• 제목/요약/키워드: Inorganic polyphosphate

검색결과 26건 처리시간 0.03초

Undaria 세포의 인산대사에 관한 연구 (A study on phosphate metabolism in Undaria cells)

  • 이종삼;박영복
    • 미생물학회지
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    • 제19권1호
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    • pp.23-30
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    • 1981
  • 1.Each cells homogenized from Undaria were reacted in reaction micture to persue the phosphate metabolism in Undaria cell. Aliquots of the cells were taken out at the begin-ning and at intervals during the reaction, and analyzed for the content of total-P in various fractions of the cell constituents. 2.The P-contents in fraction of polyphosphate "B" decreased remarkably, while that in fraction of RNA polyphosphate "C" showed slow increase. 3.As well as in Chlorella cells, inorganic phosphates in DNA-P, protein-P, and lipid-P were transferred from polyphosphate, RNA-P turnovered from inorganic phosphate that is in cytoplasm, and RNA polyphosphate complex from polyphosphate, and it was suggested that inorganic phosphates in polyphosphate "B" could transformed into polyphosphate "A" & "C", and polyphosphate "C" into polyphosphate "A".

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무기인산염이 골유도재생에 미치는 영향 (Effect of inorganic polyphosphate on guided bone regeneration)

  • 정종혁;권영혁;박준봉;허익
    • Journal of Periodontal and Implant Science
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    • 제35권2호
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    • pp.491-510
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    • 2005
  • This study was performed to evaluate the effect of inorganic polyphosphate on bone formation in the calvaria of rabbit in the procedure of guided bone regeneration with bovine cancellous bone graft and titanium reinforced expanded polytetrafluoroethylene(TR-ePTFE) membrane. The rabbits were divided into four groups. Control group I used only TR-ePTFE membrane, control group II used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in saline, experimental group III and IV used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in 1% or 2% inorganic polyphosphate respectively. After decortication in the calvaria, GBR procedure was performed on 12 rabbits with titanium reinforced ePTFE membrane filled with deproteinized bovine bone mineral soaked in saline or inorganic polyphosphate. The animals were sacrificed at 2 weeks, 4 weeks, and 8 weeks after the surgery. Decalcified and non-decalcified specimens were processed for histologic and immunohistochemistric analysis. 1. Titanium reinforced ePTFE(TR-ePTFE) membrane showed good spacemaking and cell occlusiveness capability, but it showed poor wound stabilization. 2. The deproteinized bovine bone mineral did not promote bone regeneration, but it acted as a space filler. 3. There was no complete resorption of the deproteinized bovine bone mineral within 8 weeks. 4. 1% inorganic polyphosphate did not promote bone formation, but 2% inorganic polyphosphate promoted bone formation. Within the above results, 2% inorganic polyphosphate could be used effectively for bone regeneration.

무기인산염이 골재생에 미치는 효과에 대한 조직계측학적인 연구 (Histomorphometric study on effect of the polyphosphate for bone regeneration)

  • 이영석;박준봉;권영혁;허익;정종혁;주성숙
    • Journal of Periodontal and Implant Science
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    • 제37권1호
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    • pp.65-75
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    • 2007
  • In this study, author examined the effect of the concentration of the inorganic polyphosphate on the process of the bone regeneration by using the 6 weeks old rabbit with the weight of 2.0kg in average. we performed the experiment by using TR-eITFE membrane filled with collagen immersed with 1%, 2%, and 4% of inorganic polyphosphate, respectively, after removing the proper sized cort-ical bones from the calvaria of rabbit. The experimental results were compared with the one of the following four groups: The control group for membrane only, experimental group I for membrane filled with collagen im-mersed with 1% of inorganic polyphosphate, experimental group II for membrane filled with collagen immerse with 2% of inorganic polyphosphate, experimental group III for membrane filled with colla-gen immersed with 4% of inorganic polyphosphate. The fragments of the tissue with membrane were obtained from each group of the sacrificed rab-bits for 4 or 8 weeks sustained after surgery, were then prestained and coated. New bone formation was assessed by histomorphometric and statistical analysis. We may draw the conclusions from these experiments as following: 1. Collagen was an excellent carrier with a minimal inflammatory reaction and sustaining the form. 2. The sample of the 8th week group has shown the best bone regeneration compared with the cases of all groups including the control group. 3. The samples of collagen immersed with 2% and 4% of inorganic polyphosphate have shown more bone regeneration relative to the sample of the 1% inorganic polyphosphate. 4. The new bone regeneration was shown actively in the group for membrane filled with collagen immersed with 4% of inorganic polyphosphate. With above results, it is strongly suggested the use of inorganic polyphosphate with vehicle under TR-eITFE membrane.

무기인산염이 외방성 수직골 형성에 미치는 영향 (The effect of polyphosphate on exophytic bone formation)

  • 이진;박준봉;허익;정종혁;권영혁
    • Journal of Periodontal and Implant Science
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    • 제38권1호
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    • pp.59-66
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    • 2008
  • Purpose: It has been shown that the inorganic polyphosphate is effective for the regeneration of bones through the preliminary animal test of rabbits. The most effective concentration of the polyphosphate, however, is not known yet. Moreover, the effectiveness of carriers inside human body is not confirmed.. Materials and Methods: In this study, we examined the effect of the concentration of the inorganic polyphosphate on the process of the bone regeneration using the 6 weeks old rabbits with the weight of 2.0 kg in average. We performed the experiment using TR-ePTFE membrane(membrane) filled with collagen immersed in 4%, 8% of inorganic polyphosphate, respectively, following removal of the proper sized cortical bones from the rabbit calvaria. The experimental results were compared with the one of the following four groups: The negative control group for membrane only, the positive control group for membrane filled with collagen, the first experimental group for membrane filled with collagen immersed in 4% of inorganic polyphosphate, and the second experimental group for membrane filled with collagen immerse in 8% of inorganic polyphosphate. The fragments of the tissue with membrane obtained from each group of the sacrificed rabbits for 8 or 16 weeks sustained after surgery were then prestained by the Hematoxylin-Eosin stain and coated by resin to form non-decalcified specimens for the histologic examination and analysis. New bone formation was assessed by histomorphometric and statistical analysis. Results: 1. All groups have shown better bone regeneration at 16weeks than 8weeks. 2. Negative control group has shown more bone regeneration relative to the other groups at 8 and 16 weeks. 3. All experimental groups have shown better bone regeneration relative to positive control group. 4. At 16 weeks, the first experimental group has shown more bone regeneration compared to the second experimental group. Exophytic bone formation is not good at the first and the second experimental groups compared with negative control group. But, the use of 4% inorganic polyphosphate was more effective to bone formation than the use of 8% inorganic polyphosphate. Conclusion: With above results, it is suggested the use of inorganic polyphosphate with vehicle under TR-ePTFE membrane.

무기인산염 함유 이상성 인산칼슘이 외방성 수직골 형성에 미치는 영향 (The effect of micro-macroporous biphasic calcium phosphate incorporated with polyphosphate on exophytic bone regeneration)

  • 김동환;권영혁;박준봉;정종혁;허익
    • Journal of Periodontal and Implant Science
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    • 제38권2호
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    • pp.179-190
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    • 2008
  • Purpose: In this study, the effect of micro-macroporous biphasic calcium phosphate(MBCP) incorporated with inorganic polyphosphate for bone regeneration in the calvaria of rabbit was evaluated. Materials and Methods: The procedure of guided bone regeneration was performed with titanium reinforced expanded polytetrafluoroethylene(TR-ePTFE) membrane. Four animal groups were compared : 1) TR-ePTFE membrane for negative control group, 2) TR-ePTFE membrane filled with MBCP for positive control group, 3) TR-ePTFE membrane filled with MBCP soaked in 4% inorganic polyphosphate for experimental group I, and 4) TR-ePTFE membrane filled with MBCP soaked in 8% inorganic polyphosphate for experimental group II. Results: 1. Negative control group showed the highest new bone formation at 16 weeks. 2. Positive control group showed the smallest new bone formation compared to other groups. 3. 8% inorganic polyphosphate induced more volume of bone formation, otherwise experimental group II did not show significant difference compared to negative control group. Conclusion: These results suggest that inorganic polyphosphate has a promoting effect on bone regeneration, possibly by enhancing osteoconductivity of the carrier and by increasing osteoinductivity of the defected alveolar bone tissue.

무기인산염과 탈단백우골의 혼합사용이 골재생에 미치는 효과 (Effect of deproteinized bovine bone mineral soaked in inorganic polyphosphate on bone regeneration)

  • 나성윤;권영혁;박준봉;허익;정종혁
    • Journal of Periodontal and Implant Science
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    • 제37권1호
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    • pp.77-89
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    • 2007
  • This study was performed to evaluate the effect of deproteinized bovine bone mineral soaked in inorganic polyphosphate on bone regeneration in the calvaria of rabbit in the procedure of guided bone regeneration with titanium reinforced expanded polytetrafluoroethylene(TR-ePTFE) membrane. The rabbits were divided into four groups. Control group used TR-ePTFE membrane filled with de-proteinized bovine bone mineral, experimental group I used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in 4% inorganic polyphosphate, experimental group II and III used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in 8% or 16% inorganic poly-phosphate respectively. After decortication in the calvaria, GBR procedure was performed on 8 rabbits with only TR-ePTFE membrane or titanium reinforced ePTFE membrane filled with deproteinized bovine bone mineral soaked in inorganic polyphosphate. The animals were sacrificed at 4 weeks, and 8 weeks af-ter the surgery. Non-decalcified specimens were processed for histologic analysis, and new bone for-mation was assessed by histomorphometric as well as statical analysis. 1. Both control group and experirrental group dermnstrated increasing of new bone formation until 8weeks. 2. At 8 weeks, experimental group I and group II showed the significant difference compared to control group in new bone formation. Especially experimental group II showed the most in-creasing of new bone formation. 3. The higher concentration of inorganic polyphosphate filled, the more volume of bone formation pro-moted, but experimental group III did not reveal significant difference compared to contol group. 4. Deproteinized bovine bone mineral did not resorbed at all until 8 weeks. These results suggest that inorganic polyphosphate has a promoting effect on bone regeneration. possibly by enhancing osteoconductivity of the carrier and by increasing osteoinductivity of the defected alveolar bone tissue, but not as we respect.

돈육 가공에서 기능성 탄수화물을 이용한 인산염 대체 소재 개발 (Application of Functional Carbohydrates as a Substitute for Inorganic Polyphosphate in Pork Meat Processing)

  • 박기수;최양일;이상화;김종희;어중혁
    • 한국식품과학회지
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    • 제40권1호
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    • pp.118-121
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    • 2008
  • 본 연구는 소금의 첨가수준을 저수준(1.5%)으로 고정시키고, 인산염 대체가능성이 있는 다양한 기능성 소재들의 수준을 달리하여 원료돈육의 가공특성, 유화안정성 및 육색 등에 미치는 첨가효과를 구명하였다. 기능성 물질의 첨가는 원료돈육의 일반성분과 pH에는 유의적인 영향을 미치지 않았다. 보수력과 가열 감량에 있어 후보 물질들과 인산염 처리구 간에 유의적인 변화가 나타났고, 구아검, 카라기난, 알긴산이 인산염 대체에 적적한 특성을 보였다. 유화안정성에서는 인산염, 알긴산과 구아검 첨가구가 유의적으로 높은 안정성을 나타냈어 이후 실제 가공품에의 적용가능성을 나타냈다. 이상의 결과에서 카라기난과 구아검의 경우인산염과 유사한 가공특성, 유화안정성과 육색을 나타내어 육제품 제조용 인산염 대체첨가물질로 가능성을 확인할 수 있었다.

시금치에서 분이한 엽록체의 인산대사에 관한 연구 (A Study on Phosphate Metabolism of Chloroplast Isolated from Spinach)

  • 이종삼
    • Journal of Plant Biology
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    • 제19권3호
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    • pp.71-84
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    • 1976
  • In order to observe the phosphate metabolism in chloroplast, the contents of inorganic phosphate and various compounds in chloroplast from spinach leaf tissues were investigated during the reaction in the light and dark in the reaction mixture and the turnover of phosphate in chloroplast was compared with that of whole cell system: 1. The phosphorus of DNA in chloroplast appears to be transferred from inorganic phosphate, while in whole cell system from phosphate pool. 2. $^{32}P-phosphate$ content of acid soluble fraction in chloroplast as well as in whole cell system was more increased in the light than dark during the reaction. It was noted to be caused by the stimulation of sugar phosphate synthesis in the light. 3. It was confirmed that polyphosphate exists in chloroplast as well as whole cell. Acid insoluble polyphosphate content in whole cell system was significantly decreased during the reaction and the similar tendency was also observed in chloroplst. It is, therefore, considered that acid insoluble polyphosphate also play an most important role as a phosphate pool respectively in chloroplast and in cytoplasm. 4. Protein and lipid phosphorus in chloroplast as well as whole cell system were transferred from acid insoluble polyphosphate.

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소시지 제조시 인산염 대체 소재로 L-Arginine의 활용 (Application of L-Arginine as a Substitute for Inorganic Polyphosphate in Pork Sausage Production)

  • 김용덕;이준수;박준현;박동철;전영승;인만진;오남순
    • Journal of Applied Biological Chemistry
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    • 제57권2호
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    • pp.171-174
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    • 2014
  • $\small{L}$-아르기닌의 알칼리성과 보습성을 식품에 활용하는 연구의 일환으로 폴리인산염 대신에 $\small{L}$-아르기닌을 0.25, 0.5, 1.0% (w/w) 첨가하여 소시지를 제조하고, 각각의 pH, 보수력, 유화 안정성 및 조직감을 조사하였다. 소시지의 pH는 $\small{L}$-아르기닌의 첨가량에 비례하여 증가하였으며, 수분함량은 $\small{L}$-아르기닌을 0.25% 이상, 유화 안정성은 0.5% 이상, 경도와 전단력은 1.0%를 첨가한 결과가 폴리인산나트륨을 0.5% 첨가한 소시지의 특성과 유사하였다. 인산염 0.5%와 $\small{L}$-아르기닌 0.5% 첨가 소시지에 대하여 관능 평가를 실시하였다. 조직감은 인산염을 사용한 시료가 $\small{L}$-아르기닌을 첨가한 시료보다, 맛과 전체적인 기호도에서도 $\small{L}$-아르기닌을 첨가한 소시지가 다소 우수한 것으로 평가되었다. 이상의 결과로부터 소시지 제조시 $\small{L}$-아르기닌은 인산염 대체 소재로 활용될 수 있으며 첨가량은 0.5%가 적절함을 확인할 수 있었다.

Chlorella 세포에서의 $^{32}P$-인산의 단백질 및 다른 질소화합물로의 전환 (Incorporation of phosphate into protein and other nitrogenous compounds in Chlorella cells)

  • Lee, Yung-nok
    • 미생물학회지
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    • 제5권2호
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    • pp.61-68
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    • 1967
  • In the process of the incorporation of orthophsphate into protein and other cell constituents, the role of inorganic polyphosphate and RNA-polyphosphate complex and the correlation between them were pursued by analyzing the contents of $^{32}P$ and total P in various fractions of Chlorella cells, which had been uniformly labeled with $^{32}P$ before the inoculation in a normal "cold" medium or P-free medium during the culture. The effects of ionizing radiation and various micronutritional-element deficiencies on the phosphate incorporation into, and biosynthesis of, protein and other introgenus compounds in the cells were also observed. When the uniformly $^{32}P$-labeled algae were grown in a normal "cold" medium the contents of $^{32}$ P in the fractions of protein, DNA and RNA-polyphosphate complex increased, but those in the fraction of acid-insoluble polyphosphate decreased. On the other hand, amount of $^{32}P$in the fraction of RNA was almost unchanged in spite of rapid increase of the total P. In the growing period of $^{32}P$-labeled algae in a P-free medium, amounts of $^{32}P$ in the fractions of DNA, protein and lipid increased, while those in the fractions of RNA-polyphosphate and inorganic polyphosphates decreased. When the algal cells were irradiated with about 70, 000r of gamma-rays before the inoculation in the medium, amounts of phosphate in the fractions of DNA, RNA, nucleotides and protein decreased during the culture, compared with those of the control. However, the phosphate content in the fraction of acid-insoluble polyphosphate of the irradiated cells increased than those of the control. In the growing period of the algae in a Mo-free, medium, amounts of acid-soluble total phosphate and nucleotides of the cells increased, while the amounts of residual protein and RNA decresed compared with those of the normal cells. Amounts of alkali-labile protein and phospholipid of the cells grown in a B-free medium decreased, whereas amount of phosphate in acid-soluble fraction increased compared with the control. In general, the contents of protein and RNA in each microelement deficient cells decreased more or less, compared with those in the normal cells.in the normal cells.

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