• Title/Summary/Keyword: Adipocyte

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Differential Action of trans-10, cis-12 Conjugated Linoleic Acid on Adipocyte Differentiation of Ovine and 3T3-L1 Preadipocytes

  • Iga, T.;Satoh, T.;Yamamoto, S.;Fukui, K.;Song, S.H.;Choi, K.C.;Roh, S.G.;Sasaki, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.11
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    • pp.1566-1573
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    • 2009
  • Trans-10, cis-12 conjugated linoleic acid (CLA) has been reported to inhibit the adipocyte differentiation of preadipocytes in non-ruminant animals (mice, rat, and human). However, the effects of trans-10, cis-12 CLA have not been clear in ruminants. The objective of this study was to investigate the effects of trans-10, cis-12 CLA on adipocyte differentiation of ovine preadipocytes. Differentiation of these preadipocytes was facilitated by treatment with trans-10, cis-12 CLA. Trans-10, cis-12 CLA increased the number and size of oil red O-stainable lipid drops as well as the levels of GPDH activity. PPAR-$\gamma{2}$ and adipophilin mRNA, adipogenic marker genes, were increased by treatment with trans-10, cis-12 CLA. This result was different from that observed with 3T3-L1 preadipocytes, a clonal cell line derived from rodents. Furthermore, trans-10, cis-12 CLA alone induced the adipocyte differentiation of ovine preadipocytes in differentiation-induction medium without troglitazone. These results suggest that CLA is an inducer and regulator in adipocyte differentiation of ovine preadipocytes, with species differences between ovine and rodent preadipocytes.

TonEBP suppresses adipocyte differentiation via modulation of early signaling in 3T3-L1 cells

  • Kim, Soo Jin;Kim, Taehee;Choi, Han Na;Cho, Eun Jung;Park, Jin Bong;Jeon, Byeong Hwa;Lee, Sang Do
    • The Korean Journal of Physiology and Pharmacology
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    • v.20 no.6
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    • pp.649-655
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    • 2016
  • TonEBP belongs to the Rel family of transcription factors and plays important roles in inflammation as well as kidney homeostasis. Recent studies suggest that TonEBP expression is also involved in differentiation of several cell types such as myocytes, chondrocytes, and osteocytes. In this study, we investigated the roles of TonEBP during adipocyte differentiation in 3T3-L1 cells. TonEBP mRNA and protein expression was dramatically reduced during adipocyte differentiation. Sustained expression of TonEBP using an adenovirus suppressed the formation of lipid droplets as well as the expression of FABP4, a marker of differentiated adipocytes. TonEBP also inhibited the expression of $PPAR{\gamma}$, a known master regulator of adipocytes. RNAi-mediated knock down of TonEBP promoted adipocyte differentiation. However, overexpression of TonEBP did not affect adipogenesis after the initiation of differentiation. Furthermore, TonEBP expression suppressed mitotic clonal expansion and insulin signaling, which are required early for adipocyte differentiation of 3T3-L1 cells. These results suggest that TonEBP may be an important regulatory factor in the early phase of adipocyte differentiation.

North American ginseng influences adipocyte-macrophage crosstalk regulation of inflammatory gene expression

  • Garbett, Jaime;Wilson, Sarah A.F.;Ralston, Jessica C.;Boer, Anna A. De;Lui, Ed M.K.;Wright, David C.;Mutch, David M.
    • Journal of Ginseng Research
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    • v.40 no.2
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    • pp.141-150
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    • 2016
  • Background: Adipocyte-macrophage communication plays a critical role regulating white adipose tissue (WAT) inflammatory gene expression. Because WAT inflammation contributes to the development of metabolic diseases, there is significant interest in understanding how exogenous compounds regulate the adipocyte-macrophage crosstalk. An aqueous (AQ) extract of North American (NA) ginseng (Panax quinquefolius) was previously shown to have strong inflammo-regulatory properties in adipocytes. This study examined whether different ginseng extracts influence adipocyte-macrophage crosstalk, as well as WAT inflammatory gene expression. Methods: The effects of AQ and ethanol (EtOH) ginseng extracts ($5{\mu}g/mL$) on adipocyte and macrophage inflammatory gene expression were studied in 3T3-L1 and RAW264.7 cells, respectively, using real-time reverse transcription polymerase chain reaction. Adipose tissue organ culture was also used to examine the effects of ginseng extracts on epididymal WAT (EWAT) and inguinal subcutaneous WAT (SWAT) inflammatory gene expression. Results: The AQ extract caused significant increases in the expression of common inflammatory genes (e.g., Mcp1, Ccl5, Tnf-${\alpha}$, Nos2) in both cell types. Culturing adipocytes in media from macrophages treated with the AQ extract, and vice versa, also induced inflammatory gene expression. Adipocyte Ppar-${\gamma}$ expression was reduced with the AQ extract. The AQ extract strongly induced inflammatory gene expression in EWAT, but not in SWAT. The EtOH extract had no effect on inflammatory gene expression in either both cell types or WAT. Conclusion: These findings provide important new insights into the inflammo-regulatory role of NA ginseng in WAT.

The Effects of α-Lipoic Acid in Adilution Solvents, Dose- and Time-dependent Manner on Cell Growth Blocking in 3T3-L1 (α-Lipoic acid의 희석용매, 처리농도, 처리시간에 따른 3T3-L1 지방세포 성장에 미치는 영향)

  • Seo, Eunyoung
    • Journal of the Korean Society of Food Culture
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    • v.33 no.5
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    • pp.464-471
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    • 2018
  • Purpose: This study examined the effects of ${\alpha}$-lipoic acid in diluted solvents on cell growth in 3T3-L1 cells according to the treated concentration and times. Methods: Adipocyte 3T3-L1 cell were cultured. Confluent cells underwent starvation with SFM for 1 day and then were cultured in a medium containing various concentrations 0, 100, 200, and $400{\mu}mol/L$ of ${\alpha}$-lipoic acid. The cell viability was measured using the EZ Cytox assay kit. In addition, the effect of ${\alpha}$-lipoic acid of diluted solvents on the cell growth in 3T3-L1cells was examined according to the treated concentration and times. Results: The ${\alpha}$-lipoic acid diluted ethanol inhibited cell proliferation in a dose and time dependent manner. The ${\alpha}$-lipoic acid diluted ethanol induced adipocyte 3T3-L1 cells proliferation with an adipocyte inducer. In addition, ${\alpha}$-lipoic acid inhibited adipocyte 3T3-L1 growth in a dose and time dependent manner (p<0.05). Conclusion: This study showed that a treatment with ${\alpha}$-lipoic acid diluted ethanol inhibits cell growth of, adipocyte 3T3-L1 cells induced with an adipocyte inducer, ($200{\mu}mol/L$ of ${\alpha}$-lipoic acid) treated for 48 hr.

Expressional Regulation of Replication Factor C in Adipocyte Differentiation (지방세포분화에서의 replication factor C 단백질의 발현조절)

  • Cho, Hyun-Kook;Kim, Hye-Young;Yu, Hyun-Jeong;Cheong, Jae-Hun
    • Journal of Life Science
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    • v.21 no.2
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    • pp.202-210
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    • 2011
  • Adipocyte differentiation is an ordered multistep process requiring the sequential activation of several groups of adipogenic transcription factors, including CCAAT/enhancer-binding protein-$\alpha$ and peroxisome proliferator-activated receptor-$\gamma$, and coactivators. In previous reports, we identified that replication factor C 140 (RFC140) protein played a critical role in regulating adipocyte differentiation as a coactivator. Here, we show expressional regulation of RFC140 and small RFC subunit, RFC38, following characterization of gene promoter of RFC140 and RFC38. In addition, RFC140 increases PPAR$\gamma$-mediated gene activation, resulting from direct protein-protein interaction of RFC140 and PPAR$\gamma$. Taken together, these findings demonstrate that the regulated expression of RFC140 and RFC38 by specific adipocyte transcription factors is required for the adipocyte differentiation process.

Signaling Role of Adipocyte Leptin in Prostate Cell Proliferation Induced by Trichomonas vaginalis

  • Kim, Jung-Hyun;Han, Ik-Hwan;Shin, Su-Jin;Park, Sung-Yul;Chung, Hyo-Yeoung;Ryu, Jae-Sook
    • Parasites, Hosts and Diseases
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    • v.59 no.3
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    • pp.235-249
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    • 2021
  • Leptin is a type of adipokine mainly produced by adipocytes and reported to be overproduced in prostate cancer. However, it is not known whether it stimulates the proliferation of prostate cells. In this study, we investigated whether benign prostatic hyperplasia epithelial cells (BPH-1 cells) infected with Trichomonas vaginalis induced the proliferation of prostate cells via a leptin signaling pathway. To investigate the effect of crosstalk between adipocyte leptin and inflamed epithelial cell in proliferation of prostate cells, adipocytes 3T3-L1 cells were incubated in conditioned medium of BPH-1 cells infected with T. vaginalis (T. vaginalis-conditioned medium, TCM), and then the adipocyte-conditioned medium (ATCM) was identified to cause proliferation of prostate cells. BPH-1 cells incubated with live T. vaginalis released pro-inflammatory cytokines, and conditioned medium of these cells caused migration of adipocytes. When prostate stromal cells and BPH-1 cells were incubated with adipocyte conditioned medium containing leptin, their growth rates increased as did expression of the leptin receptor (known as OBR) and signaling molecules such as JAK2/STAT3, Notch and survivin. Moreover, blocking the OBR reduced this proliferation and the expression of leptin signaling molecules in response to ATCM. In conclusion, our findings show that inflamed BPH-1 cells infected with T. vaginalis induce the proliferation of prostate cells through leptin-OBR signaling. Therefore, it is likely that T. vaginalis contributes to prostate enlargement in BPH via adipocyte leptin released as a result of inflammation of the prostate.

Anti-Obesity Effects of Red Onions Extract (적양파 추출물의 항비만 활성)

  • Song, Hwan;Seo, Ji-Hun
    • Journal of Convergence for Information Technology
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    • v.12 no.3
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    • pp.126-131
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    • 2022
  • Obesity is known as a metabolic disease caused by abnormal differentiation of fat tissue due to an imbalance between energy intake and consumption.. The purpose of this study was to confirm the changes in the genes associated with pancreatic lipase activity and pre-adipocyte cell differentiation by treatment of red onion extract treatment. The effect of red onion extract treatment on pre-adipocyte differentiation was evaluated using 3T3-L1 adipocytes, and the activity of related genes was confirmed through Real-Time PCR. As a result of the experiment, the red onion extract inhibit pancreatic lipidase activity by concentration dependent manner. In addition, it was found to inhibit adipocyte differentiation and inhibit the activity of genes(C/EBP-α, C/EBP-β, PPAR-γ) associated with adipocyte differentiation. Through the results of this experiment, it is suggested that the red onion extract can be developed as a high potential material with anti-obesity efficacy by suppressing adipocytic differentiation by controlling genes related to adipocyte differentiation.

The Study on Anti-obesity Effects of Gamiygin-tang Extract and Ferment (가미이진탕(加味二陳湯) 전탕액과 발효액이 항비만(抗肥滿)효과에 미치는 연구)

  • Chang, Sung Jin;Min, Deul Le;Park, Eun Jung
    • The Journal of Pediatrics of Korean Medicine
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    • v.27 no.4
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    • pp.108-121
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    • 2013
  • Objective This study was designed to investigate the effects of Gamiygin-tang (GY) extract (GYE) and fermented solution (GYF) on body weight, serum lipid level and adipocyte differentiation in high fat diet-fed obese mice. Materials and Methods High fat diet-fed obese mice and 3T3-L1 adipocytes mice were treated with GYE and GYF and obesity related markers were assessed. A cytotoxicity assay was carried out by MTS assay. Inhibitory effects of GYE and GYF on adipocyte differentiation were carried out by Oil Red O staining. The effects of GYE and GYF on the expression of adipocyte differentiation regulatory factors, peroxisome proliferator-activated receptor gamma ($PPAR{\gamma}$) and CCAAT/enhancer binding protein alpha (CEBP-${\alpha}$) were measured by real-time reverse transcriptase-polymerase chain reaction. The effects of GYE and GYF on the expression of adipocyte differentiation regulatory factors were also determined in relation to protein production/protein levels by western blotting. The anti obesity effects of GYE and GYF were measured in high fat-diet induced obese mice. Various factors were measured from the serum of the high fat-diet mice. Results Though GYE did not show toxicity at the concentration of 1mg/ml, GYF showed toxicity at the concentration of 1mg/ml. The GYE at 0.1 and 1mg/ml inhibited the differentiation of 3T3-L1 cells, and the GYF also inhibited the differentiation of 3T3-L1 cells. The effect of GYE on adipocyte differentiation factors including PPAR-${\gamma}$ and CEBP-${\alpha}$ was investigated and compared to the corresponding concentration levels of GYF. GYE and GYF both suppressed the RNA and protein levels of adipocyte differentiation factors. In the animal test both GYE and GYF reduced weight gain. GYE and GYF reduced blood cholesterol, TG and LDL levels. GYF better reduced blood cholesterol levels. Conclusions These results demonstrate that GYE and GYF exerts anti-obesity effect in 3T3-L1 cells and obese mice induced by high-fat diet.

Effects in Metabolism and Adipocyte Inflammation Induced by the Complex Herbal Medicine composed of Cornus officinalis, Dioscorea rhizoma, Aurantii fructus, Mori folium in Obese Type 2 Diabetes Mouse Model (산수유 산약 지각 상엽으로 구성된 복합처방투여가 고지방, 고탄수화물 식이로 유발된 비만형 당뇨병 동물모델의 대사인자 및 지방세포 염증반응 조절에 미치는 영향)

  • Han, Su-Ryun;Paik, Sun-Ho;Kwon, Oh-Jun;Ahn, Young-Min;Lee, Byung-Cheol;Ahn, Se-Young
    • The Journal of Korean Medicine
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    • v.33 no.3
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    • pp.184-199
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    • 2012
  • Objectives: There is a steady increase in the prevalence of obesity worldwide and obesity is often accompanied by inflammation. Although much emphasis has been placed on the adipose tissue inflammation in obesity, a study with herbal medicine is few. This study aimed to investigate the antidiabetic and anti-inflammatory effect of a complex herbal medicine (CHM) composed of Cornus officinalis, Dioscorea rhizoma, Aurantii fructus, and Mori Foliumon on obese type 2 diabetes mice. Methods: Type 2 diabetes mellitus and obesity were induced by Surwit's high fat, high sucrose diet for 8 weeks. Mice were divided into ND (normal diet, n=10), HFD (high fat and high sucrose diet, n=10), CHM (high fat and high sucrose diet with complex herbal medicine, n=10) and Met (high fat and high sucrose diet with metformin, n=10) groups. The body weight, fructosamine and OGTT (oral glucose tolerance test) were measured. After 8 weeks the blood samples of all mice were taken from the heart, and lipid profiles were measured. Epididymal fat pad, histological size of the adipocyte tissue and liver weights were measured. Inflammatory markers such as leptin and adipocyte tissue macrophage were measured to evaluate the effect of CHM on adipocyte tissue inflammation. Results: Compared with the HFD group, there was an improvement in OGTT and epididymal fat decreased in the CHM group. White adipocyte size and adipocyte tissue macrophage decreased in CHM group. Conclusions: These results suggest that CHM has antidiabetic and anti-inflammatory effects in high fat, high sucrose diet induced obese mice.