• Title/Summary/Keyword: Calcium Phosphate

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Studies on Xanthine Oxidase from Bovine Thyroid Glands -[Part 1] Purification and Substrate Specificity- (소의 갑상선에 있는 크산친 옥시다아제에 관한 연구 -[제1보] 효소의 정제와 기질특이성-)

  • Lee, Hyo-Sa
    • Applied Biological Chemistry
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    • v.21 no.2
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    • pp.112-118
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    • 1978
  • Xanthine oxidase from bovine thyroid glands was purified to apparent homogeneity when judged by analytical disc gel electrophoresis. The purification procedures include pancreatin digestion, butanol extraction, ammonium sulfate precipitation, calcium phosphate gel adsorption, ultrafiltration, calcium phosphate gel-cellulose column chromatography, gel filtration, preparative Sephadex G-25 column electrophoresis, and preparative polyacrylamide gel electrophoresis. The enzyme was enriched 1,000-fold. However, its specific activity was markedly low as compared with highly purified milk enzyme. Thyroidal xanthine oxidase exhibited a low specificity for substrates and electron acceptors. The kinetic properties of thyroid xanthine oxidase were found to be similar to those of the milk enzyme on the basis of Michaelis constants for common substrates.

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Porous Hyaluronic Acid-Gelatin Loaded Sponge Biphasic Calcium Phosphate Scaffold for Bone Implant Application

  • Nguyen, Thuy Ba Linh;Kim, Shin-Woo;Min, Young-Ki;Yang, Hun-Mo;Lee, Byong-Taek
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.10a
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    • pp.35.2-35.2
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    • 2011
  • In this study, hyaluronic acid (HyA) - Gelatin (Gel) hydrogels were prepared at ratio of 15:85 with the goal of obtaining a high uniform porosity and porous biocompatibility scaffold for bone tissue engineering applications. In order to develop a proper scaffold for bone implant application, a HyA-Gel hydrogel loaded in sponge Biphasic Calcium Phosphate (BCP) was prepared. To assay the cytocompatibility and cell behavior on the HyA-Gel hydrogel and HyA-Gel/BCP scaffold, cell attachment and spreading of MSCs seeded on the scaffolds were studied. An invivo study was performed for HyA-Gel/BCP scaffolds after 1 and 3 months implantation. Our results provide a novel and simple method to obtain an adequate scaffold for osteoblast cells and indicate that HyA-Gel hydrogel and HyA-Gel/BCP scaffold could be a good candidate for bone tissue engineering scaffolds.

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Improvement of the osteogenic potential of ErhBMP-2-/EGCG-coated biphasic calcium phosphate bone substitute: in vitro and in vivo activity

  • Hwang, Jae-ho;Oh, Seunghan;Kim, Sungtae
    • Journal of Periodontal and Implant Science
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    • v.49 no.2
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    • pp.114-126
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    • 2019
  • Purpose: The aim of this study was to evaluate the enhancement of osteogenic potential of biphasic calcium phosphate (BCP) bone substitute coated with Escherichia coli-derived recombinant human bone morphogenetic protein-2 (ErhBMP-2) and epigallocatechin-3-gallate (EGCG). Methods: The cell viability, differentiation, and mineralization of osteoblasts was tested with ErhBMP-2-/EGCG solution. Coated BCP surfaces were also investigated. Standardized, 6-mm diameter defects were created bilaterally on the maxillary sinus of 10 male New Zealand white rabbits. After removal of the bony windows and elevation of sinus membranes, ErhBMP-2-/EGCG-coated BCP was applied on one defect in the test group. BCP was applied on the other defect to form the control group. The animals were sacrificed at 4 or 8 weeks after surgery. Histologic and histometric analyses of the augmented graft and surrounding tissue were performed. Results: The 4-week and 8-week test groups showed more new bone (%) than the corresponding control groups (P<0.05). The 8-week test group showed more new bone (%) than the 4-week test group (P<0.05). Conclusions: ErhBMP-2-/EGCG-coated BCP was effective as a bone graft material, showing enhanced osteogenic potential and minimal side effects in a rabbit sinus augmentation model.

Effect of Calcium Inhibitors on Mouse Oocyte Maturation ($Ca^{2+}$ Inhibitor가 생쥐난자 성숙에 미치는 영향)

  • Chung, Hye-Won;Yoo, Han-Ki;Bae, In-Ha
    • Clinical and Experimental Reproductive Medicine
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    • v.19 no.1
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    • pp.15-29
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    • 1992
  • In the present study, it was aimed to find the role of calcium on the maturation of mouse follicular oocytes as well as for the role of calcium inhibitors, $Ni^{2+}$ and $La^{3+}$. Mouse follicular oocytes were cultivated in different media at $37^{\circ}C$, in 100% humidified $CO_2$ incubator for 3 and 17 hrs. The results were as follows; 1. There was no differences in GVBD between the control and experimental groups during the 3 hr culture. 2. Mouse oocytes were matured to higher rate in MHBS rather than HTF for 17 hr culture. 3. Maturation rate was significantly lower in $Ca^{2+}$-free and $Ca^{2+}$ 0.4 mM which were tested, compared to other calcium concentration used in the present study. 4. Calcium inhibitor, $Ni^{2+}$, it showed highest degeneration rate at all calcium concentrations and additionally in $Ni^{2+}$ $100{\mu}M$ treated group next. Maturation rate was significantly decrease as the $Ca^{2+}$ inhibitor concentration increased. 5. In all Lanthanum treated groups of calcium-free, degeneration were significantly high treated groups at 0.4 mM $Ca^{2+}$ concentrations degeneration rates of all group were significantly lower than that of the control but maturation rates were not significantly different in any group. In lanthanum $100{\mu}M$ treated group at 0.4 mM and 0.8 mM calcium concentration, its maturation rate was significantly higher than that of the control. Maturation rates of all groups of lanthanum treated at 1.71 mM calcium concentration were not significantly different among groups. 6. In the calcium treated group (0.4mM-1.7 mM), the presence of phosphate does not seem to be needed for oocyte maturation. However, the presence of phosphate at $Ca^{2+}$ 0.8 mM only seems to stimulated maturation.

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Calcium release and physical properties of modified carbonate apatite cement as pulp capping agent in dental application

  • Zakaria, Myrna Nurlatifah;Cahyanto, Arief;El-Ghannam, Ahmed
    • Biomaterials Research
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    • v.22 no.4
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    • pp.346-351
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    • 2018
  • Background: Carbonate apatite ($CO_3Ap$) and silica-calcium phosphate composite (SCPC) are bone substitutes with good prospect for dental application. SCPC creates a hydroxyapatite surface layer and stimulate bone cell function while, $CO_3Ap$ induce apatite crystal formation with good adaptation providing good seal between cement and the bone. Together, these materials will add favorable properties as a pulp capping material to stimulate mineral barrier and maintain pulp vitality. The aim of this study is to investigate modification of $CO_3Ap$ cement combined with SCPC, later term as $CO_3Ap-SCPC$ cement (CAS) in means of its chemical (Calcium release) and physical properties (setting time, DTS and pH value). Methods: The study consist of three groups; group 1 (100% calcium hydroxide, group 2 $CO_3Ap$ (60% DCPA: 40% vaterite, and group 3 CAS (60% DCPA: 20% vaterite: 20% SCPC. Distilled water was employed as a solution for group 1, and $0.2mol/L\;Na_3PO_4$ used for group 2 and group 3. Samples were evaluated with respect to important properties for pulp capping application such as pH, setting time, mechanical strength and calcium release evaluation. Results: The fastest setting time was in $CO_3Ap$ cement group without SCPC, while the addition of 20% SCPC slightly increase the pH value but did not improved the cement mechanical strength, however, the mechanical strength of both $CO_3Ap$ groups were significantly higher than calcium hydroxide. All three groups released calcium ions and had alkaline pH. Highest pH level, as well as calcium released level, was in the control group. Conclusion: The CAS cement had good mechanical and acceptable chemical properties for pulp capping application compared to calcium hydroxide as a gold standard. However, improvements and in vivo studies are to be carried out with the further development of this material.

Characterization of the biodegradable behavior for biphasic calcium phosphates using X-ray diffraction and lattice parameter (X-선 회절 및 격자 매개변수를 이용한 biphasic calcium phosphate 분말의 생분 해성 특성평가)

  • Kim, Dong-Hyun;Song, Chang-Weon;Kim, Tae-Wan;Jin, Heoyng-Ho;Park, Hong-Chae;Yoon, Seog-Young
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.21 no.4
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    • pp.169-174
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    • 2011
  • Nanoscale-biodegradable behaviors of synthesized biphasic calcium phosphates (BCP) powders were characterized using X-ray diffraction (XRD), lattice parameter, and field emission microscopy (FE-SEM). The calcined BCP powders in vitro tested in Hank's balanced salt solution (pH = 7.4, $36.5^{\circ}C$) for 3 weeks. The calculated unit cell parameters for BCP have shown lattice distortion and expansion as irregular changes in the a and c-axis after in vitro.

Synthesis and Characterization of Amorphous Calcium Phosphate Nanoparticles (비정질 칼슘 포스페이트 나노 입자의 합성과 특성)

  • Han, Ji-Hoon;Chung, Sungwook
    • Applied Chemistry for Engineering
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    • v.29 no.6
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    • pp.740-745
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    • 2018
  • The synthesis and characterization of amorphous calcium phosphate (ACP) nanoparticles were reported in this work. We show that relatively monodisperse ACP nanoparticles with a size of sub-100 nm can be prepared by a hydrothermal reaction of calcium chloride ($CaCl_2$) and disodium adenosine triphosphate ($Na_2ATP$) in the presence of sodium phytate as an additive. Their compositions and structures were confirmed using a series of material characterization techniques. Our results exhibit that ACP nanoparticles synthesized using sodium phytate enhanced the stability of maintaining their amorphous nature and prevented from a conversion to crystalline hydroxyapatite (HAP). ACP nanoparticles with the improved stability have potential uses in biomaterial applications in regenerative medicine.

Effects of Ginseng on Global Myocardial Ischemia and Reperfusion in the Rat Heart (허혈 및 재관류한 흰쥐 심장에 미치는 인삼의 영향)

  • Kim, Byung-Chae;Kim, Nak-Doo
    • YAKHAK HOEJI
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    • v.32 no.1
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    • pp.70-79
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    • 1988
  • The effect of Ginseng on global myocardial ischemia and reperfusion was examined in isolated perfused rat hearts. The Ginseng ethanol extract (100mg/kg/day) was administered orally for 10 days. The rat hearts were removed and perfused at 75cm $H_{2}O$ by the Langendorff method. After 25 min. of global ischemia, the hearts were reperfused. The myocardial contents of adenosine 5'-triphosphate, creatine phosphate, and calcium were assayed. There no differences in ATP levels in all group of normal and Ginseng-treated hearts. Both in non-ischemic and ischemic heart, Ginseng increased significantly tissue creatine phosphate levels compared with control. Whereas, in ischemic-reperfused heart, there was no significant difference. In the control groups, myocardial calcium contents in the ischemic hearts were decreased compared with the non-ischemic hearts. But, in the Ginseng-treated groups, the calcium contents in the ischemic herts were not changed with the nonischemic hearts. Therefore, Ginseng appears to exert its protective effect against ischemic heart condition, not against ischemic-reperfused heart condition, by regulating energy metabolism and maintaing cellular function.

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Solubilization of Insoluble Phosphates by Penicillium sp. GL-101 Isolated from Soil (토양에서 분리한 Penicillium sp. GL-101에 의한 난용성 인산염의 가용화)

  • Choi, Myoung-Chul;Chung, Jong-Bae;Sa, Tong-Min;Lim, Sun-Uk;Kang, Sun-Chul
    • Applied Biological Chemistry
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    • v.40 no.4
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    • pp.329-333
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    • 1997
  • Phosphate solubilizing microorganisms (1,000 bacteria and 200 fungi) were isolated from soil around Kyungnam and Kyungbook regions using potato dextrose agar-calcium phosphate medium. A fungus with the greatest phosphate solubilizing activity was selected and identified to Penicillium sp. GL-101, based on the morphological characteristics of conidiophore and conidia; flask shape of phialide, simple branching type of conidiophore, and columnar shape of conidial head, in malt extract agar and potato dextrose agar media. The optimum temperature and initial pH to solubilize rock phosphate in potato dextrose broth-rock phosphate medium were $25^{\circ}C$ and pH 7.5, respectively. In these optimum conditions, phosphate solubilizing activities of Penicillium sp. GL-101 against four types of insoluble phosphate: tricalcium-phosphate, aluminium phosphate, hydroxyapatite and rock phosphate, were quantitatively determined. As results, this fungus highly discharged free phosphates to the culture broth with the concentrations of 1,152 ppm against tricalcium-phosphate, 565 ppm against rock phosphate, 292 ppm against aluminium phosphate, and 217 ppm against hydroxyapatite, respectively.

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DEVELOPMENT OF MICROPOROUS CALCIUM PHOSPHATE COATED NERVE CONDUIT FOR PERIPHERAL NERVE REPAIR (말초신경 재건을 위한 인회석 박막 코팅 미세공성 신경재생관(nerve conduit)의 개발)

  • Lee, Jong-Ho;Hwang, Soon-Jeong;Choi, Won-Jae;Kim, Soung-Min;Kim, Nam-Yeol;Lee, Eun-Jin;Ahn, Kang-Min;Myung, Hoon;Seo, Byoung-Moo;Choi, Jin-Young;Choung, Pill-Hoon;Kim, Myung-Jin;Kim, Hyun-Man
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.29 no.3
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    • pp.151-156
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    • 2003
  • This study was performed to develop a useful nerve conduit which provides favorable environment for Schwann cell viability and proliferation. Milipore membrane of $0.45{\mu}m$ pore size was selected because it permits nutritional inflow from the outside of the conduit and prevents from invading the fibrotic tissue into the conduit. The membrane was rolled and sealed to form a conduit of 2mm diameter and 20mm length. To improve the axonal regeneration and to render better environment for endogenous and exogenous Schwann cell behaviour, the microgeometry and surface of conduit was modified by coating with thin film of calcium phosphate. Cellular viability within the conduit and attachment to its wall were assessed with MTT assay and SEM study. Milipore filter conduit showed significantly higher rate of Schwann cell attachment and viability than the culture dish. However, the reverse was true in case of fibroblast. Coating with thin film of low crystalline calcium phosphate made more favorable environment for both cells with minimal change of pore size. These findings means the porous calcium phosphate coated milipore nerve conduit can provide much favorable environment for endogenous Schwann cell proliferation and exogenous ones, which are filled within the conduit for the more advanced strategy of peripheral nerve regeneration, with potential of reducing fibrotic tissue production.