A highly sensitive and selective viral protein detection method based on RNA oligonucleotide nanoparticle
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作者:
Roh, Changhyun
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KAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South KoreaKAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South Korea
Roh, Changhyun
[1
]
Lee, Ho-Young
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Seoul Natl Univ, Coll Med, Dept Nucl Med, Seoul 151, South KoreaKAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South Korea
Lee, Ho-Young
[2
]
Kim, Sang-Eun
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Seoul Natl Univ, Coll Med, Dept Nucl Med, Seoul 151, South KoreaKAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South Korea
Kim, Sang-Eun
[2
]
Jo, Sung-Kee
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KAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South KoreaKAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South Korea
Jo, Sung-Kee
[1
]
机构:
[1] KAERI, ARTI, Radiat Res Div Biotechnol, Jeongeup 580185, Jeonbuk, South Korea
[2] Seoul Natl Univ, Coll Med, Dept Nucl Med, Seoul 151, South Korea
Globally, approximately 170 million people (representing approximately 3% of the population worldwide), are infected with hepatitis C virus (HCV) and at risk of serious liver disease, including chronic hepatitis. We propose a new quantum dots (QDs)-supported RNA oligonucleotide approach for the specific and sensitive detection of viral protein using a biochip. This method was developed by immobilizing a HCV nonstructural protein 5B (NS5B) on the surface of a glass chip via the formation of a covalent bond between an amine protein group and a ProLinker (TM) glass chip. The QDs-supported RNA oligonucleotide was conjugated via an amide formation reaction from coupling of a 5'-end-amine-modified RNA oligonucleotide on the surface of QDs displaying carboxyl groups via standard EDC coupling. The QDs-conjugated RNA oligonucleotide was interacted to immobilized viral protein NS5B on the biochip. The detection is based on the variation of signal of QDs-supported RNA oligonucleotide bound on an immobilized biochip. It was demonstrated that the value of the signal has a linear relationship with concentrations of the HCV NS5B viral protein in the 1 mu g mL(-1) to 1 ng mL(-1) range with a detection limit of 1 ng mL(-1). The major advantages of this RNA-oligonucleotide nanoparticle assay are its good specificity, ease of performance, and ability to perform one-spot monitoring. The proposed method could be used as a general method of HCV detection and is expected to be applicable to other types of diseases as well.
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Western Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USAWestern Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USA
Dissanayake, Niluka M.
Arachchilage, Jaliya S.
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Western Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USAWestern Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USA
Arachchilage, Jaliya S.
Samuels, Tova A.
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Western Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USAWestern Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USA
Samuels, Tova A.
Obare, Sherine O.
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Western Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USA
Univ N Carolina, Joint Sch Nanosci & Nanoengn, Dept Nanosci, Greensboro, NC USA
North Carolina A&T State Univ, Greensboro, NC 27401 USAWestern Michigan Univ, Dept Chem, Kalamazoo, MI 49008 USA
Key Laboratory of Luminescent and Real-Time Analytical Chemistry, Ministry of Education, College of Chemical and Chemistry Engineering, Southwest University, Chongqing
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Key Laboratory of Luminescent and Real-Time Analytical Chemistry, Ministry of Education, College of Chemical and Chemistry Engineering, Southwest University, Chongqing