1.Effect of Green Tea Extract/Poly-gamma-Glutamic Acid Complex in Obese Type 2 Diabetic Mice.
Ki Cheor BAE ; Jae Hyung PARK ; Ann Yae NA ; Sun Joo KIM ; Shinbyoung AHN ; Sang Pyo KIM ; Byung Chul OH ; Ho Chan CHO ; Yong Woon KIM ; Dae Kyu SONG
Diabetes & Metabolism Journal 2013;37(3):196-206
BACKGROUND: The increasing prevalence of type 2 diabetes mellitus (T2DM) is associated with the rapid spread of obesity. Obesity induces insulin resistance, resulting in beta-cell dysfunction and thus T2DM. Green tea extract (GTE) has been known to prevent obesity and T2DM, but this effect is still being debated. Our previous results suggested that circulating green tea gallated catechins (GCs) hinders postprandial blood glucose lowering, regardless of reducing glucose and cholesterol absorption when GCs are present in the intestinal lumen. This study aimed to compare the effect of GTE with that of GTE coadministered with poly-gamma-glutamic acid (gamma-PGA), which is likely to inhibit the intestinal absorption of GCs. METHODS: The db/db mice and age-matched nondiabetic mice were provided with normal chow diet containing GTE (1%), gamma-PGA (0.1%), or GTE+gamma-PGA (1%:0.1%) for 4 weeks. RESULTS: In nondiabetic mice, none of the drugs showed any effects after 4 weeks. In db/db mice, however, weight gain and body fat gain were significantly reduced in the GTE+gamma-PGA group compared to nondrug-treated db/db control mice without the corresponding changes in food intake and appetite. Glucose intolerance was also ameliorated in the GTE+gamma-PGA group. Histopathological analyses showed that GTE+gamma-PGA-treated db/db mice had a significantly reduced incidence of fatty liver and decreased pancreatic islet size. Neither GTE nor gamma-PGA treatment showed any significant results. CONCLUSION: These results suggest that GTE+gamma-PGA treatment than GTE or gamma-PGA alone may be a useful tool for preventing both obesity and obesity-induced T2DM.
Absorption
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Adipose Tissue
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Animals
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Appetite
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Blood Glucose
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Catechin
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Cholesterol
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Diabetes Mellitus, Type 2
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Diet
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Eating
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Fatty Liver
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Glucose
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Glucose Intolerance
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Incidence
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Insulin Resistance
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Intestinal Absorption
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Islets of Langerhans
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Mice
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Obesity
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Polyglutamic Acid
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Prevalence
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Tea
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Weight Gain
2.Immunotoxicological Effects of Aripiprazole: In vivo and In vitro Studies.
Kwang Soo BAEK ; Shinbyoung AHN ; Jaehwi LEE ; Ji Hye KIM ; Han Gyung KIM ; Eunji KIM ; Jun Ho KIM ; Nak Yoon SUNG ; Sungjae YANG ; Mi Seon KIM ; Sungyoul HONG ; Jong Hoon KIM ; Jae Youl CHO
The Korean Journal of Physiology and Pharmacology 2015;19(4):365-372
Aripiprazole (ARI) is a commonly prescribed medication used to treat schizophrenia and bipolar disorder. To date, there have been no studies regarding the molecular pathological and immunotoxicological profiling of aripiprazole. Thus, in the present study, we prepared two different formulas of aripiprazole [Free base crystal of aripiprazole (ARPGCB) and cocrystal of aripiprazole (GCB3004)], and explored their effects on the patterns of survival and apoptosis-regulatory proteins under acute toxicity and cytotoxicity test conditions. Furthermore, we also evaluated the modulatory activity of the different formulations on the immunological responses in macrophages primed by various stimulators such as lipopolysaccharide (LPS), pam3CSK, and poly(I:C) via toll-like receptor 4 (TLR4), TLR2, and TLR3 pathways, respectively. In liver, both ARPGCB and GCB3004 produced similar toxicity profiles. In particular, these two formulas exhibited similar phospho-protein profiling of p65/nuclear factor (NF)-kappaB, c-Jun/activator protein (AP)-1, ERK, JNK, p38, caspase 3, and bcl-2 in brain. In contrast, the patterns of these phospho-proteins were variable in other tissues. Moreover, these two formulas did not exhibit any cytotoxicity in C6 glioma cells. Finally, the two formulations at available in vivo concentrations did not block nitric oxide (NO) production from activated macrophage-like RAW264.7 cells stimulated with LPS, pam3CSK, or poly(I:C), nor did they alter the morphological changes of the activated macrophages. Taken together, our present work, as a comparative study of two different formulas of aripiprazole, suggests that these two formulas can be used to achieve similar functional activation of brain proteins related to cell survival and apoptosis and immunotoxicological activities of macrophages.
Aripiprazole
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Apoptosis
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Bipolar Disorder
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Brain
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Caspase 3
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Cell Survival
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Glioma
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Liver
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Macrophages
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Nitric Oxide
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Schizophrenia
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Toll-Like Receptor 4