• Title/Summary/Keyword: chicken tissues

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Studies on Histological Changes of Bursa of Fabricius in Chicken Treated with Thyroxine III. Electron Microscopic Observations on Bursa of Fabricius in Chicken Administered with Thyroxine or Propylthiouracil (갑상선(甲狀腺) 호르몬이 닭의 Fabricius 낭(囊)에 미치는 조직학적변화(組織學的變化)에 관(關)한 연구(硏究) III. Thyroxine 및 Propylthiouracil을 투여(投與)한 닭의 Fabricius 낭세포(囊細胞)에 대(對)한 전자현미경적관찰(電子顯微鏡的觀察))

  • Kim, Soon Bok;Lee, Cha Soo
    • Korean Journal of Veterinary Research
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    • v.20 no.2
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    • pp.105-112
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    • 1980
  • The bursa of Fabricius from thyroxine-treated group showed increased number of large lymphocytes with well-developed cytoplasm, immunoblasts and proplasmacytes accompanied with active cell divisions. More prominent development of Golgi apparatus and mitochondria in the cytoplasm of the cells in the bursa from this group were also observed. The bursa of Fabricius from the propylthiouracil-treated group, however, distinctively revealed proliferation of fibroblasts in the interstitial tissues, decreased number of lymphocytes, and necrotic lymphocytes in the follicles.

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Anatomical and histological studies on the developing pancreas of chincken embryos (일령에 따른 닭 태자 췌장의 해부학적 및 조직학적 연구)

  • Ku, Sae-kwang;Lee, Jae-hyun;Lee, Hyeung-sik
    • Korean Journal of Veterinary Research
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    • v.39 no.6
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    • pp.1049-1056
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    • 1999
  • Anatomical and histological changes were studied in the dorsal, ventral, third and splenic lobes of the pancreas of the chicken embryos (8 days of incubation, 10 days of incubation to hatching). From 13 days of incubation, all four pancreatic lobes, namely, dorsal, ventral, third and splenic lobes were observed. Histologically, the pancreas of 10-14 days of incubation were consisted of mesenchymal tissue, exocrine acini and pancreatic islets. But mesenchymal tissues were disappeared from 15 days of incubation. The pancreatic ducts were observed from 14 days of incubation. The dark and light typed pancreatic islets were observed in splenic lobe from 13 days of incubation, in the third lobe from 11 days of incubation, and in the dorsal lobe from 13 days of incubation. But no dark typed islets were observed in the ventral lobes.

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Study on the Normal Distribution of Mast Cell in Domestic Animals and It's Response in Various Infections (가축(家畜)의 장기(臟器)와 조직(組織)에 존재(存在)하는 조직비만세포(組織肥滿細胞)의 정상분포(正常分布)와 감염증시(感染症時)의 태도(態度)에 관한 연구(硏究))

  • Kim, Hwa Sik;Lee, Jae Hyun
    • Korean Journal of Veterinary Research
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    • v.12 no.2
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    • pp.165-175
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    • 1972
  • The frequency distribution and morphological characteristics of tissue mast cells in the various tissues of normal domestic animals (bovine, swine, dog and chicken) and systematically infected (Hog cholera, Canine distemper and Newcastle disease) animals were studied. The results were as follows: 1 In cattle, density of mast cells was higher in foetus (bovine) and young animals than in adults Differences in frequency distribution among individual animals were also observed. 2. In chicken, the highest number of mast cells was found in age group of 15 to 40 days, the moderate number in age group of one to 10 days, and the lowest number in age group of 40 days or older. 3. The morphologically, mast cells were usually round, ovoid, spindle, oval and irregular, and particularly in ovary of bovine, it was usually round and ovoid forms. 4. The largest numbers of mast cells were shown in ovary of bovine, intestine of swine and dog, and proventriculum of chicken. 5. In the systemic infections, the number of mart cells usually tends to increase.

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Gene Expression of Taurine Transporter and Taurine Biosynthetic Enzyme During Embryonic Development

  • Yoon, Seyng-Hyun;Kim, Ha-Won
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 2003.11a
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    • pp.87-87
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    • 2003
  • Taurine (2-aminoethanesulfonic acid, $^{+}NH_3CH_2CH_2{SO_3}^{-}$) is endogenous $\beta$-amino acid which is essential in fetal nutrition and development and is present in abundant quantities in several tissues of fetus. In utero, taurine deficiency causes abnormal development and abnormal function of brain, retina, kidney and myocardium. Thus, transfer of taurine into fetus is important during embryonic development. Taurine transporter (TauT) has 12 hydrophobic membrane -spanning domains, which is typical of the $Na^{+}$- and $Cl^{-}$-dependent transporter gene family. Among the various biosynthetic enzymes of taurine, cysteine sulfinic acid decarboxylase (CSD) is the rate-limiting enzyme for biosynthesis of taurine. However, the enzyme activities of taurine biosynthesis are limited in early stage of embryonic development. To analyze the expression period of TauT and CSD during embryonic development, we have investigated the gene expression of TauT and CSD using reverse transcriptase polymerase chain reaction (RT-PCR) in mouse and chicken embryos. RT-PCR anaylsis revealed that both TauT and CSD mRNAs were already expressed at Day-4.5 in mouse embryo. In chicken whole embryo, TauT and CSD mRNAs began to appear on developing times of 48 hrs and 12 hrs, respectively. TauT mRNA was detected in the organs of heart, brain and eye of the day-3 chicken embryo. Our data show that TauT and CSD mRNAs were expressed in early stage of embryonic development.

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Studies on Histological Changes of Bursa of Fabricius in Chicken Treated with Thyroxine; I. Light Microscopic Observations on Bursa of Fabricius Including Other Organs in Chicken Administrated with Thyroxine or PropylthiouraciI (갑상선(甲狀腺) 호르몬이 닭의 Fabricius 낭(囊)에 미치는 조직학적변화(組織學的變化)에 관(關)한 연구(硏究) I. Thyroxine 및 Propylthiouracil을 투여(投與)한 닭의 Fabricius낭(囊) 및 기타(其他) 장기(臟器) 대(對)한 광학현미경적관찰(光學顯微鏡的觀察))

  • Kim, Soon Bok;Lee, Cha Soo
    • Korean Journal of Veterinary Research
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    • v.20 no.1
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    • pp.17-24
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    • 1980
  • In order to know the effects of thyroid hormone on the bursa of Fabricius in chicken, the bursae were studied with the light microscope after administration of thyroxine(TX) or propylthiouracil(PPT). Macroscopically, the bursa of TY-treated group showed increase in size and thickened folds. while those of the PPT-treated group decrease in size, compared with those of control group. In the light microscopic studies, the bursa of Fabricius of the TX-treated group showed active cell-divisions in the medulla, and increased number of pyroninophilic large lymphocytes and plasma cells containing PAS positive materials in the cytoplasms. On the other hand, the bursa from PPT-treated group revealed decreased number of lymphocytes, significant increase of necrotic lymphocytes in the follicles, and the proliferation of the interfollicular connective tissues. A large number of pyroninophilic lymphocytes and plasma cells were also appeared in the spleen of the TX-treated group.

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Chicken serum uric acid level is regulated by glucose transporter 9

  • Ding, Xuedong;Peng, Chenglu;Li, Siting;Li, Manman;Li, Xinlu;Wang, Zhi;Li, Yu;Wang, Xichun;Li, Jinchun;Wu, Jinjie
    • Animal Bioscience
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    • v.34 no.4
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    • pp.670-679
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    • 2021
  • Objective: Glucose transporter 9 (GLUT9) is a uric acid transporter that is associated with uric absorption in mice and humans; but it is unknown whether GLUT9 involves in chicken uric acid regulation. This experiment aimed to investigate the chicken GLUT9 expression and serum uric acid (SUA) level. Methods: Sixty chickens were divided into 4 groups (n = 15): a control group (NC); a sulfonamide-treated group (SD) supplemented with sulfamonomethoxine sodium via drinking water (8 mg/L); a fishmeal group (FM) supplemented with 16% fishmeal in diet; and a uric acid-injection group (IU), where uric acid (250 mg/kg) was intraperitoneally injected once a day. The serum was collected weekly to detect the SUA level. Liver, kidney, jejunum, and ileum tissues were collected to detect the GLUT9 mRNA and protein expression. Results: The results showed in the SD and IU groups, the SUA level increased and GLUT9 expression increased in the liver, but decreased in the kidney, jejunum, and ileum. In the FM group, the SUA level decreased slightly and GLUT9 expression increased in the kidney, but decreased in the liver, jejunum, and ileum. Correlation analysis revealed that liver GLUT9 expression correlated positively, and renal GLUT9 expression correlated negatively with the SUA level. Conclusion: These results demonstrate that there may be a feedback regulation of GLUT9 in the chicken liver and kidney to maintain the SUA balance; however, the underlying mechanism needs to be investigated in future studies.

Gene expression of fatty acid binding protein genes and its relationship with fat deposition of Thai native crossbreed chickens

  • Tunim, Supanon;Phasuk, Yupin;Aggrey, Samuel E.;Duangjinda, Monchai
    • Animal Bioscience
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    • v.34 no.4
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    • pp.751-758
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    • 2021
  • Objective: The objectives of this study were to investigate the relationship between the mRNA expression of adipocyte type fatty acid binding protein (A-FABP) and heart type FABP (H-FABP) in Thai native chicken crossbreeds and evaluate the level of exotic inclusion in native chicken that will improve growth while maintaining its relatively low carcass fat. Methods: The fat deposition traits and mRNA expression of A-FABP and H-FABP were evaluated at 6, 8, 10, and 12 weeks of age in 4 chicken breeds (n = 8/breed/wk) (100% Chee breed [CH] [100% Thai native chicken background], CH male and broiler female [Kaimook e-san1; KM1] [50% CH background], broiler male and KM1 female [Kaimook e-san2; KM2] [25% CH background], and broiler [BR]) using abdominal fat (ABF) and muscular tissues. Results: The BR breed was only evaluated at 6 weeks of age. At week 6, the CH breed had a significantly lower A-FABP expression in ABF and intramuscular fat (IF) compared with the other breeds. At 8 to 12 weeks, the KM2 groups showed significant upregulation (p<0.05) of A-FABP in both ABF and IF compared to the CH and KM1 groups. The expression of H-FABP did not follow any consistent pattern in both ABF and IF across the different ages. Conclusion: Some level of crossbreeding CH chickens can be done to improve growth rate while maintaining their low ABF and IF. The expression level of A-FABP correlate with most fat traits. There was no consistency of H-FABP expression across breed. A-FABPs is involved in fat deposition, genetic markers in these genes could be used in marker assisted studies to select against excessive fat accumulation.

Molecular analysis of chicken interferon-alpha inducible protein 6 gene and transcriptional regulation

  • Jeong-Woong Park;Marc Ndimukaga;Jaerung So;Sujung Kim;Anh Duc Truong;Ha Thi Thanh Tran;Hoang Vu Dang;Ki-Duk Song
    • Journal of Animal Science and Technology
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    • v.65 no.1
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    • pp.183-196
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    • 2023
  • Interferon-alpha inducible protein 6 (IFI6) is an interferon-stimulated gene (ISG), belonging to the FAM14 family of proteins and is localized in the mitochondrial membrane, where it plays a role in apoptosis. Transcriptional regulation of this gene is poorly understood in the context of inflammation by intracellular nucleic acid-sensing receptors and pathological conditions caused by viral infection. In this study, chicken IFI6 (chIFI6) was identified and studied for its molecular features and transcriptional regulation in chicken cells and tissues, i.e., lungs, spleens, and tracheas from highly pathogenic avian influenza virus (HPAIV)-infected chickens. The chIFI6-coding sequences contained 1638 nucleotides encoding 107 amino acids in three exons, whereas the duck IFI6-coding sequences contained 495 nucleotides encoding 107 amino acids. IFI6 proteins from chickens, ducks, and quail contain an IF6/IF27-like superfamily domain. Expression of chIFI6 was higher in HPAIV-infected White Leghorn chicken lungs, spleens, and tracheas than in mock-infected controls. TLR3 signals regulate the transcription of chIFI6 in chicken DF-1 cells via the NF-κB and JNK signaling pathways, indicating that multiple signaling pathways differentially contribute to the transcription of chIFI6. Further research is needed to unravel the molecular mechanisms underlying IFI6 transcription, as well as the involvement of chIFI6 in the pathogenesis of HPAIV in chickens.

NO Synthase Activities and Methylarginines Contents in the Pancreatic Tissues of Various Animals (수종동물의 췌장조직내 NO Synthase 활성도 및 Methylarginines 함량)

  • Kim, Yong-Kee;Park, Seung-Hee;Nam, Suk-Woo;Seo, Dong-Wan;Hong, Sung-Youl;Lee, Hyang-Woo
    • YAKHAK HOEJI
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    • v.38 no.2
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    • pp.184-190
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    • 1994
  • The activities of nitric oxide synthase and the contents of methylarginines were investigated in the pancreatic tissues of various animals by citrulline-forming method and HPLC, respectively. The high level of in vitro NO synthase activity was detected in chicken pancreas whereas MMA, the strong competitive inhibitor for NO synthase, was detected as trace in the same tissue. On the other hand, the low level of NO synthase activity was observed in the porcine pancreas while the contents of MMA were high. However, it was not possible to find any relationship between NO synthase activities and the contents of dimethylarginines at present time. D'MA was equally distributed among the pancreatic tissues of various animals but DMA was not.

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Genome-wide identification, organization, and expression profiles of the chicken fibroblast growth factor genes in public databases and Vietnamese indigenous Ri chickens against highly pathogenic avian influenza H5N1 virus infection

  • Anh Duc Truong;Ha Thi Thanh Tran;Nhu Thi Chu;Huyen Thi Nguyen;Thi Hao Vu;Yeojin Hong;Ki-Duk Song;Hoang Vu Dang;Yeong Ho Hong
    • Animal Bioscience
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    • v.36 no.4
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    • pp.570-583
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    • 2023
  • Objective: Fibroblast growth factors (FGFs) play critical roles in embryo development, and immune responses to infectious diseases. In this study, to investigate the roles of FGFs, we performed genome-wide identification, expression, and functional analyses of FGF family members in chickens. Methods: Chicken FGFs genes were identified and analyzed by using bioinformatics approach. Expression profiles and Hierarchical cluster analysis of the FGFs genes in different chicken tissues were obtained from the genome-wide RNA-seq. Results: A total of 20 FGF genes were identified in the chicken genome, which were classified into seven distinct groups (A-F) in the phylogenetic tree. Gene structure analysis revealed that members of the same clade had the same or similar exon-intron structure. Chromosome mapping suggested that FGF genes were widely dispersed across the chicken genome and were located on chromosomes 1, 4-6, 9-10, 13, 15, 28, and Z. In addition, the interactions among FGF proteins and between FGFs and mitogen-activated protein kinase (MAPK) proteins are limited, indicating that the remaining functions of FGF proteins should be further investigated in chickens. Kyoto encyclopedia of genes and genomes pathway analysis showed that FGF gene interacts with MAPK genes and are involved in stimulating signaling pathway and regulating immune responses. Furthermore, this study identified 15 differentially expressed genes (DEG) in 21 different growth stages during early chicken embryo development. RNA-sequencing data identified the DEG of FGFs on 1- and 3-days post infection in two indigenous Ri chicken lines infected with the highly pathogenic avian influenza virus H5N1 (HPAIV). Finally, all the genes examined through quantitative real-time polymerase chain reaction and RNA-Seq analyses showed similar responses to HPAIV infection in indigenous Ri chicken lines (R2 = 0.92-0.95, p<0.01). Conclusion: This study provides significant insights into the potential functions of FGFs in chickens, including the regulation of MAPK signaling pathways and the immune response of chickens to HPAIV infections.