• 제목/요약/키워드: peptide-conjugated nanoparticle

검색결과 4건 처리시간 0.017초

Rapid and Accurate Detection of Bacillus anthracis Spores Using Peptide-Quantum Dot Conjugates

  • Park, Tae-Jung;Park, Jong-Pil;Seo, Gwi-Moon;Chai, Young-Gyu;Lee, Sang-Yup
    • Journal of Microbiology and Biotechnology
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    • 제16권11호
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    • pp.1713-1719
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    • 2006
  • A method for the simple, rapid, specific, and accurate detection of Bacillus anthracis spores was developed by employing specific capture peptides conjugated with fluorescent quantum dots (QDs). It was possible to distinguish B. anthracis spores from the spores of B. thuringiensis and B. cereus using these peptide-QD conjugates by flow cytometric and confocal laser scanning microscopic analyses. For more convenient high-throughput detection of B. anthracis spores, spectrofluorometric analysis of spore-peptide-QD conjugates was performed. B. anthracis spores could be detected in less than 1 h using this method. In order to avoid any minor yet false-positive signal caused by the presence of B. thuringiensis spores, the B-Negative peptide, which can only bind to B. thuringiensis, conjugated with another type of QD that fluoresces at different wavelength was also developed. In the presence of mixed B. anthracis and B. thuringiensis spores, the BABA peptide conjugated with QD525 and the B-Negative peptide conjugated with QD585 were able to bind to the former and the latter, specifically and respectively, thus allowing the clear detection of B. anthracis spores against B. thuringiensis spores by using two QD-labeling systems. This capture peptide-conjugated QD system should be useful for the detection of B. anthracis spores.

Synthesis of 68Ga-labeled gold nanoparticles for tumor targeted positron emission tomography imaging

  • Jeon, Jongho;Choi, Mi Hee
    • 대한방사성의약품학회지
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    • 제1권1호
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    • pp.46-52
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    • 2015
  • Herein we present the synthesis of $^{68}Ga$-labeled gold nanoparticles for in vivo PET imaging. A novel chelator DTPA-Cys was easily prepared from diethylenetriaminepentaacetic dianhydride in high yield. The ${\alpha}_v{\beta}_3$ integrin receptor targeted gold nanoparticle probe was synthesized by using DTPA-Cys, polyethylene glycol and cRGD peptide. $^{68}Ga$ labeling of cRGD conjugated gold nanoparticle was carried out at $40^{\circ}C$ for 30 min. Observed radiochemical yield was more than 75% as determined by radio-TLC and the probe was purified by centrifugation. In vitro stability test showed that 90% of $^{68}Ga$-labeled gold nanoparticle probe was stable in FBS for 1 h. Those results demonstrated that $^{68}Ga$-labeled gold nanoparticle could be used as a potentially useful probe for specific tumor imaging.

Biochemical Application of IgG Fc-binding peptide: From Biochip to Targeted Nano Carrier

  • Chung, Sang Jeon
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.84-84
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    • 2013
  • FcBP consisting of 13 amino acids specifically binds to Immunoglobulin G Fc domain. Initially, we utilized this peptide for preparation of antibody chip as a PEG composite for enhanced solubility. After then, the peptide conjugate was immobilized on agarose resin, resulting in highly efficient affinity column for antibody purification. The efficiency was comparable to commercial Protein A column. Recently, this peptide was conjugated with cell penetratingpeptide (CPP) on a backbone of GFP, affording antibody transducer, which carries antibody into live cells by simple mixing of antibody and the transducer in cell culture media. Antibody transduction into cells was monitored by live cell imaging. More recently, the FcBP was fused to ferritin cage, which consists of 24 ferritin protein molecules. The FcBP-ferritin cage showed greatly increased binding affinity to human IgG. Its binding was analyzed by QCM and SPR analysis. Finally, it was selectively delivered by Herceptin to SKBR3, a breast cancer cell, over MCF10A, non-tumorigenic cells.

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수지상세포 활성화를 위한 세포투과 펩타이드가 결합된 재조합 전립성 산성 인산분해효소의 정제 (Purification of Recombinant CTP-Conjugated Human prostatic acid phosphatase for activation of Dendritic Cell)

  • 이기완;류강
    • KSBB Journal
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    • 제24권1호
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    • pp.80-88
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    • 2009
  • glandular kallikrein에 광범위한 상동성을 가지는 인간 전립성 산성 인산 가수분해 효소는, 전립선암의 대표적인 혈청 biomarkers이다. 수지상세포는 유력한 항원 제시 세포이며, 바이러스, 미생물 병원체 및 종양에 대하여 면역 계통에서 강력한 T 세포 응답을 유도할 수 있다. 따라서, 종양 특이적인 항원으로 감작된 수지상세포를 이용한 면역요법은 anti-tumor 면역 유도를 위한 강력한 방법중의 하나이다. 크레아젠(주)에서 개발된 CTP (세포막 투과성 펩티드) 기술은 세포 내로의 높은 침투 효율성을 가지며 핵산이나 단백질과 같은 생체 고분자 물질을 접합하여 세포내로 수송할 수 있는 기술이다(36). 하지만 활성형의 인간 전립성 산성 인산 가수분해 효소는 세포사멸을 매개할 수 있기 때문에, 본 연구진은 항암 치료용 백신으로의 수지상세포 감작을 위해 비활성형 형태의 다중체 (multimer) 항원을 개발하였다. 본 연구에서, 수지상 세포의 감작과 활성화에 안전하고 효율적인 다중체 형태 (multimeric form)의 세포막 투과성 펩티드가 융합된 인간 전립성 산성 인산 가수분해 효소를 얻기 위한 정제공정을 기법을 개발하였고 젤 여과 크로마토그래피, western blot과 Dynamic Light Scattering을 이용하여 확인하였다. 아울러, 정제된 다중체 형태 (multimeric form)의 세포막 투과성 펩티드가 융합된 인간 전립성 산성 인산 가수분해 효소는 수지상 세포의 감작시 세포질 내로 효과적으로 침투되었다. 결과적으로 세포의 사멸의 부작용이 없이 MHC class I 분자를 통해 수지상세포의 표면으로 효과적으로 제시되었다.