1.Dual-Blocking of PI3K and mTOR Improves Chemotherapeutic Effects on SW620 Human Colorectal Cancer Stem Cells by Inducing Differentiation.
Min Jung KIM ; Jeong Eun KOO ; Gi Yeon HAN ; Buyun KIM ; Yoo Sun LEE ; Chiyoung AHN ; Chan Wha KIM
Journal of Korean Medical Science 2016;31(3):360-370
Cancer stem cells (CSCs) have tumor initiation, self-renewal, metastasis and chemo-resistance properties in various tumors including colorectal cancer. Targeting of CSCs may be essential to prevent relapse of tumors after chemotherapy. Phosphatidylinositol-3-kinase (PI3K) and mammalian target of rapamycin (mTOR) signals are central regulators of cell growth, proliferation, differentiation, and apoptosis. These pathways are related to colorectal tumorigenesis. This study focused on PI3K and mTOR pathways by inhibition which initiate differentiation of SW620 derived CSCs and investigated its effect on tumor progression. By using rapamycin, LY294002, and NVP-BEZ235, respectively, PI3K and mTOR signals were blocked independently or dually in colorectal CSCs. Colorectal CSCs gained their differentiation property and lost their stemness properties most significantly in dual-blocked CSCs. After treated with anti-cancer drug (paclitaxel) on the differentiated CSCs cell viability, self-renewal ability and differentiation status were analyzed. As a result dual-blocking group has most enhanced sensitivity for anti-cancer drug. Xenograft tumorigenesis assay by using immunodeficiency mice also shows that dual-inhibited group more effectively increased drug sensitivity and suppressed tumor growth compared to single-inhibited groups. Therefore it could have potent anti-cancer effects that dual-blocking of PI3K and mTOR induces differentiation and improves chemotherapeutic effects on SW620 human colorectal CSCs.
AC133 Antigen/genetics/metabolism
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Animals
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Antineoplastic Agents/pharmacology/therapeutic use
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Cell Differentiation/*drug effects
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Cell Line, Tumor
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Cell Survival/drug effects
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Chromones/pharmacology/therapeutic use
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Colorectal Neoplasms/drug therapy/metabolism/pathology
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Humans
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Imidazoles/pharmacology/therapeutic use
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Male
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Mice
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Mice, Inbred BALB C
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Mice, Nude
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Morpholines/pharmacology/therapeutic use
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Neoplastic Stem Cells/cytology/drug effects/metabolism
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Paclitaxel/pharmacology/therapeutic use
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Phosphatidylinositol 3-Kinases/*antagonists & inhibitors/metabolism
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Quinolines/pharmacology/therapeutic use
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SOXB1 Transcription Factors/genetics/metabolism
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Signal Transduction/*drug effects
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Sirolimus/pharmacology/therapeutic use
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TOR Serine-Threonine Kinases/*antagonists & inhibitors/metabolism
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Xenograft Model Antitumor Assays
2.In vivo Tracking of Mesenchymal Stem Cells Labeled with a Novel Chitosan-coated Superparamagnetic Iron Oxide Nanoparticles using 3.0T MRI.
Alavala Matta REDDY ; Byung Kook KWAK ; Hyung Jin SHIM ; Chiyoung AHN ; Hyo Sook LEE ; Yong Jae SUH ; Eon Sub PARK
Journal of Korean Medical Science 2010;25(2):211-219
This study aimed to characterize and MRI track the mesenchymal stem cells labeled with chitosan-coated superparamagnetic iron oxide (Chitosan-SPIO). Chitosan-SPIO was synthesized from a mixture of FeCl2 and FeCl3. The human bone marrow derived mesenchymal stem cells (hBM-MSC) were labeled with 50 microg Fe/mL chitosan-SPIO and Resovist. The labeling efficiency was assessed by iron content, Prussian blue staining, electron microscopy and in vitro MR imaging. The labeled cells were also analyzed for cytotoxicity, phenotype and differentiation potential. Electron microscopic observations and Prussian blue staining revealed 100% of cells were labeled with iron particles. MR imaging was able to detect the labeled MSC successfully. Chitosan-SPIO did not show any cytotoxicity up to 200 microgram Fe/mL concentration. The labeled stem cells did not exhibit any significant alterations in the surface markers expression or adipo/osteo/chondrogenic differentiation potential when compared to unlabeled control cells. After contralateral injection into rabbit ischemic brain, the iron labeled stem cells were tracked by periodical in vivo MR images. The migration of cells was also confirmed by histological studies. The novel chitosan-SPIO enables to label and track MSC for in vivo MRI without cellular alteration.
Animals
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Brain Ischemia/chemically induced/pathology/therapy
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Cell Differentiation
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Chitosan/*chemistry
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Coordination Complexes/*chemistry/toxicity
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Ferric Compounds/*chemistry
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Humans
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Magnetic Resonance Imaging
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Magnetics
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Mesenchymal Stem Cell Transplantation
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Mesenchymal Stromal Cells/*chemistry/cytology
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Metal Nanoparticles/*chemistry
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Phenotype
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Rabbits
3.Synthetic Cannabinoid-Induced Immunosuppression Augments Cerebellar Dysfunction in Tetanus-Toxin Treated Mice.
Jaesuk YUN ; Sun Mi GU ; Tac hyung LEE ; Yun Jeong SONG ; Seonhwa SEONG ; Young Hoon KIM ; Hye Jin CHA ; Kyoung Moon HAN ; Jisoon SHIN ; Hokyung OH ; Kikyung JUNG ; Chiyoung AHN ; Hye Kyung PARK ; Hyung Soo KIM
Biomolecules & Therapeutics 2017;25(3):266-271
Synthetic cannabinoids are one of most abused new psychoactive substances. The recreational use of abused drug has aroused serious concerns about the consequences of these drugs on infection. However, the effects of synthetic cannabinoid on resistance to tetanus toxin are not fully understood yet. In the present study, we aimed to determine if the administration of synthetic cannabinoids increase the susceptibility to tetanus toxin-induced motor behavioral deficit and functional changes in cerebellar neurons in mice. Furthermore, we measured T lymphocytes marker levels, such as CD8 and CD4 which against tetanus toxin. JWH-210 administration decreased expression levels of T cell activators including cluster of differentiation (CD) 3ε, CD3γ, CD74p31, and CD74p41. In addition, we demonstrated that JWH-210 induced motor impairment and decrement of vesicle-associated membrane proteins 2 levels in the cerebellum of mice treated with tetanus toxin. Furthermore, cerebellar glutamatergic neuronal homeostasis was hampered by JWH-210 administration, as evidenced by increased glutamate concentration levels in the cerebellum. These results suggest that JWH-210 may increase the vulnerability to tetanus toxin via the regulation of immune function.
Animals
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Cannabinoids
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Cerebellar Diseases*
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Cerebellum
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Glutamic Acid
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Homeostasis
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Immunosuppression*
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Mice*
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Neurons
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R-SNARE Proteins
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T-Lymphocytes
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Tetanus
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Tetanus Toxin
4.The First Meeting of the National Control Laboratories for Vaccines and Biologicals in the Western Pacific in 2016.
Hokyung OH ; Jinho SHIN ; Manabu ATO ; Xiao MA ; David WILLIAMS ; Kiwon HAN ; Yang Jin KIM ; Hyunggoo KANG ; Kikyung JUNG ; Kentaro HANADA ; Masaki OCHIAI ; Pham VAN HUNG ; Sangmi PARK ; Chiyoung AHN
Osong Public Health and Research Perspectives 2017;8(1):91-103
The first meeting of the National Control Laboratories for Vaccines and Biologicals in the Western Pacific Region was held on September 1–2, 2016 in Seoul, the Republic of Korea. The meeting objectives were to share results of current research and to promote collaboration between the National Control Laboratories. To this end, we first discussed each country’s current status of research on quality control of biologicals. Next, we reviewed quality control of snake venom and antivenom production and the progress of a collaborative study on the Korean reference standard candidate for snake venom. We also discussed the establishment of the second regional reference standard antivenom and the characterization of the Vero cell genome landscape and its application to quality control. Moreover, we also reflected on the importance of collaboration among interested parties participating in this meeting. In conclusion, the meeting initiated networking between the national control laboratories in the Western Pacific region and paved the way to continue collaboration, which will eventually improve the region’s capacity for quality control of biologicals.
Cooperative Behavior
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Genome
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Quality Control
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Republic of Korea
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Seoul
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Snake Venoms
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Vaccines*
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Vero Cells