1.Bilateral variant locations of the musculocutaneous nerve during ultrasound-guided bilateral axillary brachial plexus block: A case report.
Byung Gun KIM ; Choon Soo LEE ; Chunwoo YANG ; Kyungchul SONG ; Wonju NA ; Hyunkeun LIM
Anesthesia and Pain Medicine 2016;11(2):207-210
Ultrasound-guided peripheral nerve block has several advantages over traditional techniques for nerve localization. One is a reduction of local anesthetic dose required for successful nerve block, which might allow bilateral brachial plexus block to be performed without risk of local anesthetic toxicity. Another advantage is the ability to detect anatomical variations in nerve and vascular anatomy. We report the case of a patient with unilateral anatomical variations of the musculocutaneous nerve found in ultrasound-guided bilateral axillary brachial plexus block.
Anatomic Variation
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Brachial Plexus*
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Humans
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Musculocutaneous Nerve*
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Nerve Block
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Peripheral Nerves
2.Cross-linking of CD80 and CD86 Diminishes Expression of CD54 on EBV-transformed B Cells through Inactivation of RhoA and Ras.
Ga Bin PARK ; Yeong Seok KIM ; Hyunkeun SONG ; Seonghan KIM ; Dong Man PARK ; Wang Jae LEE ; Dae Young HUR
Immune Network 2011;11(6):390-398
BACKGROUND: Epstein Barr virus (EBV) infected B cells are transformed into lymphoblastoid cell lines. Some researchers suggested some a few similarities between this process and carcinogenesis. We observed the expression of CD80 and CD86, co-stimulatory molecules on EBV-transformed B cells and changes of CD54 expression after stimulation of CD80 and CD86. METHODS: CD80 and CD86 were stimulated using anti-CD80 and anti-CD86 monoclonal antibodies. To assess apoptosis and surface protein expression, flow cytometric analysis was performed. Intracellular signal molecules were evaluated by RT-PCR and immunoblot. Morphology and localization of proteins were examined using inverted or confocal microscope. RESULTS: Cross-linking of CD80 and CD86 induced apoptosis and interfered with proliferation of EBV-transformed B cells, and dispersion of clumped cells. We also examined that their stimulation induced ROS accumulation and reduced CD54 expression. Interestingly, we observed that CD80 and CD86 diminished the expression of CD54 in different methods. Both CD80 and CD86 down-regulated activation of focal adhesion kinase. CD80 stimulus inhibited CD54 expression through mainly RhoA inactivation, while CD86 down-regulated Ras and JNK phosphorylation. CONCLUSION: These results suggest that co-stimulatory CD80 and CD86 molecules, expressed EBV-transformed B cells, may play a role in apoptosis and cell adhesion.
Antibodies, Monoclonal
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Apoptosis
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B-Lymphocytes
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Cell Adhesion
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Cell Line
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Focal Adhesion Protein-Tyrosine Kinases
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Herpesvirus 4, Human
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Proteins
3.Erratum: Comparison of doxorubicin-induced cardiotoxicity in the ICR mice of different sources.
Sou Hyun KIM ; Keuk Jun KIM ; Joung Hee KIM ; Jae Hwan KWAK ; HyunKeun SONG ; Joon Young CHO ; Dae Youn HWANG ; Kil Soo KIM ; Young Suk JUNG
Laboratory Animal Research 2017;33(4):319-319
One of the authors' names was misprinted.
4.Erratum: Comparative study of fatty liver induced by methionine and choline-deficiency in C57BL/6N mice originating from three different sources.
Sou Hyun KIM ; Yong LIM ; Ju Bin PARK ; Jae Hwan KWAK ; Keuk Jun KIM ; Joung Hee KIM ; HyunKeun SONG ; Joon Young CHO ; Dae Youn HWANG ; Kil Soo KIM ; Young Suk JUNG
Laboratory Animal Research 2017;33(4):318-318
One of the authors' names was misprinted.
5.Comparision of doxorubicin-induced cardiotoxicity in the ICR mice of different sources.
Sou Hyun KIM ; Keuk Jun KIM ; Joung Hee KIM ; Jae Hwan KWAK ; HyunKeun SONG ; Joon Young CHO ; Dae Youn HWANG ; Kil Soo KIM ; Young Suk JUNG
Laboratory Animal Research 2017;33(2):165-170
Doxorubicin is a widely used chemotherapeutic agents and is now part of standard therapeutic regimens for a variety of cancers (eg, hematopoietic malignancies and advanced solid tumors of the breast, ovary, thyroid, and bone). However, a potentially lethal and dose-dependent cardiotoxicity that appears within a short time after treatment limits the usage of doxorubicin in cancer patients. Although the mechanism of doxorubicin-induced cardiotoxicity is not completely understood, it is thought that free radical-induced oxidative stress and excessive production of reactive oxygen species are primary drivers of its toxicity. In this study, we compared the doxorubicin-induced cardiotoxicity of ICR mice obtained from three different sources and evaluated the utility of Korl:ICR stock established by the Korean FDA. Because doxorubicin-induced cardiotoxicity is thought to involve the excessive generation of ROS followed by oxidative stress, we determined the representative tissue index of oxidation, lipid peroxidation, and antioxidant, glutathione (GSH), as well as the parameters of heart injury. Doxorubicin treatment successfully induced cardiotoxicity as evidenced by histological examination and serum parameters (eg, levels of LDH and CK activities) in ICR mice. It was accompanied by increased lipid peroxidation and a decrease in both cysteine and GSH, further supporting previous reports that oxidative stress is a potential mechanism of doxorubicin-induced cardiotoxicity. Of interest, we did not observe a significant difference in doxorubicin-induced cardiotoxicity among mice of different origins. Collectively, our results suggest that Korl:ICR strain may be useful in the research of doxorubicin-induced cardiotoxicity.
Animals
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Breast
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Cardiotoxicity*
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Cysteine
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Doxorubicin
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Female
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Glutathione
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Heart Injuries
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Hematologic Neoplasms
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Humans
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Lipid Peroxidation
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Mice
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Mice, Inbred ICR*
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Ovary
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Oxidative Stress
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Reactive Oxygen Species
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Thyroid Gland
6.Comparative study of fatty liver induced by methionine and choline-deficiency in C57BL/6N mice originating from three different sources.
Sou Hyun KIM ; Yong LIM ; Ju Bin PARK ; Jae Hwan KWAK ; Keuk Jun KIM ; Joung Hee KIM ; HyunKeun SONG ; Joon Young CHO ; Dae Youn HWANG ; Kil Soo KIM ; Young Suk JUNG
Laboratory Animal Research 2017;33(2):157-164
Non-alcoholic fatty liver disease (NAFLD) is believed to be the most prevalent liver disease worldwide and a major cause of chronic liver injury. It is characterized by lipid accumulation in the absence of significant alcohol consumption and frequently progresses to steatohepatitis, liver fibrosis, and hepatocellular carcinoma. Although many studies have been conducted to better understand NAFLD since it was first recognized, there are still many gaps in knowledge of etiology, prognosis, prevention and treatment. Methionine-choline deficient (MCD) diet, a well-established experimental model of NAFLD in rodents, rapidly and efficiently produces the clinical pathologies including macrovesicular steatosis and leads to disease progression. In this study, we measured the response to MCD diet in C57BL/6N mice obtained from three different sources; Korea NIFDS, USA, and Japan. We evaluated changes in body weight, food consumption, and relative weights of tissues such as liver, kidney, gonadal white adipose tissue, inguinal white adipose tissue, and brown adipose tissue. These basic parameters of mice with an MCD diet were not significantly different among the sources of mice tested. After 3 weeks on an MCD diet, histopathological analyses showed that the MCD diet induced clear fat vacuoles involving most area of the acinus in the liver of all mice. It was accompanied by increased serum activities of alanine aminotransferase and aspartate aminotransferase, and decreased levels of serum triglyceride and cholesterol. In conclusion, the response of C57BL6N mice originating from different sources to the MCD diet showed no significant differences as measured by physiological, biochemical, and histopathological parameters.
Adipose Tissue, Brown
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Adipose Tissue, White
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Alanine Transaminase
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Alcohol Drinking
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Animals
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Aspartate Aminotransferases
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Body Weight
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Carcinoma, Hepatocellular
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Cholesterol
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Diet
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Disease Progression
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Fatty Liver*
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Gonads
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Japan
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Kidney
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Korea
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Liver
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Liver Cirrhosis
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Liver Diseases
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Methionine*
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Mice*
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Models, Theoretical
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Non-alcoholic Fatty Liver Disease
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Pathology
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Prognosis
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Rodentia
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Triglycerides
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Vacuoles
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Weights and Measures
7.Selenium Inhibits Metastasis of Murine Melanoma Cells through the Induction of Cell Cycle Arrest and Cell Death.
Hyunkeun SONG ; Indo HUR ; Hyun Jin PARK ; Joohyung NAM ; Ga Bin PARK ; Kyoung Hye KONG ; Young Mi HWANG ; Yeong Seok KIM ; Dae Ho CHO ; Wang Jae LEE ; Dae Young HUR
Immune Network 2009;9(6):236-242
BACKGROUND: Melanoma is the most fatal form of skin cancer due to its rapid metastasis. Recently, several studies reported that selenium can induce apoptosis in melanoma cells. However, the precise mechanism remains to be elucidated. In this study, we investigated the effect of selenium on cell proliferation in murine melanoma and on tumor growth and metastasis in C57BL/6 mice. METHODS: Cell proliferation was measured by MTT assay in selenium-treated melanoma cells. Cell cycle distribution was analysized by staining DNA with propidum iodide (PI). mRNA and protein expression related to cell cycle arrest was measured by reverse transcription PCR and western blot. Tumor growth and metastasis was measured by in vivo model. RESULTS: Selenium was suppressed the proliferation of melanoma cells in a dose dependent manner. The growth inhibition of melanoma by selenium was associated with an arrest of cell cycle distribution at G0/G1 stage. The mRNA and protein level of CDK2/CDK4 was suppressed by treatment with selenium in a time-dependent manner. In vivo, tumor growth was not suppressed by selenium; however tumor metastasis was suppressed by selenium in mouse model. CONCLUSION: These results suggest that selenium might be a potent agent to inhibit proliferative activity of melanoma cells.
Animals
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Apoptosis
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Blotting, Western
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Cell Cycle
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Cell Cycle Checkpoints
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Cell Death
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Cell Proliferation
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DNA
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Melanoma
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Mice
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Neoplasm Metastasis
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Polymerase Chain Reaction
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Reverse Transcription
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RNA, Messenger
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Selenium
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Skin Neoplasms
8.Comparison study of the response with botulinum toxin muscle injection in the ICR mice from three different sources
Min Soo SEO ; Young In KIM ; Kyung Ku KANG ; Se Kyung OH ; Soo Eun SUNG ; Young Suk JUNG ; Joon Yong CHO ; HyunKeun SONG ; Dae Youn HWANG ; Sang Joon PARK ; Kil Soo KIM
Laboratory Animal Research 2019;35(2):70-77
Botulinum-toxin A (BoNT/A) is a widely used not only for cosmetics but also for various experimental purposes including muscle-related research. In this study, we applied BoNT/A to mouse muscle of three different sources to compare and evaluate the biological and pathological response. The three different mouse sources consist of Korl: ICR (Korea FDA source), A:ICR (USA source) and B:ICR (Japan source) which were purchased from each different vendors. To compare the responses of ICR mice with BoNT/A muscle injection, we examined the body weight, hematological and serum biochemistry analysis. Also, we evaluated the muscle change by histopathological analysis and gene expression patterns of muscle-related target by qPCR. The body weight gain was decreased in the BoNT/ A-treated group compared with the control group. In clinical pathologic analysis and gene expression patterns, the data showed that the responses in the BoNT/A-treated group were similar compared with the control group. Decreased muscle fiber was observed in BoNT/A-treated group compared with control group, while Korl:ICR showed a little low response with the other mouse sources. In conclusion, our results suggest that three different sources ICR mice (Korl:ICR, A:ICR and B:ICR) have a similar biological and pathological responses in BoNT/A muscle injection.