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Anti- Human IgG (anti-Monkeypox Virus H3L) ELISA Kit

Reference: KPTX103
Brand

ProteoGenix

Product type

Elisa assay kits

Size

1 kit

Product nameAnti- Human IgG (anti-Monkeypox Virus H3L) ELISA Kit
Delivery conditionBlue ice (+4°)
Storage conditionThe stability of ELISA kit is determined by the loss rate of activity. The loss rate of this kit is less than 10% prior to the expiration date under appropriate storage condition.
BrandProteoGenix
Size1 kit
ReferenceKPTX103
NoteFor research use only.
Sample typePlasma, Serum
ImmunogenH3L

Description of Anti- Human IgG (anti-Monkeypox Virus H3L) ELISA Kit

Introduction
Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit is a highly sensitive and specific diagnostic tool used for the detection of Monkeypox virus infection. This ELISA kit is designed to detect the presence of anti-Human IgG antibodies against the H3L protein of Monkeypox virus in human serum or plasma samples. In this article, we will discuss the structure, activity, and application of this ELISA kit.

Structure
The Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit is composed of several components that work together to detect the presence of anti-Human IgG antibodies against the H3L protein of Monkeypox virus. The kit contains a microplate coated with recombinant H3L protein, which acts as the capture antigen. The microplate is divided into wells, each of which can hold a different sample. The kit also includes anti-Human IgG antibodies conjugated to an enzyme, which acts as the detection antibody. This enzyme will produce a color change when it comes into contact with the substrate solution, indicating the presence of anti-Human IgG antibodies in the sample.

Activity
The Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit works on the principle of indirect ELISA. The serum or plasma sample is added to the microplate and incubated, allowing any anti-Human IgG antibodies present in the sample to bind to the H3L protein coated on the plate. After washing away any unbound components, the detection antibody is added, which will bind to any anti-Human IgG antibodies that have already bound to the H3L protein. The microplate is then washed again to remove any unbound detection antibody. Finally, the substrate solution is added, and the color change is measured using a spectrophotometer. The intensity of the color is directly proportional to the amount of anti-Human IgG antibodies present in the sample.

Application
The Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit has several applications in the field of Monkeypox virus research and diagnosis. It can be used for the detection of Monkeypox virus infection in humans, as well as for monitoring the immune response to Monkeypox virus vaccines. This ELISA kit can also be used to study the epidemiology of Monkeypox virus by detecting the presence of anti-Human IgG antibodies in a population. Furthermore, it can be used to screen for potential therapeutic targets by identifying novel anti-Human IgG antibodies that may have neutralizing activity against the H3L protein of Monkeypox virus.

Therapeutic Target
The H3L protein of Monkeypox virus is a potential therapeutic target for the development of novel treatments against Monkeypox virus infection. This protein is essential for the virus to enter and infect host cells, making it a promising target for antiviral therapies. The Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit can aid in the identification and characterization of anti-Human IgG antibodies that have neutralizing activity against the H3L protein. These antibodies can then be further studied and potentially used as therapeutic agents for the treatment of Monkeypox virus infection.

Conclusion
In conclusion, the Anti-Human IgG (anti-Monkeypox Virus H3L) ELISA Kit is a valuable tool for the detection and study of Monkeypox virus infection. Its unique structure and activity allow for the sensitive and specific detection of anti-Human IgG antibodies against the H3L protein of Monkeypox virus. Furthermore, this ELISA kit has various applications in research and diagnosis, and it can aid in the identification of potential therapeutic targets for the treatment of Monkeypox virus infection.

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