• 제목/요약/키워드: $LaCoO_3$

검색결과 332건 처리시간 0.019초

누룩(Rhizopus oryzae KSD-815)으로부터 분리한 지질화합물의 세포독성 및 항염증 활성 (Cytotoxic and Anti-inflammatory Activities of Lipids from the Nuruk (Rhizopus oryzae KSD-815))

  • 곽호영;이상진;이대영;배낙현;정낙훈;홍성렬;김계원;백남인
    • Applied Biological Chemistry
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    • 제51권2호
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    • pp.142-147
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    • 2008
  • Rhizopus oryzae KSD-815를 밀에 접종하여 만든 누룩(Rhizopus oryzae KSD-815)에서 4종의 지질 화합물을 분리하여 화학구조를 동종하였다. 건조된 누룩을 실온에서 80% MeOH 수용액으로 추출하고 이추출물을 EtOAc 분획, n-BuOH 분획, $H_2O$ 분획으로 나누었다. EtOAc분획은 다시 80% MeOH 과 n-hexane 으로 분획하였다. n-Hexane 분획에 대해 silica gel 및 ODS column chromatography를 반복 실시하여 4종의 지질 화합물을 분리, 정제하였다. NMR, IR, GC/MS 등을 통하여 화합물 1(linolenic acid methyl ester), 화합물 2(palmitic acid methyl ester), 화합물 3(linoleic acid), 화합물 4(palmitic acid)의 구조를 결정하였다. 이 지방산 화합물의 세포독성을 평가하기 위해 인체 유래 유방암(MDA-MB-231)과 간암(SK-HEP-1)세포주에 대해 MTT assay를 수행하였다. 두 암 세포주에서 화합물 1(linolenic acid methyl ester)과 화합물 3(linoleic acid)은 농도의존적인 세포독성을 확인하였다. 또 염증반응 매개체의 일종인 nitric oxice(NO)의 생성 억제 활성을 Griess 방법으로 평가한 결과, 화합물 3(linoleic acid)은 LPS와 IFN-${\gamma}$에 의해 유도 된 NO 생성도 저해하는 것을 RAW264.7 세포에서 확인하였다.

펄스형 Nd-YAG 레이저 조사에 의한 법랑질 내산성 증가 기전에 관한 연구 (A STUDY OF THE MECHANISM OF IMPROVING ACID RESISTANCE OF BOVINE TOOTH ENAMEL AFTER PULSED Nd-YAG LASER IRRADIATION)

  • 이영순;손흥규
    • 대한소아치과학회지
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    • 제23권3호
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    • pp.640-658
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    • 1996
  • The purpose of this study was to examine the mechanism of improving acid resistance of Nd-YAG laser irradiated tooth enamel and determine the most effective energy density for improving acid resistance. The bovine tooth enamel were lased with a pulsed Nd-YAG laser. The energy densities of exposed laser beam were varied from 10 to $70\;J/cm^2$. To investigate the degree of improving acid resistance by irradiation, all the samples were submerged to demineralize in 0.5 N $HClO_4$ solution for 1 minute. After 1 minute, 0.05 % $LaCl_3$ was added to the solution for interrupting the demineralization reaction. The amounts of dissolved calcium and phosphate in the solution were measured by using an atomic absorption spectrophotometer and the UV/VIS spectrophotometer, respectively. To examine the mechanism of improving acid resistance, X-ray diffraction analysis, infrared spectroscopy, and scanning electron microscopy were taken. The X-ray diffraction pattern of the samples were obtained in the $10^{\circ}{\sim}80^{\circ}2{\theta}$ range with $Cu-K{\alpha}$ radiation using M18HF(Mac Science Co.) with X-ray diffractometer operating at 40 KV and 300 mA. The infra-red spectra of the ground samples in 300 mg KBr pellets 10 mm diameter were obtained in the $4000cm^{-1}\;to\;400cm^{-1}$ range using JASCO 300E spectrophotometer. The scanning electron microscopy was carried out using JSM6400(JEOL Co.) with $500{\sim}2000$ times magnification. The results were as follow 1. The concentration of calcium dissolved from laser irradiated enamel with $50J/cm^2$ was significantly lesser than that of unlased control group (p<0.05) 2. From the result of the X-ray diffraction analysis, $\beta$-TCP, which increases acid solubility, was identified in lased enamel but the diffraction peaks of (002) and (004) became sharp with increasing energy density of laser irradiation. This means that the crystals in lased samples were grown through the c-axis and subsequently, the acid solubility of enamel decreased. 3. The a-axis parameter was slightly increased by laser irradiation, whereas the c-axis parameter was almost constant except for a little decrease at $50J/cm^2$. 4. In the infra-red spectra of lased enamels, phosphate bands ($600{\sim}500cm^{-1}$), B-carbonate bands (870, $1415{\sim}1455cm^{-1}$), and A-carbonate band ($1545cm^{-1}$) were observed. The amounts of phosphate bands and the B-carbonate bands were reduced, on the other hand, the amount of the A-carbonate band was increased by increase the energy density. 5. The SEM experiments reveal that the surface melting and recrystallization were appeared at $30J/cm^2$ and the cracks were observed at $70J/cm^2$. From above results, It may be suggested that the most effective energy density for improving acid resistance of tooth enamel with the irradiation of Nd-YAG laser was $50J/cm^2$. The mechanism of improving acid resistance were reduction of permeability due to surface melting and recrystallization of lased enamel and reduction of acid solubility of enamel due to decrease of carbonate content and growth of crystal.

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