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RAW 264.7 세포에서 과산화수소에 의한 세포반응을 IP-HPLC로 확인하는 예비연구 KCI 등재

Preliminary Study on Hydrogen Peroxide-Induced Cellular Responses in RAW 264.7 Cells as Determined by IP-HPLC

  • 언어ENG
  • URLhttps://db.koreascholar.com/Article/Detail/386471
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대한구강악안면병리학회지 (The Korean Journal of Oral and Maxillofacial Pathology)
대한구강악안면병리학회 (Korean Academy Of Oral And Maxillofacial Pathology)
초록

Hydrogen peroxide (H2O2) is originally an endogenous small molecule which is reduced into water in cells. In order to know the H2O2-induced oxidative stress in RAW 264.7 cells, first of all, the optimum concentration of exogenous H2O2 which show reactive cellular responses was determined as 40 μM by MTT assay, and followed by 40 μM H2O2 application in RAW 264.7 cells for 30 min, 1, or 2 hours. The expressional changes of essential proteins for cellular proliferation, epigenetic modification, inflammation, apoptosis, survival, and protection were assessed by immunoprecipitation high performance liquid chromatography (IP-HPLC) using 51 antisera. 40 μM H2O2 treatment down-regulated proliferation-related proteins, Ki-67, PCNA, CDK4, cyclin D2, cMyc, and PLK4, induced histone methylation/ deacetylation and DNA methylation by increasing levels of HDAC10 and DMAP1 and by decreasing levels of DNMT1 and KDM4D, activated inflammatory reaction by increasing levels of MCP-1, COX-2, CD68, LTA4H, CXCR4, and lysozyme, and dramatically up-regulated cellular apoptosis-, survival-, and protection-related proteins, AIF, PARP-1, caspase 9, c-caspase 9, pAKT1/2/3, SOD-1, HO-1, NF-kB, NRF2, and GSTO1 in RAW 264.7 cells. These observations suggest exogenous 40 μM H2O2-induced oxidative stresses which resulted global cellular responses including not only antioxidant, inflammation, and apoptosis but also proliferation and epigenetic modification. Particularly, 40 μM H2O2-induced apoptosis was mainly derived from PARP-1/AIF signaling leading parthanatos, and 40 μM H2O2-induced suppression of cMyc/MAX/MAD network was relevant to reduction of RAW 264.7 cell proliferation. Accordingly, H2O2 appears to affect RAW 264.7 macrophages in several ways eliciting not only oxidative stresses but also genome-wide DNA damage.

목차

Ⅰ. INTRODUCTION
Ⅱ. MATERIALS & METHODS
    1. RAW264.7 cell culture in the presence of H2O2
    2. Determination of optimal concentration of H2O2in RAW 264.7 cell culture by cell viability analysis
    3. Immunoprecipitation high-performance liquidchromatography (IP-HPLC)
    4. Statistical analysis
Ⅲ. RESULTS
    1. Determination of optimal concentration of H2O2in RAW 264.7 cell culture
    2. Effects of 40 μM H2O2 on the expressions ofproliferation-related proteins in RAW 264.7 cells
    3. Effects of 40 μM H2O2 on the expressionsof cMyc/MAX/MAD network-related proteinsin RAW 264.7 cells
    4. Effects of 40 μM H2O2 on the expressionsof epigenetic modification-related proteinsin RAW 264.7 cells
    5. Effects of 40 μM H2O2 on the expressionsof inflammation-related proteins in RAW264.7 cells
    6. Effects of 40 μM H2O2 on the expressionsof apoptosis and survival-related proteinsin RAW 264.7 cells
    7. Effects of 40 μM H2O2 on the expressionsof cell protection-related proteins in RAW264.7 cells
Ⅳ. DISCUSSION
REFERENCES
저자
  • 김연숙(청주대학교 보건의료과학대학 치위생학과) | Yeon Sook Kim (Department of Dental Hygiene, College of Health & Medical Sciences, Cheongju University) Correspondence