HIV-1 p24 ELISA Kit, 96 wells

$418.00

SKU: XB-1000 Categories: ,
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The assay is used to monitor HIV-1 in cell culture or to determine the viral titer of lentiviral samples.


Weight 22.4 oz
Dimensions 11.2 × 4.6 × 6.2 in
Unit Quantity

96 tests

Shipping Temperature

+4C

Storage Temperature

+4C

 For Research Use Only. Not for Diagnostic Use.

Citations

An integrated signaling threshold initiates IgG response towards virus-like immunogens.

Authors:Wholey, Wei-Yun, et al.

bioRxiv January 31, 2024

The Antiviral Activity of the Lectin Griffithsin against SARS-CoV-2 Is Enhanced by the Presence of Structural Proteins

Authors:Bains, A.; Fischer, K.; Guan, W.; LiWang, P.J.

Viruses. 2023; 15(12):2452

Restriction of Influenza A Virus by SERINC5

Authors:Lai KK, et al.

mBio, 21 November 2022

Chemical inhibition of DPP9 sensitizes the CARD8 inflammasome in HIV-1-infected cells

Authors:Clark, Kolin M., et al.

Nature Chemical Biology, 2022 November 10

Defining Antiviral T Cell Responses Elicited by Vaccines versus Infection in HIV-1 and in SARS-CoV-2

Authors:Taus, E. A.

UCLA Electronic Theses and Dissertations, 2022

Uracil Derivatives as HIV-1 Capsid Protein Inhibitors: Design, in Silico, in Vitro and Cytotoxicity Studies

Authors:Ramesh, Deepthi, et al.

RSC Advances, vol. 12, no. 27, 2022: p. 17466–17480

HIV-1 Propagation is Highly Dependent on Basal Levels of the Restriction Factor BST2

Authors:Olety, Balaji, et al.

Science Advances, vol. 7, no. 44, 2021

Targeting Natural Splicing Plasticity of APOBEC3B Restricts its Expression and Mutagenic Activity

Authors:Rouf Banday, A., et al.

Communications Biology, vol. 4, 2021

Study on Suitable Analysis Method for HIV-1 Non-Catalytic Integrase Inhibitor

Authors:Park, Ki Hoon, et al.

Virology Journal, vol. 8, 2021

HIV-1 Hypermethylated Guanosine Cap Licenses Specialized Translation Unaffected by mTOR

Authors:Singh, Gatikrushna, et al.

Proceedings of the National Academy of Sciences, vol. 119, no. 1, 2021

Sterol Metabolism Modulates Susceptibility to HIV-1 Infection

Authors:Saulle, Irma, et al.

AIDS, vol. 34, no. 11, 2020: p. 1593-1602

Reconstitution and Visualization of HIV-1 Capsid-Dependent Replication and Integration In Vitro

Authors:Christensen, Devin E, et al.

Science, vol. 370, no. 6513, (2020)

Comparison of Various Radioactive Payloads for a Human Monoclonal Antibody to Glycoprotein 41 for Elimination of HIV-infected Cells

Authors:Garg, Ravendra, et al.

Nuclear Medicine and Biology, vol. 82-83 (2020): 80-88.

CRISPR-mediated activation of endogenous BST-2/tetherin expression inhibits wild-type HIV-1 production

Authors:Zhang, Yan zhao, et al.

Scientific Reports 9.1 (2019): 3134

Establishment and Evaluation of a General Dissociation Technique for Antibodies in Circulating Immune Complexes

Authors:Wang, Tong, et al.

Clinical and Experimental Medicine, 2019: p. 65-75

The Roles of Five Conserved Lentiviral RNA Structures in HIV-1 Replication

Authors:Liu, Yang, et al.

Virology, vol. 515, 2018: p. 1-8

Time-Restricted PiggyBac DNA Transposition by Transposase Protein Delivery Using Lentivirus-Derived Nanoparticles

Authors:Skipper, Kristian Alsbjerg, et al.

Molecular Therapy - Nucleic Acids, vol. 11, 2018: p. 253–262

Zinc-Finger Nucleases Induced by HIV-1 Tat Excise HIV-1 from the Host Genome in Infected and Latently Infected Cells

Authors:Ji, Haiyan, et al.

Molecular Therapy-Nucleic Acids, vol.12, 2018: p.67-74

Insights into DNA Substrate Selection by APOBEC3G from Structural, Biochemical, and Functional Studies

Authors:Ziegler, Samantha J., et al.

PLoS ONE, vol. 13. no. 3, (2018)

Crystal Structure of the Catalytic Domain of HIV-1 Restriction Factor APOBEC3G in Complex with ssDNA

Authors:Maiti, Atanu, et al.

Nature Communications, vol. 9, (2018)

Identification of Novel HIV-1 Latency-Reversing Agents from a Library of Marine Natural Products

Authors:Richard, Khumoekae, et al.

Viruses, vol. 10, no. 7, (2018)

Investigation of Functional Roles of Transcription Termination Factor-1 (TTF-I) in HIV-1 Replication

Authors:Park, Seong-Hyun, et al.

BMB Reports, vol. 51, no. 7, 2018: p.338–343

Dimethyl Fumarate Prevents HIV-Induced Lysosomal Dysfunction and Cathepsin B Release from Macrophages

Authors:Rosario-Rodríguez, Lester J., et al.

Journal of Neuroimmune Pharmacology, vol. 13, no. 3, 2018: p. 345–354

Protein–Protein Interaction between Surfactant Protein D and DC-SIGN via C-Type Lectin Domain Can Suppress HIV-1 Transfer

Authors:Dodagatta-Marri, Eswari, et al.

Frontiers in Immunology, vol. 8, (2017)

Single-Virus Droplet Microfluidics for High-Throughput Screening of Neutralizing Epitopes on HIV Particles

Authors:Chaipan, Chawaree, et al.

Cell Chemical Biology, vol. 24. no. 6, 2017: p. 751-757

Expression of HERV-K108 Envelope Interferes with HIV-1 Production

Authors:Terry, Sandra N., et al.

Virology, vol. 509, Sept. 2017, pp. 52–59.

IFN-γ Attenuates Spontaneous Lymphocyte Proliferation by Fuelling Regulatory T Cells in HIV-1-Infected Patients

Authors:Terzieva, Velislava I., et al.

Viral Immunology, vol. 30, no. 3, 1 Apr. 2017, pp. 157–166.

HIV-1 Vpu Downmodulates ICAM-1 Expression, Resulting in Decreased Killing of Infected CD4+ T Cells by NK Cells

Authors:Sugden, Scott M., et al.

Journal of Virology, vol. 91, no. 8, (2017)

Control of HIV Infection In Vivo Using Gene Therapy with a Secreted Entry Inhibitor

Authors:Falkenhagen, Alexander, et al.

Molecular Therapy - Nucleic Acids, vol. 9, 2017 pp. 132–144

Identification of a tripartite interaction between the N-terminus of HIV-1 Vif CBFß that is critical for Vif function.

Authors:Desimmie, Belete A. et al.

Retrovirology 14.19 (2017). Web 17 March 2017

In Vivo Excision of HIV-1 Provirus by saCas9 and Multiplex Single-Guide RNAs in Animal Models

Authors:Yin, Chaoran, et al.

Molecular Therapy 25.5 (2017): 1168-1186

Recovering Infectious HIV from Novel Syringe-Needle Combinations with Low Dead Space Volumes

Authors:Abdala, Nadia, et al.

AIDS Research and Human Retroviruses vol. 32,10-11 (2016): 947-954

Glycosylphosphatidylinositol Anchor Deficiency Attenuates the Production of Infectious HIV-1 and Renders Virions Sensitive to Complement Attack

Authors:Amet, Tohti et al.

AIDS Research and Human Retroviruses vol. 32,10-11 (2016): 1100-1112

HIV-1-Specific Chimeric Antigen Receptors Based on Broadly Neutralizing Antibodies

Authors:Ali, Ayub, et al.

Journal of Virology 90.15 (2016): 6999-7006

Senescent fibroblast-derived Chemerin promotes squamous cell carcinoma migration

Authors:Farsam, Vida, et al.

Oncotarget 7.50 (2016):83554-83569

Influenza A virus targets a cGAS-independent STING pathway that controls enveloped RNA viruses.

Authors:Holm, Christian K., et al.

Nature Communications 7 (2016): 10680

The G-quadruplex-forming aptamer AS1411 potentially inhibits HIV-1 attachment to the host cell.

Authors:Perrone, Rosalba, et al.

International Journal of Antimicrobial Agents 47.4 (2016): 311-316

Natural Polymorphisms and Oligomerization of Human APOBEC3H Contribute to Single-stranded DNA Scanning Ability

Authors:Feng, Yuqing, et al.

Journal of Biological Chemistry 290.45 (2015): 27188-27203

HIV-1 replicates in human osteoclasts and enhances their differentiation in vitro.

Authors:Gohda, Jin, et al.

Retrovirology 12 (2015): 12

Transcription co-factor Transducin beta-like (TBL) 1 acts as a checkpoint in pancreatic cancer malignancy

Authors:Stoy, Christian, et al.

EMBO Molecular Medicine 7.8 (2015): 1048-1062

Evaluation of cystatin C activities against HIV

Authors:Vernekar, Vandana, et al.

Indian Journal of Medical Research 141.4 (2015): 423-430

Anti-HIV-1 Activity, Protease Inhibition and Safety Profile of Extracts Prepared from Rhus Parviflora.

Authors:Modi, Manoj, et al.

BMC Complementary and Alternative Medicine 13.1 (2013): 158.

Nuclear Import of APOBEC3F-labeled HIV-1 Preintegration Complexes.

Authors:Burdick, R. C., W.-S. Hu, and V. K. Pathak

Proceedings of the National Academy of Sciences 110.49 (2013)

APOBEC3G Restricts HIV-1 to a Greater Extent than APOBEC3F and APOBEC3DE in Human Primary CD4 T Cells and Macrophages.

Authors:Chaipan, C., J. L. Smith, W.-S. Hu, and V. K. Pathak.

Journal of Virology 87.1 (2012): 444-53

HIV-1 Infection of Human Macrophages Directly Induces Viperin Which Inhibits Viral Production

Authors:Nasr, N., and S. Maddocks

Blood 120.4 (2012): 778-88

Functional Analysis of the Two Cytidine Deaminase Domains in APOBEC3G

Authors:Li, Xiaoyu, et al.

Virology, vol. 414, no. 2, 2011: p. 130–136

Restricted HIV-1 Replication in Placental Macrophages Is Caused by Inefficient Viral Transcription.

Authors:Garcio-Crespo, K., C. Cadilla, R. Sholasky, and L. M. Melendez.

Journal of Leukocyte Biology 87 (2010): 1-4

Role of Cell Signaling in Poxvirus-mediated Foreign Gene Expression in Mammalian Cells.

Authors:Hu, Ningjie, et al.

Vaccine 27.22 (2009): 2994-3006

Characteristics of Activated Monocyte Phenotype Support R5-Tropic Human Immunodeficiency Virus

Authors:Munsaka, Sody M., et al.

Immunol Immunogent Insights 1 (2009): 15-20

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