• 제목/요약/키워드: self-adhesion

검색결과 195건 처리시간 0.023초

지방유래 줄기세포의 생존능 향상을 위한 CEACAM 6의 생물학적 기능에 대한 연구 (Biological Function of Carcinoembryonic Antigen-Related Cell Adhesion Molecule 6 for the Enhancement of Adipose-Derived Stem Cell Survival against Oxidative Stress)

  • 고은영;유지은;정세화;김평환
    • 대한임상검사과학회지
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    • 제51권4호
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    • pp.475-483
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    • 2019
  • 세포기반 치료제에 사용되는 줄기세포는 재생능력과 다양한 세포로의 분화능력으로 인해 재생 의학 분야에서 광범위하게 관심을 끌었으며, 많은 불치병에 적용된다. 하지만, 이러한 줄기세포는 여전히 치료 전 세포증식 및 질병 투여부위에서의 낮은 생존률로 인해 충분한 치료효과가 나타나지 않는 단점이 있다. 이것을 해결하고자, 우리는 세포부착능과 항세포자살 기능을 가지고 있는 carcinoembryonic antigen (CEA) gene family의 하나인 CEACAM 6를 사용하였다. 이것을 줄기세포에 적용 전, 먼저 세포별로 이 단백질이 발현되는지를 확인하였고, 이 유전자가 발현되는 벡터를 줄기세포에 삽입시키기 위한 최적 조건을 선정하였다. 그 후, 도입된 CEACAM 6발현벡터로부터 줄기세포에서 이 유전자가 발현되는지를 확인하였다. 그리고 인체투여 시 발생되는 산화적 스트레스와 유사한 조건에서의 이 유전자의 기능을 평가하기 위해 과산화수소(H2O2)를 처리하였다. 산화적 스트레스 조건하에서 CEACAM 6가 발현되는 줄기세포는 그렇지 않은 세포에 비해 세포의 생존률이 현저히 증가하는 것을 확인하였다. 이를 통해, 이 CEACAM 6는 줄기세포의 치료효능과 세포증식을 강화시킬 수 있는 다른 선택지로서의 가능성이 있음을 확인하였다.

유-무기 하이브리드 화합물과 Particle-Binder 공정을 이용한 소수성 코팅막 제조 (Preparation of Hydrophobic Coating Layers Using Organic-Inorganic Hybrid Compounds Through Particle-to-Binder Process)

  • 황승희;김효원;김주영
    • 접착 및 계면
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    • 제21권4호
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    • pp.143-155
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    • 2020
  • Sol-Gel 공정을 통해서 제조되는 유-무기 하이브리드 화합물들은 방청 코팅, 방빙 코팅(Anticing), 자가 세정 코팅, 반사 방지 코팅 등과 같은 기능성 코팅 재료로 널리 사용되어져 왔다. 특히 소수성 코팅 표면을 제조하기 위해서는 코팅표면의 표면에너지가 낮고 코팅 표면의 조도를 제어가 요구된다. 표면에너지와 표면 조도를 조절하는 전형적인 공정은 in-situ fabrication 공정, 'Pre-fluorinating/Post-roughening', 'Pre-roughening/ Post-fluorinating이다. 본 연구에서는 in-situ fabrication 공정인 Particle-Binder 공정을 이용해서 소수성 코팅표면을 제조하였다. 3관능기 유기실란화합물과 불소 함유 유기실란 화합물과의 가수분해 및 축합반응을 통해 제조된 불소함유 유-무기 하이브리드를 바인더로 사용하여서 무기물 나노입자와 혼합하여 소수성 코팅액을 제조하고 유리 기재 위에 스핀코팅 후 열건조하여서 코팅막을 제조하였다. 바인더인 유-무기 하이브리드 화합물의 불소 함유 실란화합물의 첨가량, 첨가순서, 무기물 나노입자 첨가량에 따른 코팅막의 물성 변화를 조사하였다. 분석결과 불소 함량이 10 wt%인 유-무기 하이브리드 화합물(GPTi-HF10)을 바인더로 사용하여서 제조된 코팅막이 가장 소수성이 우수하였으며 수접촉각은 (107.52 ± 1.6°), 이 바인더와 무기물 나노입자의 무게비가 1:3인 경우(GPTi-HF10-MS 3.0)에 가장 높은 수접촉각(130.84±1.99°)을 나타내었다.

부가적인 산부식이 자가산부식 접착제의 법랑질에 대한 전단결합강도에 미치는 영향 (Influence of additional etching on shear bond strength of self-etching adhesive system to enamel)

  • 유선진;김영경;박정원;진명욱;김성교
    • Restorative Dentistry and Endodontics
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    • 제31권4호
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    • pp.263-268
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    • 2006
  • 최근 많이 소개되고 있는 자가산부식 접착제는 상아질에 대한 접착은 우수한 것으로 알려져 있지만 법랑질에 대한 접착은 인산에 비해 낮은 산도로 인해 충분한 부식이 일어나는지에 대한 논란이 되고 있다. 본 연구에서는 서로 다른 산도를 가진 1 단계 혹은 2 단계의 자가산부식 접착제에서 부가적인 산부식이 법랑질과 복합 레진 사이의 전단결합강도에 미치는 영향을 평가하고자 하였다. 90 개의 발거된 우치의 순면을 물기가 있는 상태에서 #600 사포로 표면을 연마하여 평활한 법랑질을 노출시킨 후, 임의로 6군으로 분류했다. 사용재료는 Clearfil SE $Bond^{\circledR},\;Adper^{TM}$ Prompt L-Pop, 그리고 Tyrian $SPE^{TM}$를 사용하였으며, 각 재료에 추가적인 산부식을 시행한 군과 그렇지 않은 군으로 나누어 표면 처리한 후, 제조사의 지시대로 접착과정을 시행하였다 . 각 시편에 복합레진을 2 mm 두께로 충전하고, 40 초간 광중합을 하였다. 그 후 시편을 $37^{\circ}C$, 100% 상대습도에서 24시간 보관 후 전단응력 접착강도를 측정하였다. 결과치는 independent t - test를 이용하여 통계분석 하였으며 그 결과는 다음과 같이 나타났다. Clearfil SE $Bond^{\circledR}$에서 부가적인 산부식을 시행한 군이 그렇지 않은 군보다 유의하게 높은 접착강도를 나타내었다 (p < 0.01). $Adper^{TM}$ Prompt L-Pop과 Tyrian $SPE^{TM}$에서는 부가적인 산부식이 결합강도에 통계적인 유의차를 나타내지 않았다 (p > 0.01). 본 연구의 결과로 보아, 강산을 함유하고 있는 접착제를 사용할 경우에는 부가적인 부식 처치가 접착력을 증가시키지 않으나, 약산을 함유하고 있는 접착제의 경우에는 부가적인 산부식이 접착력을 증진시키는 것으로 사료된다.

산부식 전처리에 따른 2단계 자가부식 접착제의 연마 법랑질에 대한 미세인장결합강도 (The micro-tensile bond strength of two-step self-etch adhesive to ground enamel with and without prior acid-etching)

  • 김유리;김지환;심준성;김광만;이근우
    • 대한치과보철학회지
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    • 제46권2호
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    • pp.148-156
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    • 2008
  • 자가부식 접착제는 사용하기 쉽고, 술식 민감성이 적은 장점이 있으나 특히 산도가 약한 자가부식 접착제의 법랑질에 대한 결합력은 논란이 되고 있다. 본 연구에서는 2단계 자가부식 접착제인 Clearfil SE Bond (Kuraray, Okayama, Japan)의 연마 법랑질에 대한 미세인장 결합강도를 측정하여 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose (3M ESPE, St. Paul, MN, USA) 및 1단계 자가부식 접착제인 iBond (Heraeus Kulzer Gmbh, Hanau, Germany)의 결합강도와 비교하고자 하였고, 2단계 자가부식 접착제에 산부식 전처리를 시행하는 것이 법랑질에 대한 결합강도를 높일 수 있는지 알아 보고자 하였다. 실험군은 2단계 자가부식 접착제인 Clearfil SE Bond만 사용한 비산부식 군과 35% 인산 (Scotchbond Etchant, 3M ESPE)으로 산부식 후 Clearfil SE Bond를 사용한 산부식 군, 그리고 1단계 자가부식 접착제인 iBond를 사용한 군으로 나누었다. 대조군은 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose를 사용한 군으로 정하였다. Bovine 전치의 순면을 십자가형으로 4등분하여 각 군으로 무작위로 배분하였다. 각 치아의 순면을 800-grit 실리콘 카바이드 지로 연마한 후 삭제된 법랑질면에 제조사의 설명서에 따라 각 군의 접착제를 적용하고 Light-Core (Bisco)로 적층 충전하였다. 시편은 $37i{\acute{E}}$, 증류수에 일주일 동안 보관한 후 low speed precicion diamond saw (TOPMENT Metsaw-LS, R&B, Daejeon, Korea)를 이용하여 약 $0.8{\times}0.8mm$ 단면이 되도록 시편을 절단하여 미세시편을 제작하였다. 일주일마다 증류수를 교환하면서 한 달, 세 달 동안 $37i{\acute{E}}$, 증류수에 미세시 편을 보관한 후 각각의 미세인장결합강도를 측정하였다. 미세인장결합강도 (MPa)는 파절 시에 가해진 힘 (N)을 접착면적 ($mm^2$)으로 나누어 계산하였다. 접착계면에서의 파절 양상은 실물현미경 (Microscope-B nocular, Nikon)을 이용하여 분류하였다. 미세인장결합강도에 대한 통계분석은 one-way ANOVA를 이용하여 유의수준 5%에서 검정하였고, 사후감정은 Least Significant Difference 방법을 이용하였다. 중합 후 1개월 뒤 측정된 각각의 접착제의 평균 미세인장결합강도는 유의수준 5%에서 모든 접착제 간에 유의한 차이가 없었다. 3개월 뒤 측정된 각각의 접착제의 평균 미세인장결합강도는 유의수준 5%에서 iBond 와 Clearfil SE Bond 비산부식 군과 Scotchbond Multi- Purpose 간에는 각각 유의한 차이가 없었다. 본 연구에서는 2단계 자가부식 접착제인 Clearfil SE Bond의 연마 법랑질에 대한 미세인장결합강도가 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose 와 비교하여 유의한 차이가 없었으며 (P>0.05), 3개월 후의 결과에서 Clearfil SE Bond 비산부식 군의 미세인장결합강도가 Clearfil SE Bond 산부식 군보다 유의하게 낮았다 (P<0.05). 즉 35% 인산으로 산부식 전처리를 시행한결과 Clearfil SE Bond 의 법랑질에 대한 결합강도가 증가하였다.

Replacements for Chromate Pigments in Anticorrosion Primers for Aluminum Alloys

  • Yin, Zhangzhang;Ooij, Wim van;Puomi, Paula
    • Corrosion Science and Technology
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    • 제6권4호
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    • pp.206-210
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    • 2007
  • Aerospace aluminum alloys such as Al alloy 2024-T3 and 7075-T6 are subject to localized corrosion due the existence of intermetallics containing Cu, Mg or Zn. Chromate is currently widely used in the aerospace industry as the corrosion inhibitor for these alloys. However, chromate needs to be replaced due to its strong carcinogenicity. In this study, an extensive pigment screening has been performed to find replacements for chromates. Different categories of inhibitors were evaluated by immersion tests, DC polarization tests and other methods. Phosphates, zinc salts, cerium salts, vanadates and benzotriazole were found to be effective inhibitors for AA7075. Among those inhibitors, zinc phosphate was found to be the most effective in our novel, silane-based, one-step aqueous primer system. The performance of this primer is comparable to that of currently used chromate primers in accelerated corrosion tests, while it is completely chromate-free and its VOC is about 80% less than that of current primers. Studies by SEM/EDS showed that the unique structure of the superprimer accounts for the strong anti-corrosion performance of the zinc phosphate pigment. The self-assembled stratified double-layer structure of the superprimer is characterized by a less-penetrable hydrophobic layer at the top and a hydrophilic layer accommodating the inhibitors underneath. The top layer functions as the physical barrier against water ingress, while the lower layer functions as a reservoirfor the inhibitor, which is leached out only if the coating is damaged by a scratch or scribe. The presence of a silane in the primer further improves the adhesion and anti-corrosion performance of the primer.

Tooth surface treatment strategies for adhesive cementation

  • Rohr, Nadja;Fischer, Jens
    • The Journal of Advanced Prosthodontics
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    • 제9권2호
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    • pp.85-92
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    • 2017
  • PURPOSE. The aim of this study was to evaluate the effect of tooth surface pre-treatment steps on shear bond strength, which is essential for understanding the adhesive cementation process. MATERIALS AND METHODS. Shear bond strengths of different cements with various tooth surface treatments (none, etching, priming, or etching and priming) on enamel and dentin of human teeth were measured using the Swiss shear test design. Three adhesives (Permaflo DC, Panavia F 2.0, and Panavia V5) and one self-adhesive cement (Panavia SA plus) were included in this study. The interface of the cement and the tooth surface with the different pre-treatments was analyzed using SEM. pH values of the cements and primers were measured. RESULTS. The highest bond strength values for all cements were achieved with etching and primer on enamel ($25.6{\pm}5.3-32.3{\pm}10.4MPa$). On dentin, etching and priming produced the highest bond strength values for all cements ($8.6{\pm}2.9-11.7{\pm}3.5MPa$) except for Panavia V5, which achieved significantly higher bond strengths when pre-treated with primer only ($15.3{\pm}4.1MPa$). Shear bond strength values were correlated with the micro-retentive surface topography of enamel and the tag length on dentin except for Panavia V5, which revealed the highest bond strength with primer application only without etching, resulting in short but sturdy tags. CONCLUSION. The highest bond strength can be achieved for Panavia F 2.0, Permaflo DC, and Panavia SA plus when the tooth substrate is previously etched and the respective primer is applied. The new cement Panavia V5 displayed low technique-sensitivity and attained significantly higher adhesion of all tested cements to dentin when only primer was applied.

Effects of different primers on indirect orthodontic bonding: Shear bond strength, color change, and enamel roughness

  • Tavares, Mirella Lemos Queiroz;Elias, Carlos Nelson;Nojima, Lincoln Issamu
    • 대한치과교정학회지
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    • 제48권4호
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    • pp.245-252
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    • 2018
  • Objective: We aimed to perform in-vitro evaluation to compare 1) shear bond strength (SBS), adhesive remnant index (ARI), and color change between self-etched and acid-etched primers; 2) the SBS, ARI and color change between direct and indirect bonding; and 3) the enamel roughness (ER) between 12-blade bur and aluminum oxide polisher debonding methods. Methods: Seventy bovine incisors were distributed in seven groups: control (no bonding), direct (DTBX), and 5 indirect bonding (ITBX, IZ350, ISONDHI, ISEP, and ITBXp). Transbond XT Primer was used in the DTBX, ITBX, and ITBXp groups, flow resin Z350 in the IZ350 group, Sondhi in the ISONDHI group, and SEP primer in the ISEP group. SBS, ARI, and ER were evaluated. The adhesive remnant was removed using a low-speed tungsten bur in all groups except the ITBXp, in which an aluminum oxide polisher was used. After coffee staining, color evaluations were performed using a spectrophotometer immediately after staining and prior to bonding. Results: ISONDHI and ISEP showed significantly lower SBS (p < 0.01). DTBX had a greater number of teeth with all the adhesive on the enamel (70%), compared with the indirect bonding groups (0-30%). The ER in the ITBX and ITBXp groups was found to be greater because of both clean-up techniques used. Conclusions: Direct and indirect bonding have similar results and all the primers used show satisfactory adhesion strength. Use of burs and polishers increases the ER, but polishers ensure greater integrity of the initial roughness. Resin tags do not change the color of the teeth.

Nano-scale Friction Properties of SAMs with Different Chain Length and End Groups

  • ;윤의성;한흥구;공호성
    • KSTLE International Journal
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    • 제6권1호
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    • pp.13-16
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    • 2005
  • Friction characteristics at nano-scale of self-assembled monolayers (SAMs) having different chain lengths and end groups were experimentally studied.51 order to understand the effect of the chain length and end group on the nano-scalefriction: (1) two different SAMs of shorter chain lengths with different end groups such as methyl and phenyl groups, and (2)four different kinds of SAMs having long chain lengths (C10) with end groups of fluorine and hydrogen were coated on siliconwafer (100) by dipping method and Chemical Vapour Deposition (CVD) technique. Their nano-scale friction was measuredusing an Atomic Force Microscopy (AFM) in the range of 0-40 nN normal loads. Measurements were conducted at the scanning speed of 2 $mu$m/s for the scan size of 1$mu$m x 1 $mu$m using a contact mode type $Si_3N_4$ tip (NPS 20) that had a nominal spring constant0.58 N/m. All experiments were conducted at anlbient temperature (24 $pm$1$circ$C) and relative humidity (45 $pm$ 5%). Results showedthat the friction force increased with applied normal load for all samples, and that the silicon wafer exhibited highest frictionwhen compared to SAMs. While friction was affected by the inherent adhesion in silicon wafer, it was influenced by the chainlength and end group in the SAMs. It was observed that the nano-friction decreased with the chain length in SAMs. In the caseof monolayers with shorter length, the one with the phenyl group exhibited higher friction owing to the presence of benBenerings that are stiffer in nature. In the case of SAMs with longer chain length, those with fluorine showed friction values relativelyhigher than those of hydrogen. The increase in friction due to the presence of fluorine group has been discussed with respect tothe siBe of the fluorine atom.

Biological Functions and Identification of Novel Biomarker Expressed on the Surface of Breast Cancer-Derived Cancer Stem Cells via Proteomic Analysis

  • Koh, Eun-Young;You, Ji-Eun;Jung, Se-Hwa;Kim, Pyung-Hwan
    • Molecules and Cells
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    • 제43권4호
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    • pp.384-396
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    • 2020
  • Breast cancer is one of the most common life-threatening malignancies and the top cause of cancer deaths in women. Although many conventional therapies exist for its treatment, breast cancer still has many handicaps to overcome. Cancer stem cells (CSCs) are a well-known cause of tumor recurrences due to the ability of CSCs for self-renewal and differentiation into cell subpopulations, similar to stem cells. To fully treat breast cancer, a strategy for the treatment of both cancer cells and CSCs is required. However, current strategies for the eradication of CSCs are non-specific and have low efficacy. Therefore, surface biomarkers to selectively treat CSCs need to be developed. Here, 34 out of 641 surface biomarkers on CSCs were identified by proteomic analysis between the human breast adenocarcinoma cell line MCF-7 and MCF-7-derived CSCs. Among them, carcinoembryonic antigen-related cell adhesion molecules 6 (CEACAM6 or CD66c), a member of the CEA family, was selected as a novel biomarker on the CSC surface. This biomarker was then experimentally validated and evaluated for use as a CSC-specific marker. Its biological effects were assessed by treating breast cancer stem cells (BCSCs) with short hairpin (sh)-RNA under oxidative cellular conditions. This study is the first to evaluate the biological function of CD66c as a novel biomarker on the surface of CSCs. This marker is available as a moiety for use in the development of targeted therapeutic agents against CSCs.

Improved Corrosion and Abrasion Resistance of Organic-Inorganic Composite Coated Electro-galvanized Steels for Digital TV Panels

  • Jo, Du-Hwan;Noh, Sang-Geol;Park, Jong-Tae;Kang, Choon-Ho
    • Corrosion Science and Technology
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    • 제14권5호
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    • pp.213-217
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    • 2015
  • Recently, household electronic industries require environmentally-friendly and highly functional steels in order to enhance the quality of human life. Customers especially require both excellent corrosion and abrasion resistant anti-fingerprint steels for digital TV panels. Thus POSCO has developed new functional electro-galvanized steels, which have double coated layers with organic-inorganic composites on the zinc surface of the steel for usage as the bottom chassis panel of TVs. The inorganic solution for the bottom layer consists of inorganic phosphate, magnesium, and zirconium compounds with a small amount of epoxy binder, and affords both improved adhesion properties by chemical conversion reactions and corrosion resistance due to a self-healing effect. The composite solution for the top layer was prepared by fine dispersion of organic-inorganic ingredients that consist of a urethane modified polyacrylate polymer, hardener, silica sol and a titanium complex inhibitor in aqueous media. Both composite solutions were coated on the steel surface by using a roll coater and then cured through an induction furnace in the electro-galvanizing line. New anti-fingerprint steel was evaluated for quality performance through such procedures as the salt spray test for corrosion resistance, tribological test for abrasion resistance, and conductivity test for surface electric conductance regarding to both types of polymer resin and coating weight of composite solution. New composite coated anti-fingerprint steels afford both better corrosion resistance and abrasion properties compared to conventional anti-fingerprint steel that mainly consists of acrylate polymers. Detailed discussions of both composite solutions and experimental results suggest that urethane modifications of acrylate polymers of composite solutions play a key role in enhanced quality performances.