;권선방;양희영
    • Korean journal of applied entomology
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    • v.32 no.1
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    • pp.90-100
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    • 1993
  • Ultrastructure of the larval hemocytes in Sericinus montela Grey was observed with the transmission and scanning electron microscope. The 5 cell types, according to Breh lin and Zachary(1986), identified in the hemocytes of the last instar S. montela larva were; prohemocyte, plasmatocyte, granular cell, spherule cell and oenocytoid. Prohemocytes could be easily charaterized by a relatively large nucleus nd poorly developed cytoplasmic organelles. Plasmatocytes were relatively large spindle-shaped or oval cells with fibrous bundles. The spindle-shaped plasmatocytes, especially, were characterized by a well developed, elongated nucleus. Granular cells had various granules, either morphologically or in electron density, and highly developed cytoplasmic organelles in the cytoplasm. They had numerous cytoplasmic processes. Spherule cells were characterized by cytoplasmic spherules containing fine materials, which are released into the hemolymph upon maturity of the cell. Oenocytoids consisted of electron dense materials and the organelles in cytoplasm were poorly developed.

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Toxicity of doxycycline, a broad-spectrum semi-synthetic antibiotic, in Pacific whiteleg shrimp (Litopenaeus vannamei) (흰다리새우(Litopenaeus vannamei)에서 광범위 반합성 항생제 doxycycline의 독성연구)

  • Lee, Chae Won;Bae, Jun Sung;Yang, Chan Yeong;Jeoung, Eun Ha;Lee, Ji-Hoon;Park, Kwan Ha
    • Journal of fish pathology
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    • v.33 no.1
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    • pp.45-53
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    • 2020
  • Doxycycline is a semi-synthetic broad-spectrum antibiotic, and it has been used to get rid of bacteria in animals and humans. The use of antibiotics has greatly contributed to the aquaculture production although its misuse sometimes presents public health problems. This study was performed to investigate the toxic effects of doxycycline on whiteleg shrimp (Litopenaeus vannamei) administered for possible infection treatments. The shrimp were allocated into four groups and doxycycline was fed three times a day for 7 days at 0, 20, 50 and 100 mg/kg to each group. After 24 hr following the 7-day treatment, hemolymph and hepatopancreas were used for blood and biochemical analysis: Total hemocyte counts, Total protein, Total cholesterol, Gluscose, Glutamic pyruvic transaminase, Glutamic oxaloacetic transaminase, Glutathione peroxidase, Superoxide dismutase, Glutathione-s-transferases, Total antioxidant capacity colorimetric and Acid phosphatase. In addition, histopathological examination was performed on the hepatopancreas and muscle. It was observed that body weight gain was significantly retarded in 100 mg/kg doxycycline group. Doxycycline was found to induce biochemical or functional disorders at 100 mg/kg as observed many of the blood and biochemical parameters were significantly reduced. In conclusion, it was judged that there will be no major toxicity problems with doxycycline when used for shrimp aquaculture at regular doses.

Iron Homeostasis Controls Myeloid Blood Cell Differentiation in Drosophila

  • Yoon, Sunggyu;Cho, Bumsik;Shin, Mingyu;Koranteng, Ferdinand;Cha, Nuri;Shim, Jiwon
    • Molecules and Cells
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    • v.40 no.12
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    • pp.976-985
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    • 2017
  • Iron is an essential divalent ion for aerobic life. Life has evolved to maintain iron homeostasis for normal cellular and physiological functions and therefore imbalances in iron levels exert a wide range of consequences. Responses to iron dysregulation in blood development, however, remain elusive. Here, we found that iron homeostasis is critical for differentiation of Drosophila blood cells in the larval hematopoietic organ, called the lymph gland. Supplementation of an iron chelator, bathophenanthroline disulfate (BPS) results in an excessive differentiation of the crystal cell in the lymph gland. This phenotype is recapitulated by loss of Fer1HCH in the intestine, indicating that reduced levels of systemic iron enhances crystal cell differentiation. Detailed analysis of Fer1HCH-tagged-GFP revealed that Fer1HCH is also expressed in the hematopoietic systems. Lastly, blocking Fer1HCH expression in the mature blood cells showed marked increase in the blood differentiation of both crystal cells and plasmatocytes. Thus, our work suggests a relevance of systemic and local iron homeostasis in blood differentiation, prompting further investigation of molecular mechanisms underlying iron regulation and cell fate determination in the hematopoietic system.

Investigation of Suitable Temperature and Salinity Ranges for Long-distance Transport of the Rockfish Sebastes schlegeli (조피볼락(Sebastes schlegeli)의 장거리 수송을 위한 적정 수온 및 염분 조건 탐색)

  • Yang, Sung Jin;Lee, Jeong Young;Jun, Je-Cheon;Myeong, Jeong-In;Min, Byung Hwa
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.50 no.1
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    • pp.25-31
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    • 2017
  • The optimum temperature and salinity for long-distance transportation of rockfish Sebastes schlegeli were investigated by assessing hematological characteristics and hemocyte mortality. The possible effects of the interaction of temperature and salinity on these attributes were also investigated. No significant difference was found in hematocrit and hemoglobin among experimental conditions. Glucose levels were highest in fish exposed to salinities of 34 psu ($4^{\circ}C$), 18 psu ($4-6^{\circ}C$) and 10 psu ($4-8^{\circ}C$). Cortisol levels were elevated in the lowest temperature group ($4^{\circ}C$), but upper limits decreased with decreasing salinity. AST and ALT increased as temperature decreased at salinities lower than 26 psu. The ratio of living cells was 99.0-99.6% in all experimental groups. The percentage of necrotic cells was highest in fish exposed to salinities of 34 psu ($4^{\circ}C$), 18 psu ($6-8^{\circ}C$), and 10 psu ($4-8^{\circ}C$). The percentage of necrotic cells decreased significantly as temperature and salinity decreased, indicating that both salinity and the interaction of salinity and temperature affected cell necrosis.

Survival Rates and Physiological Response of Pacific Abalone Haliotis discus hannai Held in Live Fish Containers (적정 수송 조건하의 활어용 컨테이너 내 참전복(Haliotis discus hannai)의 생존 및 생리 변화 구명)

  • Yang, Sung Jin;Jun, Je-Cheon;Kang, Hee Woong;Park, Noh Back;Min, Byung Hwa
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.51 no.3
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    • pp.238-247
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    • 2018
  • This study investigated survival rates and physiological responses in Pacific abalone (Haliotis discus hannai) to 18 days of containment in live fish containers ($8^{\circ}C$, 34 psu). The investigation was divided into three periods: before, during, and recovery after transportation. The overall survival rate was greater than 99%. Glucose, aspartate aminotransferase (AST) and alanine aminotransferase (ALT) rose immediately on the first day of containment, but then gradually returned to normal levels. $NH_3$ continued to rise after the first day, but during the recovery period it decreased to a level not significantly different from that of the control group. $Na^+$ and osmolality did not show any abnormal changes. After recovery, superoxide dismutase (SOD) was not significantly different from control. Abalone in the experimental group had lower glutathione reductase (GR) than control. The hyalinocyte ratio fell immediately after confinement, but then gradually increased until it reached a normal level. The ratios of apoptotic and necrotic cells indicated no specific variations in hemocyte viability. Histological changes in the epidermal layer and muscle layer of the foot were not significantly different from those seen in the control group. The experimental data obtained in this study suggest that live fish containers may be used for transport of Pacific abalone without significantly impacting their physiology or survival rates.

Study on the Detection of In vivo and In vitro Hemocytic Pathway in Grasshopper, Euprepicnemis shirakii (메뚜기 체내와 체외에서 혈구생성 경로 추적에 관한 연구)

  • Chang, Byung-Soo
    • Applied Microscopy
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    • v.33 no.2
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    • pp.131-143
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    • 2003
  • A Differentiating pathway of hemocytes in vitro and in vivo of grasshopper, Euprepocnemis shirakii was described using light and electron microscopes. In the interior of body, the stem cells of the hemopoietic organ differentiated into six types of cells respectively which are prohemoyte, plasmatocyte, granulocyte I, granulocyte II, spherulocyte and oenocytoid. The formation of these hemocytes was derived from the stem cells surrounded by a reticular cell. Hemopoietic tissue cultured in the insect media differentiated different hemocytes, but none of them underwent any mitotic division. Morphological features of the cultured cells in media were essentially the same as those of the hemocytes differentiated from the stem cells in vivo. These results were shown that each stem cell could differentiate into different types of hemocytes. It was confirmed that the stem cells possessed the pluripotent differentiation ability to directly each hemocyte, and that the once formed hemocytes in vivo and in vitro didn t undergo further transformation to other hemocytes. The maintenance of circulating hemocytes in grasshopper had been depended on the widely spreading hemopoietic organ situated in the upper surface of the dorsal alary muscle and located on the first to eighth segments.

The Fine Structure of Spider (Araneus ventricosus) Hemocytes (산왕거미 (Araneus ventricosus) 혈구의 미세구조)

  • Choi, Jae-Young;Moon, Myung-Jin
    • Applied Microscopy
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    • v.36 no.4
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    • pp.259-269
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    • 2006
  • Hemocytes of the spider Araneus ventricosus were investigated with histochemistry, density analysis of percoll gradient, and fine structural examinations using transmission electron microscope. The hemocytes of this spider were classified into two major groups: granulocytes and non-granulocytes. The granular hemocytes were subdivided into three subtypes according to their histochemical properties which are eosinophilic granuloctes(EGs), basophilic granulocytes(BGs) and cyanocytes. The EGs, which have small granules within the cytoplasm comprise about 5% of the total henocytes. However the granules of BGs are larger than those of HGs. The cyanocytes were characterized to contain hemocyanin granules in their cytoplasm. On the other hand, the non-granulocytes were divided into three subtypes; hyaline leucocytes, oenocytoids, and molting homocytes. The hyaline leucocytes are the most abundant and the smallest hemocyte type in this spider. The oenocytoids that have $10{\sim}15{\mu}m$ in diameter are mostly found at the marginal region of the myocardium in the heart tube. The molting hemocytes, which only appeared during the molting period, contains plenty of glycogen particles in their cytoplasm.

Molt-related Changes in the Granulocytes of the Spider Araneus ventricosus (Araneae: Arachnida) (탈피에 따른 산왕거미(Araneus ventricosus) 과립혈구의 미세구조 변화)

  • Moon, Myung-Jin
    • Applied Microscopy
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    • v.38 no.2
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    • pp.97-105
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    • 2008
  • The fine structural modification of the granulocytes between the molt and intermolt period were investigated by the transmission electron microscopy. The granular hemocytes of the spider Araneus ventricosus were composed of three subtypes: eosinophilic granulocytes (EGs), basophilic granulocytes (BGs) and cyanocytes. Both of the EGs and BGs have electron dense granules within their cytoplasms, however the granules of BGs are larger than those of EGs. During the molt period, some of the EGs have fine structural modification in their cell organelles including formation of phagosomes as a result of active phagocytosis. However, the BGs have no phagosomes, but electron densities of the granules are changed to lower states than the intermolt period. The cyanocyte is the biggest hemocyte among the granulocytes. They contain numerous hemocyanin crystals in the cytoplasm with some electron-lucent vacuoles. During the molt period, some of the cyanocytes are changed to irregular shapes. High magnification electron micrographs reveal that the lattice sub-structure of the hemocyanin crystals are very similar to those of microtubules, and each tubule is composed of approximately 20 filaments with fine fibrillar structure.