Claims
- 1. A nucleic acid hybridization assay for detecting hepatitis B virus (HBV) nucleic acid in an analyte comprising:
- (a) contacting the analyte under hybridizing conditions with an excess of (i) an amplifier probe oligonucleotide comprising a first segment having a nucleotide sequence complementary to a segment of the HBV genome and a second segment having a nucleotide sequence noncomplementary to endogenous sequences in the analyte and complementary to an oligonucleotide unit of a nucleic acid multimer and (ii) a capture probe oligonucleotide comprising a first segment having a nucleotide sequence complementary to another segment of the HBV genome and a second segment having a nucleotide sequence noncomplementary to endogenous sequences in the analyte and complementary to an oligonucleotide bound to a solid phase, wherein the first segment of the amplifier probe and the first segment of the capture probe are at least 15 nucleotides in length;
- (b) contacting under hybridizing conditions the product of step (a) with the oligonucleotide bound to the solid phase;
- (c) thereafter separating materials not bound to the solid phase;
- (d) contacting under hybridizing conditions the solid phase complex product of step (c) with the nucleic acid multimer, said multimer comprising (i) at least one oligonucleotide unit that is complementary to the second segment of the amplifier probe oligonucleotide and (ii) a multiplicity of repeating second oligonucleotide units that are complementary to a labeled oligonucleotide;
- (e) removing unbound multimer;
- (f) contacting under hybridizing conditions the solid phase complex product of step (e) with the labeled oligonucleotide;
- (g) removing unbound labeled oligonucleotide; and
- (h) detecting the presence of label in the solid phase complex product of step (g), thereby detecting the presence of HBV nucleic acid.
- 2. The solution sandwich DNA hybridization of claim 1 wherein the first segment of the amplifier probe has a sequence selected from the group consisting of the amplifier probe sequences shown in FIG. 16 and the first segment of the capture probe has a sequence selected from the group consisting of the capture probe sequences shown in FIG. 16.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation, of application Ser. No. 07/823,890, filed Jan. 22, 1992, now abandoned, which is a division, of application Ser. No. 07/340,031 filed, Apr. 18, 1989, now U.S. Pat. No. 5,124,246, which is a continuation-in-part of U.S. patent application Ser. No. 252,638, now abandoned, filed 30 Sep. 1988, which in turn is a continuation-in-part of U.S. Pat. application Ser. No. 185,201, now abandoned, filed 22 Apr. 1988, which in turn is a continuation-in-part of copending U.S. patent application Ser. No. 109,282, now abandoned, filed 15 Oct. 1987. The disclosures of these related applications are incorporated herein by reference.
US Referenced Citations (9)
Foreign Referenced Citations (3)
Number |
Date |
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0225807 |
Jun 1987 |
EPX |
WO8706270 |
Oct 1987 |
WOX |
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WOX |
Non-Patent Literature Citations (4)
Entry |
Fujiyama et al. (1983) Nucleic Acids Research, vol. 11, No. 13, pp. 4601-4610. |
Chu et al., Nucleic Acids Research (1986) 14(14): 5591-5603. |
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Divisions (1)
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340031 |
Apr 1989 |
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Continuations (1)
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823890 |
Jan 1992 |
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Continuation in Parts (3)
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252638 |
Sep 1988 |
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Parent |
185201 |
Apr 1988 |
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Parent |
109282 |
Oct 1987 |
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