Microbiology

OVERVIEW

Microorganism refers to any organism that is too small to be seen by the unaided eye, which abounds in nature, and many find the environment and nutrients needed for growth and reproduction on or within other living organisms. Microorganism includes bacteria, viruses, archaea, fungi and protozoa. Normally, microorganisms live in a balanced situation with their host that ensures survival of both host and parasite. Microbes make up 90% of the 1014 cells in the human body and occupy all of our body surfaces, including the skin, gut, and mucous membranes. Thus, it is of great significance to research microorganisms.

Microbiology is the study of microorganism. This discipline covers a vast area of scientific research on the biochemistry, physiology, cell biology, ecology, evolution and diagnostic development. It is worth mentioning that monoclonal antibody has been highly beneficial for microbiology research and advancing our understanding of antimicrobial immunotherapy, vaccine, infectious diseases and veterinary pathologies.

MICROBIOLOGY ANTIBODY

As development of the monoclonal antibody, antibody has become a useful tool for the study of microbiology, such as microbial detection, microbial pathways, infection diseases and cancer research. Antibodies against various microbial antigens were produced and reflected location, infectivity and toxins of microbe. Particularly, neutralization antibody is the most widely used type, which has biological effect on a microbial pathogen or its toxin.

Neutralizing antibody

Some antibodies defend a cell from an antigen or infectious body by neutralizing any effect it has biologically, which named neutralizing antibodies. The difference between neutralizing antibodies and binding antibodies is that neutralizing antibodies neutralize the biological effects of the antigen, while binding antibodies flag antigens. Antibodies having neutralizing function can block the infectivity of pathogens, inactivate or neutralize foreign substances such as toxins. Neutralization generally occurs as a result of interfering with an organism’s attachment to host tissues and is an important specific defense against viral invaders. For example, neutralization antibodies to HIV-1 Envelope are highly effective in preventing infection with chimeric SIV–HIV (SHIV) viruses in macaques.

Neutralizing antibody block infectivity of microbe. Fig.1 Summary of the protection mechanisms of neutralizing and non-neutralizing Abs specific for viral proteins[1].

OUR OFFERING

Creative Biolabs has collated our microbiology resources to make it easier for you to find antibodies involved in microbiology. These antibody targets cover microbial proteins and toxins, pathogens, and microbe-related diseases. The antibodies have high specificity, high affinity and can help your microbiology research.

For more detailed information about our antibodies, please feel free to contact us.

REFERENCE

  1. Padilla-Quirarte, H. O.; et al. Protective antibodies against influenza proteins. Frontiers in Immunology. 2019, 10, 1677. Distributed under Open Access license CC BY 4.0, without modification.
For research use only, not directly for clinical use.
TARGET SEARCH
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HOT TARGETS
E. coli ST T. gondii tachyzoite • A. fumigatus alp2 • A. pleuropneumoniae serovar 7 TbpB • A. stephensi Anopheline • AAV VP1 • AEV V-ERBB • AMCV CP • B. anthracis EAl • B. burgdorferi-B31 flaP41 • B. melitensis BP26 • B. pertussis ptxB • B. tropicalis Blo t 5 • B19 VP2 • BCoV S protein • Betula Betv-1A • BoNT/B • BoNT/F • BTV VP7 • C. albicans SAP2 • C. trachomatis H ompA • C. trachomatis LPS • DENV1 prM • E. coli ATPβ • E. coli cfaB • E. coli clcA E148Q • E. coli hlyA • E. coli LacY • E. coli LPS • E. coli VapD • E. histolytica PPG • E.coli atpA • E.coli fimbrin • E.coli rpoD • E.coli trpB • EEEV Cp62 • EV71 VP0 • F. arundinacea Pollen • FeLV Env • H. influenzae OMPP2 • H3N8 HA • H3N8 NA • Hantavirus GP • HBV Pre-S • HCV E2 Protein • HCV NS5B • HHV5 UL83 • HIV • HIV1 gp120 • HPIV3 F protein • HPIV3 HANA • HRV2 VP2 • HSP60 • HSV3 ORF68 • HTLV1 gp62 • HTLV1 Pr gag-pro-pol • HTNV Env • IAV H1 / H3 Subtype HA • IAV H1 / H9 / H7 Subtype HA • IAV H3N2 HA • IBDV 002-73/AUS • Influenza virus HA1 • L. monocytogenes • Lbp • LPS • M. jannaschii ApcT • ManLAM • MERS-CoV • MeV N • MHV NP • MPXV • MPXV protein H3L • N. meningitidis H.8 OMP • N.meningitidis NMB1870 • O. tsutsugamushi STA56 • P. brasilianum CSP • P. brasiliensis GlcCer • P. carinii MsgB • P. falciparum p190 • P. falciparum RAP1 • PSMA • Pvs25 • Respiratory Syncytial Virus F protein • RSV F • RV-KU VP4 • S. aureus MntC • S. lividans VGKCs • S. mansoni 9B • S. typhi polysaccharide • Simian P protein • SLEV E protein • Staphylococcal coagulase • T. aestivum α-gliadin • T. cruzi TcP2beta • USUV / WNV E DIII • V. cholerae stn • VACV IMV Membrane Protein • VP7 • VZV gpIII • WSSV Wsv421
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