HHLA2 (NPX-887 Biosimilar) Recombinant Monoclonal Antibody

Code CSB-RA891555MB2HU
Size US$9799
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Product Details

Uniprot No.
Target Names
Alternative Names
NPX887 research-grade biosimilar ;HHLA2 antibody; HERV-H LTR-associating protein 2 antibody; Human endogenous retrovirus-H long terminal repeat-associating protein 2 antibody
Species Reactivity
Human
Immunogen
Recombinant Human HHLA2 protein
Immunogen Species
Homo sapiens (Human)
Conjugate
Non-conjugated
Clonality
Monoclonal
Concentration
It differs from different batches. Please contact us to confirm it.
Buffer
0.01M PBS,pH7.4
Form
Liquid
Troubleshooting and FAQs
Storage
Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Notes
Validation Status
Application-specific performance (e.g., in flow cytometry, ELISA, IHC or other assay formats) has not yet been experimentally verified by CUSABIO. Users are advised to determine the optimal working conditions empirically in their own assay systems.
Guaranteed Quality
① Antibody purity > 95% tested by SDS-PAGE.
② Endotoxin level < 0.1EU/ug tested by LAL method.
Lead Time
3-4 weeks
Description

This recombinant monoclonal antibody is developed as a research-grade biosimilar to NPX-887, targeting HHLA2 (Human Endogenous Retrovirus-H Long Receptor-Associated Protein 2), also known as B7-H7 or B7-H5. HHLA2 is an immune checkpoint molecule belonging to the B7 family that functions as a coinhibitory regulator of T cell responses. This transmembrane protein interacts with both stimulatory and inhibitory receptors, including TMIGD2 and KIR3DL3, playing a complex role in modulating adaptive immunity. HHLA2 expression has been documented in various human cancers, including triple-negative breast cancer, lung cancer, and clear cell renal cell carcinoma, where its overexpression is often associated with tumor immune evasion and poor prognosis.

NPX-887 is an investigational therapeutic antibody designed to block HHLA2-mediated immune suppression, thereby enhancing antitumor immune responses. This biosimilar antibody serves as a valuable research tool for investigating HHLA2 biology, exploring immune checkpoint mechanisms, and studying potential therapeutic interventions in immuno-oncology. It enables researchers to examine HHLA2's role in tumor microenvironment modulation and T cell regulation across various cancer models.

Usage
It is a non-therapeutic biosimilar antibody, owning the same variable region from the corresponding approved therapeutic antibody. In conclusion, it is a research-grade biosimilar antibody and expressed in mammalian cell, which can be directly used as positive controls in drug discovery or used for rapid verification of the biological functions of target protein.

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Target Background

Function
Through interaction with TMIGD2, costimulates T-cells in the context of TCR-mediated activation. Enhances T-cell proliferation and cytokine production via an AKT-dependent signaling cascade.
Gene References into Functions
  1. HHLA2 protein expression was evaluated in primary tumor specimens and metastatic disease using an osteosarcoma tumor microarray. HHLA2 was expressed in almost all metastatic disease specimens and was more prevalent than in primary specimens without known metastases. PMID: 27531281
  2. HHLA2 was not detected in most of normal lung tissue but expressed in 66% of NSCLC across different subtypes. In particular, EGFR-mutated NSCLC was significantly associated with higher tumor HHLA2 expression in both discovery and validation lung cancer cohorts. HHLA2 is widely expressed in NSCLC and is associated with EGFR mutation and high TILs in lung adenocarcinoma. PMID: 27553831
  3. Low B7-H5 expression is associated with pancreatic adenocarcinomas. PMID: 25519928
  4. The HHLA2 pathway represents a novel immunosuppressive mechanism within the tumor microenvironment. PMID: 25549724
  5. B7 homologue 5 (B7-H5), was identified as a specific ligand for CD28H PMID: 23784006
  6. Data indicate that HHLA2 protein was predominantly found on cell membranes with some in the cytoplasm. PMID: 23716685

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Subcellular Location
Membrane; Single-pass type I membrane protein.
Tissue Specificity
Expressed at high levels in colon, kidney, testis, lung and pancreas, and at lower levels in small intestine, liver and skeletal muscle. In immune cells, highly expressed in B-cells, dendritic cells and macrophages. Not detected in T-cells.
Database Links

HGNC: 4905

OMIM: 604371

KEGG: hsa:11148

STRING: 9606.ENSP00000350402

UniGene: Hs.225968

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7505 Fannin St., Ste 610, Room 7 (CUBIO Innovation Center), Houston, TX 77054, USA
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