Lexatumumab

Last updated
Lexatumumab
Monoclonal antibody
Type Whole antibody
Source Human
Target TRAIL-R2
Clinical data
ATC code
  • none
Identifiers
CAS Number
ChemSpider
  • none
UNII
KEGG
Chemical and physical data
Formula C6346H9832N1720O2002S42
Molar mass 143601.02 g·mol−1
 X mark.svgNYes check.svgY  (what is this?)    (verify)

Lexatumumab (also known as ETR2-ST01) is an experimental agonistic human monoclonal antibody against TRAIL-R2 (DR5, APO-2), intended for the treatment of cancer. [1] [2]

HGS-ETR2 antibodies were generated by Human Genome Sciences through a collaboration with Cambridge Antibody Technology. [3]

Development was discontinued in 2015. [4]

Related Research Articles

<span class="mw-page-title-main">Antigen</span> Molecule triggering an immune response (antibody production) in the host

In immunology, an antigen (Ag) is a molecule, moiety, foreign particulate matter, or an allergen, such as pollen, that can bind to a specific antibody or T-cell receptor. The presence of antigens in the body may trigger an immune response.

<span class="mw-page-title-main">Poliovirus</span> Enterovirus

Poliovirus, the causative agent of polio, is a serotype of the species Enterovirus C, in the family of Picornaviridae. There are three poliovirus serotypes: types 1, 2, and 3.

Antigenic drift is a kind of genetic variation in viruses, arising from the accumulation of mutations in the virus genes that code for virus-surface proteins that host antibodies recognize. This results in a new strain of virus particles that is not effectively inhibited by the antibodies that prevented infection by previous strains. This makes it easier for the changed virus to spread throughout a partially immune population. Antigenic drift occurs in both influenza A and influenza B viruses.

<span class="mw-page-title-main">Human Genome Sciences</span> Former American pharmaceutical company, acquired by GlaxoSmithKline.

Human Genome Sciences (HGS) was a biopharmaceutical corporation founded in 1992 by Craig Venter, Alan Walton and Wally Steinberg. It uses the human DNA sequence to develop protein and antibody drugs. It had drugs under development to treat such diseases as hepatitis C, systemic lupus erythmatosis, anthrax, and cancer. It collaborated with other biotechnology and pharmaceutical companies for development partnerships and licensing.

<span class="mw-page-title-main">Adaptive immune system</span> Subsystem of the immune system

The adaptive immune system, also known as the acquired immune system, or specific immune system is a subsystem of the immune system that is composed of specialized, systemic cells and processes that eliminate pathogens or prevent their growth. The acquired immune system is one of the two main immunity strategies found in vertebrates.

<span class="mw-page-title-main">CD4</span> Marker on immune cells

In molecular biology, CD4 is a glycoprotein that serves as a co-receptor for the T-cell receptor (TCR). CD4 is found on the surface of immune cells such as helper T cells, monocytes, macrophages, and dendritic cells. It was discovered in the late 1970s and was originally known as leu-3 and T4 before being named CD4 in 1984. In humans, the CD4 protein is encoded by the CD4 gene.

<span class="mw-page-title-main">CD23</span> Low-affinity" receptor for IgE

CD23, also known as Fc epsilon RII, or FcεRII, is the "low-affinity" receptor for IgE, an antibody isotype involved in allergy and resistance to parasites, and is important in regulation of IgE levels. Unlike many of the antibody receptors, CD23 is a C-type lectin. It is found on mature B cells, activated macrophages, eosinophils, follicular dendritic cells, and platelets.

<span class="mw-page-title-main">CD40 (protein)</span> Mammalian protein found in Homo sapiens

Cluster of differentiation 40, CD40 is a type I transmembrane protein found on antigen-presenting cells and is required for their activation. The binding of CD154 (CD40L) on TH cells to CD40 activates antigen presenting cells and induces a variety of downstream effects.

Theralizumab is an immunomodulatory drug developed by Thomas Hünig of the University of Würzburg. It was withdrawn from development after inducing severe inflammatory reactions as well as chronic organ failure in the first-in-human study by Parexel in London in March 2006. The developing company, TeGenero Immuno Therapeutics, went bankrupt later that year. The commercial rights were then acquired by a Russian startup, TheraMAB. The drug was renamed TAB08. Phase I and II clinical trials have been completed for arthritis and clinical trials have been initiated for cancer.

<span class="mw-page-title-main">Fas receptor</span> Protein found in humans

The Fas receptor, also known as Fas, FasR, apoptosis antigen 1, cluster of differentiation 95 (CD95) or tumor necrosis factor receptor superfamily member 6 (TNFRSF6), is a protein that in humans is encoded by the FAS gene. Fas was first identified using a monoclonal antibody generated by immunizing mice with the FS-7 cell line. Thus, the name Fas is derived from FS-7-associated surface antigen.

<span class="mw-page-title-main">CD134</span> Protein-coding gene in humans

Tumor necrosis factor receptor superfamily, member 4 (TNFRSF4), also known as CD134 and OX40 receptor, is a member of the TNFR-superfamily of receptors which is not constitutively expressed on resting naïve T cells, unlike CD28. OX40 is a secondary co-stimulatory immune checkpoint molecule, expressed after 24 to 72 hours following activation; its ligand, OX40L, is also not expressed on resting antigen presenting cells, but is following their activation. Expression of OX40 is dependent on full activation of the T cell; without CD28, expression of OX40 is delayed and of fourfold lower levels.

<span class="mw-page-title-main">Belimumab</span> Pharmaceutical drug

Belimumab, sold under the brand name Benlysta, is a human monoclonal antibody that inhibits B-cell activating factor (BAFF), also known as B-lymphocyte stimulator (BLyS). It is approved in the United States and Canada, and the European Union to treat systemic lupus erythematosus and lupus nephritis.

Mapatumumab (HGS-ETR1) is an experimental human monoclonal antibody undergoing clinical trials for the treatment of cancer. It targets TRAIL-R1, also known as DR4, which is expressed on the surface of many tumor cell types.

Raxibacumab is a human monoclonal antibody intended for the prophylaxis and treatment of inhaled anthrax. Its efficacy has been proven in rabbits and monkeys. In December 2012 raxibacumab was approved in the United States for the treatment of inhalational anthrax due to Bacillus anthracis in combination with appropriate antibacterial drugs, and for prophylaxis of inhalational anthrax when alternative therapies are not available or are not appropriate.

<span class="mw-page-title-main">Transferrin receptor 1</span> Protein-coding gene in the species Homo sapiens

Transferrin receptor protein 1 (TfR1), also known as Cluster of Differentiation 71 (CD71), is a protein that in humans is encoded by the TFRC gene. TfR1 is required for iron import from transferrin into cells by endocytosis.

<span class="mw-page-title-main">B-cell maturation antigen</span> Protein-coding gene in the species Homo sapiens

B-cell maturation antigen, also known as tumor necrosis factor receptor superfamily member 17 (TNFRSF17), is a protein that in humans is encoded by the TNFRSF17 gene.

Conatumumab is a monoclonal antibody developed for the treatment of cancer. It is a fully human monoclonal agonist antibody directed against the extracellular domain of human TRAIL receptor 2 with potential antineoplastic activity. Conatumumab mimics the activity of native TRAIL, binding to and activating TR-2, thereby activating caspase cascades and inducing tumor cell apoptosis. TR-2 is expressed by a variety of solid tumors and cancers of hematopoietic origin.

Urelumab is a fully human, non‐ligand binding, CD137 agonist immunoglobulin‐γ 4 (IgG4) monoclonal antibody. It was developed utilizing Medarex's UltiMAb(R) technology by Bristol-Myers Squibb for the treatment of cancer and solid tumors. Urelumab promotes anti-tumor immunity, or an immune response against tumor cells, via CD137 activation. The application of Urelumab has been limited due to the fact that it can cause severe liver toxicity.

<span class="mw-page-title-main">MERS-related coronavirus</span> Species of virus

Middle East respiratory syndrome–related coronavirus (MERS-CoV), or EMC/2012 (HCoV-EMC/2012), is the virus that causes Middle East respiratory syndrome (MERS). It is a species of coronavirus which infects humans, bats, and camels. The infecting virus is an enveloped, positive-sense, single-stranded RNA virus which enters its host cell by binding to the DPP4 receptor. The species is a member of the genus Betacoronavirus and subgenus Merbecovirus.

<span class="mw-page-title-main">Coronavirus spike protein</span> Glycoprotein spike on a viral capsid or viral envelope

Spike (S) glycoprotein is the largest of the four major structural proteins found in coronaviruses. The spike protein assembles into trimers that form large structures, called spikes or peplomers, that project from the surface of the virion. The distinctive appearance of these spikes when visualized using negative stain transmission electron microscopy, "recalling the solar corona", gives the virus family its main name.

References

  1. "Statement on a Nonproprietary Name adopted by the USAN Council - Lexatumumab" (PDF). American Medical Association. Archived from the original (PDF) on 2012-02-20.
  2. Marini P (December 2006). "Drug evaluation: lexatumumab, an intravenous human agonistic mAb targeting TRAIL receptor 2". Current Opinion in Molecular Therapeutics. 8 (6): 539–46. PMID   17243490.
  3. "TRAIL Receptor Antibodies". Human Genome Sciences, Inc. Archived from the original on 2008-05-16. Retrieved 2010-05-12.
  4. "Lexatumumab". AdisInsight. Springer Nature Switzerland AG.