• 제목/요약/키워드: Bacterial Adhesion

검색결과 134건 처리시간 0.02초

In Vitro: Antimicrobial Effect of Lactobacillus salivarius on Staphylococcus pseudintermedius

  • Seo, Haeyoung;Bae, Seulgi;Oh, Taeho
    • 한국임상수의학회지
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    • 제36권2호
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    • pp.98-101
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    • 2019
  • Lactobacillus spp. are the bacteria most commonly used as probiotics and it has been proven that they inhibit pathogenic bacterial growth and improve skin repair in humans. This study was conducted to investigate the growth inhibitory effect of Lactobacillus on Staphylococcus pseudintermedius, the most commonly isolated pathogen in canine pyoderma, and whether Lactobacillus could inhibit the adhesion capability of S. pseudintermedius to canine corneocytes. For this study, L. salivarius and S. pseudintermedius were isolated from healthy beagle fecal samples and the skin surface of dogs with skin infection, respectively. S. pseudintermedius was co-cultured with L. salivarius to assess the inhibitory effect. For the adhesion assay, corneocytes were collected from healthy beagle ventral abdominal skin. Both bacterial species attached to corneocytes and were assessed in number. As a result, L. salivarius significantly inhibited the growth of S. pseudintermedius in the culture medium. Moreover, L. salivarius reduced attachment of S. pseudintermedius in the adhesion assay. These results suggest that L. salivarius has an inhibitory effect on S. pseudintermedius and may be effectively used in the topical therapy of canine skin infections.

Biological Affinity and Biodegradability of Poly(propylene carbonate) Prepared from Copolymerization of Carbon Dioxide with Propylene Oxide

  • Kim, Ga-Hee;Ree, Moon-Hor;Kim, Hee-Soo;Kim, Ik-Jung;Kim, Jung-Ran;Lee, Jong-Im
    • Macromolecular Research
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    • 제16권5호
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    • pp.473-480
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    • 2008
  • In this study we investigated bacterial and cell adhesion to poly(propylene carbonate) (PPC) films, that had been synthesized by the copolymerization of carbon dioxide (a global warming chemical) with propylene oxide. We also assessed the biocompatibility and biodegradability of the films in vivo, and their oxidative degradation in vitro. The bacteria adhered to the smooth, hydrophobic PPC surface after 4 h incubation. Pseudomonas aeruginosa and Enterococcus faecalis had the highest levels of adhesion, Escherichia coli and Staphylococcus aureus had the lowest levels, and Staphylococcus epidermidis was intermediate. In contrast, there was no adhesion of human cells (cell line HEp-2) to the PPC films, due to the hydrophobicity and dimensional instability of the surface. On the other hand, the PPC films exhibited good biocompatibility in the mouse subcutaneous environment. Moreover, contrary to expectation the PPC films degraded in the mouse subcutaneous environment. This is the first experimental confirmation that PPC can undergo surface erosion biodegradation in vivo. The observed biodegradability of PPC may have resulted from enzymatic hydrolysis and oxidative degradation processes. In contrast, the PPC films showed resistance to oxidative degradation in vitro. Overall, PPC revealed high affinity to bioorganisms and also good bio-degradability.

Effect of Silk Fibroin Biomaterial Coating on Cell Viability and Intestinal Adhesion of Probiotic Bacteria

  • Kwon, Gicheol;Heo, Bohye;Kwon, Mi Jin;Kim, Insu;Chu, Jaeryang;Kim, Byung-Yong;Kim, Byoung-Kook;Park, Sung Sun
    • Journal of Microbiology and Biotechnology
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    • 제31권4호
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    • pp.592-600
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    • 2021
  • Probiotics can be processed into a powder, tablet, or capsule form for easy intake. They are exposed to frequent stresses not only during complex processing steps, but also in the human body after intake. For this reason, various coating agents that promote probiotic bacterial stability in the intestinal environment have been developed. Silk fibroin (SF) is a material used in a variety of fields from drug delivery systems to enzyme immobilization and has potential as a coating agent for probiotics. In this study, we investigated this potential by coating probiotic strains with 0.1% or 1% water-soluble calcium (WSC), 1% SF, and 10% trehalose. Under simulated gastrointestinal conditions, cell viability, cell surface hydrophobicity, and cell adhesion to intestinal epithelial cells were then measured. The survival ratio after freeze-drying was highest upon addition of 0.1% WSC. The probiotic bacteria coated with SF showed improved survival by more than 10.0% under simulated gastric conditions and 4.8% under simulated intestinal conditions. Moreover, the cell adhesion to intestinal epithelial cells was elevated by 1.0-36.0%. Our results indicate that SF has positive effects on enhancing the survival and adhesion capacity of bacterial strains under environmental stresses, thus demonstrating its potential as a suitable coating agent to stabilize probiotics throughout processing, packaging, storage and consumption.

DnaJ of Streptococcus suis Type 2 Contributes to Cell Adhesion and Thermotolerance

  • Zhang, Xiaoyan;Jiang, Xiaowu;Yang, Ling;Fang, Lihua;Shen, Hongxia;Lu, Xingmeng;Fang, Weihuan
    • Journal of Microbiology and Biotechnology
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    • 제25권6호
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    • pp.771-781
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    • 2015
  • To examine if the molecular chaperone DnaK operon proteins of Streptococcus suis type 2 (SS2) are involved in adhesion to host cells, the abundance values of these proteins from the surface of two SS2 strains of different adhesion capability were compared. Their roles in growth and adhesion to human laryngeal epithelial cell line HEp-2 cells were investigated on SS2 strain HA9801 and its mutants with DnaK operon genes partially knocked-out (PKO mutant) under heat stress. The major difference was that DnaJ was more abundant in strain HA9801 than in strain JX0811. Pretreatment of the bacteria with hyperimmune sera to DnaJ, but not with those to other proteins, could significantly reduce SS2 adhesion to HEp-2 cells. PKO of dnaJ g ene resulted in decreased SS2 growth at 37℃ and 42℃, and reduced its adhesion to HEp-2 cells. The wild-type strain stressed at 42℃ had increased expression of DnaJ on its surface and elevated adhesion to HEp-2 cells, which was also inhibitable by DnaJ specific antiserum. These results indicate that the DnaJ of S. suis type 2 is important not only for thermotolerance but also for adhesion to host cells. Because DnaJ expression is increased upon temperature upshift with increased exposure on the bacterial surface, the febrile conditions of the cases with systemic infections might help facilitate bacterial adhesion to host cells. DnaJ could be one of the potential candidates as a subunit vaccine because of its good immunogenicity.

Virulence genes of Streptococcus mutans and dental caries

  • You, Yong-Ouk
    • International Journal of Oral Biology
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    • 제44권2호
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    • pp.31-36
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    • 2019
  • Streptococcus mutans is one of the important bacteria that forms dental biofilm and cause dental caries. Virulence genes in S. mutans can be classified into the genes involved in bacterial adhesion, extracellular polysaccharide formation, biofilm formation, sugar uptake and metabolism, acid tolerance, and regulation. The genes involved in bacterial adhesion are gbps (gbpA, gbpB, and gbpC) and spaP. The gbp genes encode glucan-binding protein (GBP) A, GBP B, and GBP C. The spaP gene encodes cell surface antigen, SpaP. The genes involved in extracellular polysaccharide formation are gtfs (gtfB, gtfC, and gtfD) and ftf, which encode glycosyltransferase (GTF) B, GTF C, and GTF D and fructosyltransferase, respectively. The genes involved in biofilm formation are smu630, relA, and comDE. The smu630 gene is important for biofilm formation. The relA and comDE genes contribute to quorumsensing and biofilm formation. The genes involved in sugar uptake and metabolism are eno, ldh, and relA. The eno gene encodes bacterial enolase, which catalyzes the formation of phosphoenolpyruvate. The ldh gene encodes lactic acid dehydrogenase. The relA gene contributes to the regulation of the glucose phosphotransferase system. The genes related to acid tolerance are atpD, aguD, brpA, and relA. The atpD gene encodes $F_1F_0$-ATPase, a proton pump that discharges $H^+$ from within the bacterium to the outside. The aguD gene encodes agmatine deiminase system and produces alkali to overcome acid stress. The genes involved in regulation are vicR, brpA, and relA.

Effects of different surface finishing protocols for zirconia on surface roughness and bacterial biofilm formation

  • Lee, Du-Hyeong;Mai, Hang-Nga;Thant, Phyu Pwint;Hong, Su-Hyung;Kim, Jaewon;Jeong, Seung-Mi;Lee, Keun-Woo
    • The Journal of Advanced Prosthodontics
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    • 제11권1호
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    • pp.41-47
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    • 2019
  • PURPOSE. Surface finishing of a zirconia restoration is essential after clinical adjustment. Herein, we investigated the effects of a surface finishing protocol for monolithic zirconia on final roughness and bacterial adherence. MATERIALS AND METHODS. Forty-eight disk-shaped monolithic zirconia specimens were fabricated and divided into four groups (n = 12) based on initial surface treatment, finishing, and polishing protocols: diamond bur+polishing bur (DP group), diamond bur+stone grinding bur+polishing bur (DSP group), no diamond bur+polishing bur (NP group), and no diamond bur+stone grinding bur+polishing bur (NSP group). Initial and final surface roughness was measured with a profilometer, and shown using scanning electron microscope. Bacterial adhesion was evaluated by quantifying Streptococcus mutans in the biofilm. Kruskal-Wallis and Mann-Whitney U tests were used to compare results among groups, and two-way analysis of variance was used to evaluate the effects of grinding burs on final roughness (${\alpha}=.05$). RESULTS. The DP group had the highest final Ra value, followed by the DSP, NP, and NSP groups. Use of the stone grinding bur as a coarse-finishing step significantly decreased final Ra values when a diamond bur was used (P<.001). Omission of the stone grinding bur increased biofilm formation on specimen surfaces. Combining a stone grinding bur with silicone polishing burs produced the smallest final biofilm values, regardless of the use of a diamond bur in initial surface treatment. CONCLUSION. Coarse finishing of monolithic zirconia with a stone grinding bur significantly decreased final Ra values and bacterial biofilm formation when surfaces had been roughened by a diamond bur.

요도용 카테타 도포용 양친성 폴리우레탄의 합성 및 분석 (Synthesis and Characterization of Amphiphilic Polyurethanes as Coating Materials for Urinary Catheters)

  • 박재형;김광명;정혜선;권익찬;배유한;정서영
    • 폴리머
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    • 제30권3호
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    • pp.247-252
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    • 2006
  • 환자가 요도용 카테타를 장기간 착용할 경우 세균흡착에 의한 감염이 유발되어 심각한 부작용을 경험하게 된다. 본 연구에서는 다양한 양친성 폴리우레탄을 합성하여 요도용 카테타 도포용 소재로서의 응용가능성을 확인하고자 하였다. 양친성 폴리우레탄은 친수성 고분자인 poly(ethylene oxide)(PEO)와 소수성 고분자인 poly (tetramethylene oxide) (PTMO) 또는 poly (dimethyl siloxane) (PDMS)을 연질부로 도입하여 합성하였다. 상용 실리콘 카테타에 양친성 고분자를 도포한 결과 표면의 친수성이 현저히 개선되었다. 특히, PEO의 함량이 많은 폴리우레탄일수록 친수성이 높게 나타났으며, 세균 흡착량이 감소함을 확인할 수 있었다. 결론적으로, 본 연구에서 합성한 양친성 고분자는 요도용 카테타의 도포용 소재로 적합한 것을 알 수 있었다.

난황항체 및 첨가제를 이용한 헬리코박터 파이로리의 부착 억제 (Studies on Adherance Inhibition and Detachment of Helicobacter pylori Using Egg Yolk IgY and Additives)

  • 구재경;최태부
    • KSBB Journal
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    • 제16권1호
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    • pp.41-47
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    • 2001
  • H. pylori 유래의 위장 질환에 대한 예방 및 치료에 대체할 수 있는 방법으로 감염 원인균의 부착 억제와 탈착이 가능한 물질의 사용이 타당성 조사 및 그 기초연구를 목적으로 조사하였다. 우선, 닭에 면역접종을 하여 면역접종 횟수에 따른 IgG 항체의 증가를 확인하여 면역접종을 하지 않은 군에 비해 10배 이상 H. pylori에 대한 항체가 생산되는 것을 확인하였다. H. pylori가 위 상피세포에 결합하는 현상이 H. pylori의 감염에 중요한 첫 단계라는 점에 착안하여 H. pylori의 위벽세포에 대한 결합의 특성을 조사하는 한편, 여러가지 부착 억제 후보물질을 이용하여 단독 또는 H. pylori에 대한 난황 항체와 함께 H. pylori의 부착 억제 정도를 실험하였다. 부착 억제 실험의 결과, 난황 항체를 이용하여 H. pylori(NCTC11637, ATCC43526)가 AGS에 부착하는 것을 저해가 가능하였으며 NCTC11637와 ATCC43526 모두 균체 및 외막단백으로 면역접종하여 생산된 항체의 경우 0.5 mg/mL의 농도로 NCTC11637은 80%, ATCC43526은 60% 정도의 부착 억제를 하는 것으로 나타났다. 탈착 실험의 결과도 면역접종을 실시한 난황 항체가 40-60% 정도의 탈착 효과를 보였으며 균체 자체와 외막 단백을 항원으로 사용한 군 사이의 탈착력 차이는 크지 않았다. 그러나 이러한 결과들이 사용 균주에 따라, 특히 분리 균주를 이용한 경우에는 상이한 결과들이 나타나므로 항체를 이용한 경우에는 더 많은 연구가 필요할 것으로 사료된다. 그러나 난황 항체는 식품성분의 하나로서 안정성의 면에서 매우 유리하고 대량 생산이 가능하므로 특이적 항체를 많이 생산할 수 있는 항원의 개발과 함께 정제도를 높인다면 더욱 좋은 효과를 기대할 수 있을 것이다. 그러나 외국의 다른 연구에서 보고된 경우와 같이 in vitro에서 유효한 물질이 in vivo에서 효과가 없는 경우도 종종 보고되고 있어 지금까지 탐색한 물질의 in vivo에서의 부착 억제 효과에 대한 진단도 함께 이루어져야 할 것으로 사료되며 또한 앞서 기술한 바와 같이 H. pylori의 결합에 관계하는 receptors 및 ligands가 어떤 특정한 한가지가 아니라 여러 가지의 복합적인 물질이 관여하는 것이기 때문에 여기에 대해서는 더 많은 연구가 뒷받침되어야 할 것이다.

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Initial bacterial adhesion on resin, titanium and zirconia in vitro

  • Lee, Byung-Chul;Jung, Gil-Yong;Kim, Dae-Joon;Han, Jung-Suk
    • The Journal of Advanced Prosthodontics
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    • 제3권2호
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    • pp.81-84
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    • 2011
  • PURPOSE. The aim of this in vitro study was to investigate the adhesion of initial colonizer, Streptococcus sanguis, on resin, titanium and zirconia under the same surface polishing condition. MATERIALS AND METHODS. Specimens were prepared from Z-250, cp-Ti and 3Y-TZP and polished with $1 {\mu}m$ diamond paste. After coating with saliva, each specimen was incubated with Streptococcus sanguis. Scanning electron microscope, crystal violet staining and measurement of fluorescence intensity resulting from resazurin reduction were performed for quantifying the bacterial adhesion. RESULTS. Surface of resin composite was significantly rougher than that of titanium and zirconia, although all tested specimens are classified as smooth. The resin specimens showed lower value of contact angle compared with titanium and zirconia specimens, and had hydrophilic surfaces. The result of scanning electron microscopy demonstrated that bound bacteria were more abundant on resin in comparison with titanium and zirconia. When total biofilm mass determined by crystal violet, absorbance value of resin was significantly higher than that of titanium or zirconia. The result of relative fluorescence intensities also demonstrated that the highest fluorescence intensity was found on the surface of resin. Absorbance value and fluorescence intensity on titanium was not significantly different from those on zirconia. CONCLUSION. Resin specimens showed the roughest surface and have a significantly higher susceptibility to adhere Streptococcus sanguis than titanium and zirconia when surfaces of each specimen were polished under same condition. There was no significant difference in bacteria adhesion between titanium and zirconia in vitro.

Screening of Anti-Adhesion Agents for Pathogenic Escherichia coli O157:H7 by Targeting the GrlA Activator

  • Sin Young Hong;Byoung Sik Kim
    • Journal of Microbiology and Biotechnology
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    • 제33권3호
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    • pp.329-338
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    • 2023
  • Enterohemorrhagic Escherichia coli (EHEC) is a foodborne pathogen that produces attaching and effacing lesions on the large intestine and causes hemorrhagic colitis. It is primarily transmitted through the consumption of contaminated meat or fresh produce. Similar to other bacterial pathogens, antibiotic resistance is of concern for EHEC. Furthermore, since the production of Shiga toxin by this pathogen is enhanced after antibiotic treatment, alternative agents that control EHEC are necessary. This study aimed to discover alternative treatments that target virulence factors and reduce EHEC toxicity. The locus of enterocyte effacement (LEE) is essential for EHEC attachment to host cells and virulence, and most of the LEE genes are positively regulated by the transcriptional regulator, Ler. GrlA protein, a transcriptional activator of ler, is thus a potential target for virulence inhibitors of EHEC. To identify the GrlA inhibitors, an in vivo high-throughput screening (HTS) system consisting of a GrlA-expressing plasmid and a reporter plasmid was constructed. Since the reporter luminescence gene was fused to the ler promoter, the bioluminescence would decrease if inhibitors affected the GrlA. By screening 8,201 compounds from the Korea Chemical Bank, we identified a novel GrlA inhibitor named Grlactin [3-[(2,4-dichlorophenoxy)methyl]-4-(3-methylbut-2-en-1-yl)-4,5-dihydro-1,2,4-oxadiazol-5-one], which suppresses the expression of LEE genes. Grlactin significantly diminished the adhesion of EHEC strain EDL933 to human epithelial cells without inhibiting bacterial growth. These findings suggest that the developed screening system was effective at identifying GrlA inhibitors, and Grlactin has potential for use as a novel anti-adhesion agent for EHEC while reducing the incidence of resistance.