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        검색결과 9

        1.
        2018.06 구독 인증기관 무료, 개인회원 유료
        The mesenchymal stem cells (MSCs) that reside in dental tissues hold a great potential for future applications in regenerative dentistry. In this study, we used human dental pulp cells, isolated from the molars (DPCs), in order to establish the organoid culture. DPCs were established after growing pulp cells in an MSC expansion media (MSC-EM). DPCs were subjected to organoid growth media (OGM) in comparison with human dental pulp stem cells (DPSCs). Inside the extracellular matrix in the OGM, the DPCs and DPSCs readily formed vessel-like structures, which were not observed in the MSC-EM. Immunocytochemistry analysis and flow cytometry analysis showed the elevated expression of CD31 in the DPCs and DPSCs cultured in the OGM. These results suggest endothelial cell-prone differentiation of the DPCs and DPSCs in organoid culture condition.
        4,000원
        2.
        2007.10 KCI 등재 구독 인증기관·개인회원 무료
        Previous in vi tro studies demonstrated that H202 or carbamide peroxide cou ld penetrate i nto pul p chambers through enamel and dentin (Benetti et a l., 2004; G okay et a l. , 2004‘ Suli eman et al .. 2005) ‘ Recently. Lee et al.(2006) demonstrated that H20Z enhanced the diffe rentiation of odontoblast like cell line, whereas it inhibited osteogenic diffe rentiation in pre 。steobl astic cell line, as seen by its efl"ecLs on an early difï"erentiation marker. ALP activity. I-lowever. the effects of HZ02 have not been well elucidated in primary cultured human pulp cells ln th is study‘ we investigated whether HO- 1 is involved in H20 2-induced cytotoxicity and examined the production 0 1" dent in sia lophosphoprotein (DSPP) and other minera li zation markers, in human pulp cells H20Z dec1'eased cell viabili ty. but increased HO-l and DSPP expression in a concentra t ion and time dependent manner. Inhibitors of guanylate cyclase, PI3K. ERK, and p38 MAP kinase blocked J-!?,0 2- induced cytot oxicity and the expression of HO-1 and DSPP mRNAs in pulp cells. These data suggest that t he induction of HO-l by H202 in pu lp cells plays a protective role against the cytotoxic effects of H202 and stimulates DSPP expression. resulting in prematu re oclontoblast differentiation th rough pathways t hat involve cGMP. p38. ancl ERK
        3.
        2007.10 KCI 등재 구독 인증기관·개인회원 무료
        Although substance P (SP). a potent pro-inflammatory peptide, is involved in inflammation and immune responses, the effect of SP 011 the expression of macl'ophage inJlammatol'Y protein 3a (MIP-3a. CCL20) in periodontal ligament (PDL) cells a l'e unknown Equally as enigmatic is the link between SP. the stress protein heme oxygenase-l (HO-l) , and CCL20 product ion. We investigated whether SP induces the release of chemokine CCL20 from irrunortalized POL (IPDL) cells. and further claif’y SP mediated pathways . We also exarnined the relationship between HO-l and CCL20 by treating POL cells with SP Incubating IPOL cells with SP incl'eased ex pl'ession of CCL20 mRNA and CCL20 protein in a dose-time dependent manner. Highly selective p38 and ERKl/2 inhibitors abl'ogated SP-induced expression of CCL20 lD IPOL cells SP is also responsible fo l' ini tiating phosphorylation of I/( B‘ degl'adation of IK B. and activation of NF-/( B. SP induced expression of HO-l in both a concentration- and time-dependent manner. and CCL20 refl ected similal' patterns. The inductive effects of SP on HO-l and CCL20 were enhanced by HO- l inducer hemin and the membrane-permea ble cGMP analog 8-bromo-cGMP Conversely, this pathway was inhi bited by the HO-l inhibitor zinc Pl'otoporphyrin IX (ZnPP IX) and the selective inhibitor of guanylate cyclase‘ 1H- [1. 2. 4]uxad iazole[4, 3-alquinoxal i n- 1-one (ODQ) We report hel'ein the pathway that connects SP a long with other modulators 0 1' neuroimmunoregulationto the induction of HO-1 and the inflanunatol'y mediatol' MIP- 3a /CCL20 in IPDL cel ls. which play an impol'tant role in the development 0 1' pe- I'iodontitis or inflammation during ol'thodontic tooth movement