Small
molecule compounds refer to pesticides, veterinary drugs, biological
toxins, environmental pollutants, hormones, heavy metals and other
substances with a molecular weight of no more than 1000 Daltons. Trace
detection of small molecule compounds is of great significance in
agriculture, food safety, environmental monitoring, medical diagnosis
and other fields. Immunoassay technology based on antigen/antibody
specific recognition has the advantages of strong specificity, high
sensitivity, good stability, simple and fast operation.
The
key to the preparation of antibodies for small molecule compounds is
hapten design. Since small molecule compounds have relatively small
molecular weights and only have reactive properties but no
immunogenicity, small molecule haptens must be coupled with
macromolecular carrier proteins in order to prepare specific antibodies
against haptens through various antibody technologies.
Common
small molecule compound antibody preparations are mainly rabbit
polyclonal antibodies and mouse hybridoma monoclonal antibodies. Rabbit
polyclonal antibodies have multiple sources and simple methods for
preparation, and were widely used in the early stage, but their
specificity is not high and the batch differences are large, which
limits the specificity and repeatability of immunoassay methods. Mouse
monoclonal antibodies have the advantages of strong specificity and easy
batch production, but the whole process involves more materials and
operation techniques, and each step may affect the quality of the final
antibody.
Based
on the HTS-Smart Select platform, AlpVHHs uses immunization with small
molecule complex antibodies to allow animals to produce anti-isotypic
antibodies, and then constructs a yeast display library. Through flow
cytometry analysis and sorting, it can finely control the screening
process and efficiently screen high-affinity and high-specificity
antibodies.
Service Process

Service Advantages
