• 제목/요약/키워드: Hypoxia inducible factor

검색결과 174건 처리시간 0.025초

Evaluating the effect of conditioned medium from endometrial stem cells on endometriosis-derived endometrial stem cells

  • Seyedeh Saeideh Sahraei;Ali Kowsari;Faezeh Davoodi Asl;Mohsen Sheykhhasan;Leila Naserpoor;Azar Sheikholeslami
    • Anatomy and Cell Biology
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    • 제55권1호
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    • pp.100-108
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    • 2022
  • Endometriosis is a common, benign gynecological disease which is determined as an overspreading of endometrial tissue in exterior region of the uterine cavity. Evidence suggests that retrograde menstrual blood which contains mesenchymal stem cells with differential gene expression compared to healthy women may play a role in endometriosis creation. We aimed to identify whether the conditioned medium (CM) from menstrual blood-derived mesenchymal stem cells (MenSCs) of healthy women can affect the expression level of inflammatory and stemness genes of MenSCs from endometriosis women. Endometriosis-derived MenSCs (E-MenSCs) were treated with CM derived from healthy women's MenSCs (non-endometriosis derived MenSCs [NE-MenSCs]). Some CD markers were analyzed by flow cytometer before and after treatment compared with NE-MenSCs, and the expression level of inflammatory and stemness genes was evaluated by real-time PCR. E-MenSCs show different morphology in vitro culture in comparison with NE-MenSCs, which were changed in the presence of CM, into a morphology more similar to normal cells and showed significant decrease expression of CD10 after CM treatment. In our results, the interleukin-1, cyclooxygenase-2, and hypoxia-inducible factor 1α as inflamaturay genes and octamer-binding transcription factor 4, NANOG, and sex determining region Y-box 2 as stemness genes showed significantly different expression level in E-MenSCs after treating with CM. Our study indicates that the expression level of some inflammatory- and stemness-related genes which have differential expression in E-MenSCs compared with NE-MenSCs, could be changed to normal status by using CM derived from NE-MenSCs.

Inhibition of Hydrogen Sulfide-induced Angiogenesis and Inflammation in Vascular Endothelial Cells: Potential Mechanisms of Gastric Cancer Prevention by Korean Red Ginseng

  • Choi, Ki-Seok;Song, Heup;Kim, Eun-Hee;Choi, Jae-Hyung;Hong, Hua;Han, Young-Min;Hahm, Ki-Baik
    • Journal of Ginseng Research
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    • 제36권2호
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    • pp.135-145
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    • 2012
  • Previously, we reported that Helicobacter pylori-associated gastritis and gastric cancer are closely associated with increased levels of hydrogen sulfide ($H_2S$) and that Korean red ginseng significantly reduced the severity of H. pylori-associated gastric diseases by attenuating $H_2S$ generation. Because the incubation of endothelial cells with $H_2S$ has been known to enhance their angiogenic activities, we hypothesized that the amelioration of $H_2S$-induced gastric inflammation or angiogenesis in human umbilical vascular endothelial cells (HUVECs) might explain the preventive effect of Korean red ginseng on H. pylori-associated carcinogenesis. The expression of inflammatory mediators, angiogenic growth factors, and angiogenic activities in the absence or presence of Korean red ginseng extracts (KRGE) were evaluated in HUVECs stimulated with the $H_2S$ generator sodium hydrogen sulfide (NaHS). KRGE efficiently decreased the expression of cystathionine ${\beta}$-synthase and cystathionine ${\gamma}$-lyase, enzymes that are essential for $H_2S$ synthesis. Concomitantly, a significant decrease in the expression of inflammatory mediators, including cyclooxygenase-2 and inducible nitric oxide synthase, and several angiogenic factors, including interleukin (IL)-8, hypoxia inducible factor-1a, vascular endothelial growth factor, IL-6, and matrix metalloproteinases, was observed; all of these factors are normally induced after NaHS. An in vitro angiogenesis assay demonstrated that NaHS significantly increased tube formation in endothelial cells, whereas KRGE pretreatment significantly attenuated tube formation. NaHS activated p38 and Akt, increasing the expression of angiogenic factors and the proliferation of HUVECs, whereas KRGE effectively abrogated this $H_2S$-activated angiogenesis and the increase in inflammatory mediators in vascular endothelial cells. In conclusion, KRGE was able to mitigate $H_2S$-induced angiogenesis, implying that antagonistic action against $H_2S$-induced angiogenesis may be the mechanism underlying the gastric cancer preventive effects of KRGE in H. pylori infection.

Pyrithione-zinc Prevents UVB-induced Epidermal Hyperplasia by Inducing HIF-$1{\alpha}$

  • Cho, Young-Suk;Lee, Kyung-Hoon;Park, Jong-Wan
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권2호
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    • pp.91-97
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    • 2010
  • Epidermal keratinocytes overgrow in response to ultraviolet-B (UVB), which may be associated with skin photoaging and cancer development. Recently, we found that HIF-$1{\alpha}$ controls the keratinocyte cell cycle and thereby contributes to epidermal homeostasis. A further study demonstrated that HIF-$1{\alpha}$ is down-regulated by UVB and that this process is involved in UVB-induce skin hyperplasia. Therefore, we hypothesized that the forced expression of HIF-$1{\alpha}$ in keratinocytes would prevent UVB-induced keratinocyte overgrowth. Among several agents known to induce HIF-$1{\alpha}$, pyrithione-zinc (Py-Zn) overcame the UVB suppression of HIF-$1{\alpha}$ in cultured keratinocytes. Mechanistically, Py-Zn blocked the degradation of HIF-$1{\alpha}$ protein in keratinocytes, while it did not affect the synthesis of HIF-$1{\alpha}$. Moreover, the p21 cell cycle inhibitor was down-regulated after UVB exposure, but was robustly induced by Py-Zn. In mice repeatedly irradiated with UVB, the epidermis became hyperplastic and HIF-$1{\alpha}$ disappeared from nuclei of epidermal keratinocytes. However, a cream containing Py-Zn effectively prevented the skin thickening and up-regulated HIF-$1{\alpha}$ to the normal level. These results suggest that Py-Zn is a potential agent to prevent UVB-induced photoaging and skin cancer development. This work also provides insight into a molecular target for treatment of UVB-induced skin diseases.

IL-6-miR-210 Suppresses Regulatory T Cell Function and Promotes Atrial Fibrosis by Targeting Foxp3

  • Chen, YingWei;Chang, GuoDong;Chen, XiaoJie;Li, YunPeng;Li, HaiYu;Cheng, Dong;Tang, Yi;Sang, HaiQiang
    • Molecules and Cells
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    • 제43권5호
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    • pp.438-447
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    • 2020
  • The aim of this study was to explore the role of IL-6-miR-210 in the regulation of Tregs function and atrial fibrosis in atrial fibrillation (AF). The levels of interleukin (IL)-6 and IL-10 in AF patients were detected by using ELISA. Proportions of Treg cells were detected by fluorescence activated cell sorting analysis in AF patients. The expression of Foxp3, α-SMA, collagen I and collagen III were determined by western blot. The atrial mechanocytes were authenticated by vimentin immunostaining. The expression of miR-210 was performed by quantitative real-time polymerase chain reaction (qRT-PCR). TargetScan was used to predict potential targets of miR-210. The cardiomyocyte transverse sections in AF model group were observed by H&E staining. The myocardial filaments were observed by masson staining. The level of IL-6 was highly increased while the level of IL-10 (Tregs) was significantly decreased in AF patients as compared to normal control subjects, and IL-6 suppressed Tregs function and promoted the expression of α-SMA, collagen I and collagen III. Furthermore, miR-210 regulated Tregs function by targeting Foxp3, and IL-6 promoted expression of miR-210 via regulating hypoxia inducible factor-1α (HIF-1α). IL-6-miR-210 suppresses regulatory T cell function and promotes atrial fibrosis by targeting Foxp3.

DNA Bis-intercalating Agent, Echinomycin-induced Apoptosis via Bcl-2 Dependence Pathway in Human Colon Cancer Cells

  • Park, Ju-Youn;Ryang, Yong-Suk;Kim, Jong-Bae;Chang, Jae-Ho;Cho, Hyeon-Cheol;Kim, Soo-Ki
    • Molecular & Cellular Toxicology
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    • 제4권2호
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    • pp.144-149
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    • 2008
  • Despite versatile activity (cancericidal, antimicrobial, hypoxia inducible factor (HIF) inhibition, immune deactivation of DNA bis-intercalation agent, echinomycin, its specific mechanism has been elusive. Of these novel mechanisms, we reported that using human colon cancer cells (HT-29), apoptotic machinery induced by echinomycin might be dependent of caspase-3 pathway. Despite a partial enlightenment of prototypic signal path triggered by echinomycin, the role of Bcl-2 in this signaling pathway is unclear. To address this issue, we explored whether or not echinomycin would overcome the anti-apoptotic impact of Bcl-2 in HT-29 cells by the controlled Bcl-2 overexpression. Prior to this proof, we confirmed that echinomycin induces mitochondrial depolarization, then triggering the mitochondrial pathway of apoptosis with an involvement of upstream cas-pases-3. Transiently transfection with inactive Bax-DNA failed to prevent echinomycin-induced apoptosis in HT-29 cells. To dissect the role of Bcl-2 in echinomycin-induced apoptosis, HT-29 cells were transiently transfected with Bcl-2 DNA for overexpression and then treated with echinomycin for 24h. Combined analyses of DNA fragmentation and flow cytometric analysis clearly verified that echinomycin-induced apoptosis was drastically attenuated by Bcl-2 overexpression, whereas a control vector rarely affected echinomycin-induced apoptosis. Collectively, these data verify that Bcl-2 regulates echinomycin-induced apoptosis in HT-29 cells. To my knowledge, this is the first evidence that of diverse, structured minor groove binders (MGB), the prototypic echinomycin might control the apoptotic signaling via Bcl-2-mitochondrial pathway.

Molecular and Genomic Approaches on Nickel Toxicity and Carcinogenicity

  • Seo, Young-Rok;Kim, Byung-Joo;Ryu, Jae-Chun
    • Molecular & Cellular Toxicology
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    • 제1권2호
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    • pp.73-77
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    • 2005
  • Nickel is the one of potent environmental, the occupational pollutants and the classified human carcinogens. It is a serious hazard to human health, when the metal exposure. To prevent human diseases from the heavy metals, it is seemingly important that understanding of how nickel exerts their toxicity and carcinogenic effect at a molecular and a genomic level. The process of nickel absorption has been demonstrated as phagocytosis, iron channel and diffusion. Uptaked nickel has been suggested to induce carcinogenesis via two pathways, a direct DNA damaging pathway and an indirect DNA damaging pathway. The former was originated from the ability of metal to generate Reactive Oxygen Species (ROS) and the reactive intermediates to interact with DNA directly. Ni-generated ROS or Nickel itself, interacts with DNAs and histones to cause DNA damage and chromosomal abnormality. The latter was originated from an indirect DNA damage via inhibition of DNA repair, or condensation and methylation of DNA. Cells have ability to protect from the genotoxic stresses by changing gene expression. Microarray analysis of the cells treated with nickel or nickel compounds, show the specific altered gene expression profile. For example, HIF-I (Hypoxia-Inducible Factor I) and p53 were well known as transcription factors, which are upregulated in response to stress and activated by both soluble and insoluble nickel compounds. The induction of these important transcription factors exert potent selective pressure and leading to cell transformation. Genes of metallothionein and family of heat shock proteins which have been known to play role in protection and damage control, were also induced by nickel treatment. These gene expressions may give us a clue to understand of the carcinogenesis mechanism of nickel. Further discussions on molecular and genomic, are need in order to understand the specific mechanism of nickel toxicity and carcinogenicity.

ABT-737 ameliorates docetaxel resistance in triple negative breast cancer cell line

  • Hwang, Eunjoo;Hwang, Seong-Hye;Kim, Jongjin;Park, Jin Hyun;Oh, Sohee;Kim, Young A;Hwang, Ki-Tae
    • Annals of Surgical Treatment and Research
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    • 제95권5호
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    • pp.240-248
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    • 2018
  • Purpose: This study aimed to validate the synergistic effect of ABT-737 on docetaxel using MDA-MB-231, a triple negative breast cancer (TNBC) cell line overexpressing B-cell lymphoma-2 (Bcl-2). Methods: Western blot analysis was performed to assess expression levels of Bcl-2 family proteins and caspase-related molecules. Cell viability was assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay. Cell cycle distribution was determined by flow cytometry analysis. Benzyloxycarbonyl-Val-Ala-Asp(OMe)-fluoromethylketone (z-VAD-fmk) was used for pretreatment to assess the role of caspases. Results: Cell viability of MDA-MB-231 after combination treatment with ABT-737 and docetaxel was significantly lower than that after docetaxel or ABT-737 monotherapy based on MTT assay (both P < 0.001), with a combination index of 0.41. The proportion of sub-G1 population after combination treatment was significantly higher than that after docetaxel or ABT-737 monotherapy (P = 0.001, P = 0.003, respectively). Pretreatment with z-VAD-fmk completely restored cell viability of MDA-MB-231 from apoptotic cell death induced by combination therapy (P = 0.001). Although pro-caspase-8 or Bid did not show significant change in expression level, pro-casepase-9 showed significantly decreased expression after combination treatment. Cleaved caspase-3 showed increased expression while poly (ADP-ribose) polymerase cleavage was induced after combination treatment. However, hypoxia-inducible factor 1-alpha and aldehyde dehydrogenase 1 totally lost their expression after combination treatment. Conclusion: Combination of ABT-737 with docetaxel elicits synergistic therapeutic effect on MDA-MB-231, a TNBC cell line overexpressing Bcl-2, mainly by activating the intrinsic pathway of apoptosis. Therefore, adjunct of ABT-737 to docetaxel might be a new therapeutic option to overcome docetaxel resistance of TNBCs overexpressing Bcl-2.

미숙과와 성숙과 복분자의 섭취가 복강 Macrophages의 유전자 발현에 미치는 영향 (Effects Unripe and Ripe Rubus coreanus Miquel on Peritoneal Macrophage Gene Expression Using cDNA Microarray Analysis)

  • 이정은;조수묵;김진;김정현
    • 한국식품영양과학회지
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    • 제42권10호
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    • pp.1552-1559
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    • 2013
  • 본 연구에서는 미숙과와 성숙과의 복분자 섭취에 의한 쥐복강 대식세포의 염증반응을 조사하였다. 8주간 농도별 미숙과와 성숙과 복분자 식이를 섭취시킨 후 복강대식세포를 분리한 다음, LPS로 염증반응을 유도하여 염증매개 cytokines인 TNF-${\alpha}$, IL-$1{\beta}$, IL-6의 분비와 PGE2의 분비량을 측정하였으며, cDNA microarray 방법으로 유전자 발현을 측정하였다. 미숙과와 성숙과 복분자 섭취는 TNF-${\alpha}$의 생성을 유의적으로 억제하였으나, IL-$1{\beta}$, IL-6는 미숙과 복분자 섭취에 의해서만 감소하였으며 $PGE_2$의 분비에는 영향을 주지 않았다. 본 연구결과, 미숙과와 성숙과 복분자 섭취에 의해 8개의 유전자 발현이 감소된 것으로 확인되었는데, 이중 세포의 면역반응과 관련된 5-LOX, iNOS, IL-11의 발현이 유의적으로 감소되었으며, 만성질환 특히 심혈관계 질환을 유발하는 인자인 tPA, thrombospondin 1, ceruloplasmin과 암의 성장 및 전이와 관련된 VEGF A의 발현을 유의적으로 억제하였다. 한편 혐기성 관련 유전자의 발현을 억제하는 HIF3A의 발현을 유의적으로 증가시켰다. 또한 미숙과 복분자의 섭취만이 CCL8, CXCL14, PLA2의 발현을 감소시키는 것으로 나타났다. 따라서 복분자의 섭취, 특히 미숙과 복분자의 섭취는 항염증 효과를 보일 뿐 아니라 만성염증성 질환 관련 인자의 발현을 유의적으로 감소시키므로 이와 관련된 기능성 식품 개발에 활용될 수 있을 것으로 사료되며, 추후 복분자내 항염증 효능을 갖는 생리활성 성분에 대한 연구가 더 진행되어야 할 것으로 판단된다.

전립선 암세포에서 delphinidin에 의한 HIF-1α와 STAT3 억제를 통한 혈관내피 성장 인자 발현 저해 효과 (Delphinidin Suppresses Angiogenesis via the Inhibition of HIF-1α and STAT3 Expressions in PC3M Cells)

  • 김문현;김미현;박영자;장영채;박윤엽;송현욱
    • 한국식품과학회지
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    • 제48권1호
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    • pp.66-71
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    • 2016
  • 델피니딘은 양전하를 뛰는 diphenylpropane의 polyphenolic ring 구조를 가진 주요한 안토시아닌 색소 중에 하나이다. 최근 연구에서 델피니딘은 항산화, 항염증 뿐만 아니라 항암 효능을 가진다고 보고되었다. 본 연구에서는 전립샘 암에서 종양의 성장과 신생혈관생성에 관련된 중요한 인자인 VEGF 발현에 대한 델피니딘의 억제 효과를 조사하였다. RT-PCR을 통해 델피니딘을 처리한 PC3M 전립샘 암세포 세포에서 EGF로 유도한 VEGF mRNA 발현 수준이 감소됨을 확인하였다. 또한 델피니딘은 VEGF의 전사인자인 HIF-$1{\alpha}$와 STAT3가 세포 핵으로 전위되는 것을 효과적으로 억제하였다. 한편 luciferase assay을 통해 HRE-promoter 활성을 확인해 본 결과, 델피니딘이 HIF-$1{\alpha}$의 전사 활성을 억제시켜 VEGF 발현을 감소시키는 것을 알 수 있었다. 그리고 델피니딘은 EGFR의 발현에는 영향을 미치지 않고, Akt, p70S6K, 4EBP1의 인산화를 특이적으로 억제하는 것으로 나타났다. 결론적으로 델피니딘이 HIF-$1{\alpha}$와 STAT3, VEGF 발현을 억제를 통하여 암세포 증식억제와 신생혈관형성을 억제하는 역할을 새롭게 확인하였다.

미니돼지에서 허혈성 신장 손상의 조기진단 (Initial Diagnosis of Acute Renal Failure Induced by Ischemia in Miniature Pig)

  • 김세은;고아라;배춘식;박수현;한호재;심경미;강성수
    • 한국임상수의학회지
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    • 제28권1호
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    • pp.52-56
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    • 2011
  • Acute renal injury induced by ischemia is a major cause of high morbidity and mortality in hospitalized patients and a common complication in hospitalized patients. Thus, the work with acute renal failure and renal ischemia has been studied for many years. Although serum creatinine concentration that is widely used as an index of renal function performs fairly well for estimating kidney function in patients with stable chronic kidney disease, it performs poorly in the setting of acute disease. Thus, an ideal biomarker for acute kidney injury would help clinicians and scientists diagnose the most common form of acute kidney injury in hospitalized patients, acute tubular necrosis, early and accurately, and may aid to risk-stratify patients with acute kidney injury by predicting the need for renal replacement therapy, the duration of acute kidney injury, the length of stay and mortality. In this study, renal ischemia and reperfusion were performed by clapming and un-clamping right renal artery in miniature pigs. Plasma blood urea nitrogen (BUN) and creatinine were examined at pre- clamping, after-clamping at 0, 1 and 3 hours. And we searched initial indicators in these samples. Also, renal tissue was collected and searched the initial indicator by PCR and western blotting. As a result, hypoxia inducible factor $1{\alpha}$ ($HIF1{\alpha}$), nuclear factor kappa-B ($NF{\kappa}B$), $I{\kappa}B$, erythropoietin (EPO), erythropoietin receptor (EPOR), angiopoietin-1 and vascular endothelial growth factor (VEGF) were showed significant changes among the renal protein. $HIF1{\alpha}$, EPO, and EPOR were showed significant changes among the renal gene. Thus, these markers will be used as initial diagnosis of acute renal failure.