• 제목/요약/키워드: Ca-alginate method

검색결과 33건 처리시간 0.027초

Characterizations of nano-zinc doped hydroxyapatite to use as bone tissue engineering

  • Abdel-Ghany, Basma E.;Abdel-Hady, Bothaina M.;El-Kady, Abeer M.;Beheiry, Hanan H.;Guirguis, Osiris W.
    • Advances in materials Research
    • /
    • 제4권4호
    • /
    • pp.193-205
    • /
    • 2015
  • Contamination by bacterial strands is a major problem after bone replacement surgeries, so there is a great need to develop low cost biocompatible antibacterial bioactive scaffolds to be used in bone tissue engineering. For this purpose, nano-zinc doped hydroxyapatite with different zinc-concentrations (5, 10 and 15 mol%) was successfully prepared by the wet chemical precipitation method. The prepared powders were used to form porous scaffolds containing biodegradable Ca-cross-linked alginate (5%) in order to enhance the properties of alginate scaffolds. The scaffolds were prepared using the freeze-gelation method. The prepared powders were tested by X-ray diffraction; transmission electron microscope and Fourier transform infrared analyses, while the prepared scaffolds were investigated by Fourier transform infrared analyses, thermogravimetric analyses and measurement of the antibacterial properties. Best results were obtained from scaffold containing 15% mol zinc-doped hydroxyapatite powders and 5% alginate concentration with ratio of 70:30.

Aspergillus niger를 고정화한 Alginate Bead에 의한 납 흡착 (Lead Biosorption by Alginate Beads Immobilizing Aspergillus niger)

  • 방병호
    • Applied Biological Chemistry
    • /
    • 제44권3호
    • /
    • pp.185-190
    • /
    • 2001
  • 알긴산은 일반적으로 미생물의 고정화에 널리 사용되는 biopolymer이다. 본 연구는 구연산 생산균인 Aspergillus niger를 calcium alginate로 고정화한 beads로 납의 흡착 특성을 조사하였다. A. niger beads는 $CaCl_2$를 사용하여 주사기로 제조하였으며 이 beads를 납제거에 이용하였다. 그 결과는 다음과 같다. 즉, A. niger를 구연산 생성배지에서 1일에서 7일까지 배양한 후 제조한 beads로 납흡착량을 측정한 결과는 3일간 배양된 곰팡이 beads에서 가장 높았다. 발아되지 않은 beads와 3일간 배양된 beads로 시간에 따른 납흡착량을 정량한 결과 30분까지는 그 흡착량이 동일하게 급격히 증가하였으며 그 후 발아되지 않은 beads는 더 이상 흡착이 일어나지 않았으나 3일간 배양된 곰팡이 beads는 시간이 지남에 따라 천천히 계속 흡착하여 1시간 후에는 480 ppm까지 흡착하였다. 납흡착시 최적 pH와 온도는 각각 6과 $35^{\circ}C$로 나타났다. 납용액 50 ml (500 ppm)이 든 250 ml 삼각플라스크에 beads $50{\sim}100$개가 최적이었으며 그 이상에서는 납흡착율이 감소하였다. 중금속에 대한 흡착율은 납> 구리> 카드뮴 순이었으며 0.1 M $CaCl_2$, 0.1 M NaOH 및 0.1 M KOH의 전처리의 효과는 없었으며 0.1 HCI로 곰팡이 bead의 납탈착하여 beads를 재사용이 가능하였다.

  • PDF

알긴산 나트륨을 이용한 유산균 캡슐화의 상업화 공정 개발 (Development of a Commercial Process for Micro-Encapsulation of Lactic Acid Bacteria Using Sodium Alginate)

  • 김지연;유성식
    • Korean Chemical Engineering Research
    • /
    • 제55권3호
    • /
    • pp.313-321
    • /
    • 2017
  • 바이오 고분자인 알긴산 나트륨(Sodium Alginate)을 이용하여 기존의 방법에 비해 생산성이 우수한 캡슐화의 상업화 공정을 개발하고자 하였다. 또한, 동일 공정으로 키토산을 알긴산과 함께 캡슐화하여 알긴산 나트륨으로 캡슐화 된 유산균과 비교하였다. 유산균 캡슐화의 상업화 공정의 주요 공정은 캡슐화 후 기존의 동결건조 대신에 본 연구진이 개발한 생산성이 우수한 유동화 건조 방법에 의하여 건조시간을 15~24이상 단축할 수 있었지만, 생균수는 동결건조와 유동층 건조의 비율이 1:0.75로 동결건조 방법이 좋았다. 하지만 건조에 드는 비용과 시간을 고려 해 볼 때 유동층 건조 방법으로 상업화 공정이 가능함을 확인할 수 있었다. Chitosan-alginate 캡슐은 알긴산 칼슘캡슐과 생균수를 비교하였을 때, 알긴산을 이용한 캡슐은 희석배수 $10^{-9}$, 즉 약 $1{\times}10^9$ 마리 이상의 균이 존재하고, 키토산을 이용한 캡슐은 희석배수 $10^{-3}$, 즉 약 $1{\times}10^3$ 마리의 균이 존재함을 확인 할 수 있었다. 본 연구의 기술로 제조된 유산균 캡슐은 pH 4.65, 6.01에서 96시간 이상 동안 안정하였지만, pH 7.07, 8.35에서는 1시간 이내에 모두 붕해되었다. 이는 유산균 캡슐이 위산에서 안정성을 보이고 pH 7이상을 띠는 소화기관인 소장과 대장에서는 쉽게 붕해가 일어날 수 있음을 알 수 있었다.

Calcium Alginate의 킬레이트 결합을 이용한 수중의 질산성 질소 제거에 관한 연구 (A Study on the Nitrate Removal in Water by Chelating Bond of Calcium Alginate)

  • 김태경;송주영;김종화
    • 한국응용과학기술학회지
    • /
    • 제33권4호
    • /
    • pp.795-801
    • /
    • 2016
  • 본 연구는 응집제로 calcium alginate를 이용한 질산성 질소 처리에 관한 연구이다. 질산성 질소를 제거하기 위한 방법으로는 역삼투법, 이온교환수지법, 전기투석법, 생물학적 방법 등이 있지만 본 연구에서는 응집 침전시키는 방법으로서 질산성 질소를 처리하고자 하였다. 응집제로 이용한 calcium alginate가 킬레이트 결합을 형성하여 질산성 질소를 응집 침전시킬 것으로 예상하고, 응집제의 성분, 응집 반응시간, 응집제의 몰비, 응집제의 주입율에 따라 질산성 질소가 제거되는 경향을 보았다. 또한 FE-SEM과 EDS(Energy Dispersive X-Ray Spectrometer)를 통하여 응집반응 후 침전물의 구조 및 구성성분비를 분석함으로써 질산성 질소가 Calcium-nitro-alginate 형태로 제거되는지를 확인하였다. 그 결과 반응시간은 60분, 응집제의 몰비는 1:1일 때, 응집제의 주입율은 합성폐수의 2 %일 때 질산성 질소의 제거율이 최대 56.7 %로 나타났다.

독성물질 농도에 따른 Photobacterium phosphoreum의 bioluminescence 변화 (Respones of Photobacterium phosphoreum to toxic substances)

  • 정계훈;정성제;이용제;허문석;전억한
    • 한국미생물·생명공학회지
    • /
    • 제28권1호
    • /
    • pp.45-51
    • /
    • 2000
  • Photobacterium phosphoreum was used for the study of bioluminescence response to toxic substances including phenol, As2O3, SoO2, and CrO3 in view of developing monitoring system. measurement of inhibition of bioluminescence in P. phosphoreum has been proposed as a sensitive and raped procedure to monitor toxic substances. The concentration of toxic substance causing 50% light reduction(EC50) in bioluminescence intensity was determined with free and immobilized P. phosphoreum, The minimum inhibitory concentrations (MICs) for bioluminescence emission were found to be 400ppm for As2O3, 800ppm for phenol, 60ppm for SeO2 and 60ppm for CrO3 , respectively. The linear correlation between Gamma value and the concentration of toxic substances was obtained and EC50 wa calculated from the linear correlation. The free cells were shown to be more sensitive to toxic substances than cells immobilized on Sr-alginate and Ca-alginate. However, the linear regression curves were derived from the Sr-alginate immobilized cells indicating the immobilization method in s useful tool for monitoring of toxic substances under the more stable condition of bioluminescence.

  • PDF

체외생산 소 초기배 할구세포의 Embedding Matrix에서의 발생능력 (Development Ability of Bovine Early Embryo Blastomere In Vitro in Embedding Matrix)

  • 이홍준;서승운;이상호;송해범
    • 한국수정란이식학회지
    • /
    • 제10권2호
    • /
    • pp.171-175
    • /
    • 1995
  • This study was performed to establish the condition and the methods for the techniques of insertion the isolated blastomere cells into cytoplasm, in order to research the develop-mental ability of bovine embryo blastomere cells in vitro produced. After 24h in vitro ovary maturation with the ovaries from a slaughter house, in vitro fertilization was performed to the vital sperms which their mobility were decided by percoll gradient method, with 2~8 cell stage embryos, the blastomeres were isolated in $Ca^2$+. $Mg^2$+-free PBS, and following that embedded into agar and alginate solution, respectively. The rates of in vitro develop-ment are as follows ; in agar embedded 11 among 120(9.2%) 1 /2~1 /3 blastomers cleaved and 6 among 93(6.5%) 1 /4~1 /8 blastomeres cleaved. In sodium alginate-embedded 14 among 84(16.7%) 1 /2~1 /3 blastomeres cleaved and 6 among 85(7.1%) 1 /4~1 /8 blastomeres cleaved. In case of Na-alginate, the rate of the cells were better than those of agar. The results suggest that the techniques for embeeding the isolated blastomeres into gel may help cloning of bovine early embryo without nuclear transplantation.

  • PDF

미세 채널에서 칼슘이온 물질전달을 이용한 단분산성 알지네이트 하이드로젤 입자의 실시간 젤화 (In situ Gelation of Monodisperse Alginate Hydrogel in Microfluidic Channel Based on Mass Transfer of Calcium Ions)

  • 송영신;이창수
    • Korean Chemical Engineering Research
    • /
    • 제52권5호
    • /
    • pp.632-637
    • /
    • 2014
  • 본 논문은 가교제의 물질전달을 통한 실시간 생체고분자의 젤화 과정으로 단분산성을 갖는 구형의 알지네이트 하이드로젤을 미세유체 채널 내에서 제조하는 방법에 관한 연구이다. 먼저 미세유체 채널 내에서 단분산성 알지네이트 액적들을 형성하고 연속상에 분산된 염화칼슘 분자들의 물질전달 과정을 통해 실시간 젤화과정이 이루어지게 하여 알지네이트 하이드로젤 입자를 제조하였다. 이때, 미세유체 채널에서 형성되는 액적의 크기는 손쉽게 케필러리 수(capillary number)와 분산상의 유속 조절을 통하여 제어할 수 있다. 본 방법은 미세유체 채널 내에서 안정적인 액적을 형성할 수 있고 칼슘 가교제로 제조된 알지네이트 하이드로젤 입자들은 균일한 크기 분포를 가지며(C.V=2.71%) 유속, 점도, 및 계면장력의 조절을 통하여 $30{\mu}m$에서 $60{\mu}m$까지의 다양한 크기의 알지네이트 하이드로젤 입자를 제조할 수 있다. 본 논문에서 제시한 간단한 미세유체 접근방법을 통해 제조되는 단분산성을 갖는 알지네이트 하이드로젤 입자는 생체물질들을 손쉽게 함입(encapsulation)할 수 있으며 이는 식품, 화장품, 잉크 및 약물 등의 전달체로 활용이 가능하고 생체적합성이 뛰어나 세포이식 분야에도 활용될 가능성이 있다.

Microbial Removal Using Layered Double Hydroxides and Iron (Hydr)oxides Immobilized on Granular Media

  • Park, Jeong-Ann;Lee, Chang-Gu;Park, Seong-Jik;Kim, Jae-Hyeon;Kim, Song-Bae
    • Environmental Engineering Research
    • /
    • 제15권3호
    • /
    • pp.149-156
    • /
    • 2010
  • The objective of this study was to investigate microbial removal using layered double hydroxides (LDHs) and iron (hydr)oxides (IHs) immobilized onto granular media. Column experiments were performed using calcium alginate beads (CA beads), LDHs entrapped in CA beads (LDH beads), quartz sand (QS), iron hydroxide-coated sand (IHCS) and hematite-coated sand (HCS). Microbial breakthrough curves were obtained by monitoring the effluent, with the percentage of microbial removal and collector efficiency then quantified from these curves. The results showed that the LDH beads were ineffective for the removal of the negatively-charged microbes (27.7% at 1 mM solution), even though the positively-charged LDHs were contained on the beads. The above could be related to the immobilization method, where LDH powders were immobilized inside CA beads with nano-sized pores (about 10 nm); therefore, micro-sized microbes (E. coli = 1.21 ${\mu}m$) could not diffuse through the pores to come into contact with the LDHs in the beads, but adhere only to the exterior surface of the beads via polymeric interaction. IHCS was the most effective in the microbial removal (86.0% at 1 mM solution), which could be attributed to the iron hydroxide coated onto the exterior surface of QS had a positive surface charge and, therefore, effectively attracted the negatively-charged microbes via electrostatic interactions. Meanwhile, HCS was far less effective (35.6% at 1 mM solution) than IHCS because the hematite coated onto the external surface of QS is a crystallized iron oxide with a negative surface charge. This study has helped to improve our knowledge on the potential application of functional granular media for microbial removal.

Peripheral Nerve Regeneration Through Nerve Conduit Composed of Alginate-Collagen-Chitosan

  • Kim, Sang-Wan;Bae, Hong-Ki;Nam, Hye-Sung;Chung, Dong-June;Choung, Pill-Hoon
    • Macromolecular Research
    • /
    • 제14권1호
    • /
    • pp.94-100
    • /
    • 2006
  • Although the peripheral nerve system has a relatively good regenerating capacity compared to the central nerve system, peripheral nerve repair remains a clinical challenge as restoration of normal nerve function is highly variable. Synthetic tubular nerve conduits were designed as an alternative repair method in order to replace the need for an isograft. These nerve conduits guide regenerating axons from the proximal toward the distal end, maintain within growth-promoting molecules released by the nerve stumps, and protect regenerating axons from infiltrating scar tissue. In this work, we prepared cinnamoylated alginate (CA)-collagen-chitosan nerve conduit using the lyophilization method to generate a controllable parallel channel in the center and then investigated its influence on peripheral nerve regeneration in an animal study. At 12 weeks after implantation, histological study showed that tissue cable was continuously bridging the gap of the sciatic nerve in all rats. Our newly developed nerve conduit is a promising tool for use in peripheral nerve regeneration and provides a suitable experimental model for future clinical application.

Hydrogels with diffusion-facilitated porous network for improved adsorption performance

  • Pei, Yan-yan;Guo, Dong-mei;An, Qing-da;Xiao, Zuo-yi;Zhai, Shang-ru;Zhai, Bin
    • Korean Journal of Chemical Engineering
    • /
    • 제35권12호
    • /
    • pp.2384-2393
    • /
    • 2018
  • Porous alginate-based hydrogel beads (porous ABH) have been prepared through a facile and sustainable template-assisted method using nano-calcium carbonate and nano-$CaCO_3$ as pore-directing agent for the efficient capture of methylene blue (MB). The materials were characterized by various techniques. The sorption capacities of ABH towards MB were compared with pure sodium alginate (ABH-1:0) in batch and fixed-bed column adsorption studies. The obtained adsorbent (ABH-1:3) has a higher BET surface area and a smaller average pore diameter. The maximum adsorption capacity of ABH-1:3 obtained from Langmuir model was as high as $1,426.0mg\;g^{-1}$. The kinetics strictly followed pseudo-second order rate equation and the adsorption reaction was effectively facilitated, approximately 50 minutes to achieve adsorption equilibrium, which was significantly shorter than that of ABH-1:0. The thermodynamic parameters revealed that the adsorption was spontaneous and exothermic. Thomas model fitted well with the breakthrough curves and could describe the dynamic behavior of the column. More significantly, the uptake capacity of ABH-1:3 was still higher than 75% of the maximum adsorption capacity even after ten cycles, indicating that this novel adsorbent can be a promising adsorptive material for removal of MB from aqueous solution under batch and continuous systems.