Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Liposome (VS-1024-FY292)

CAT#: VS-1024-FY292

The anti-67LR/37LBP coupled liposome refers to a technique that links anti-67LR (67 kDa Laminin Receptor) to liposomes, which are nanoscale vesicles commonly used for drug delivery. This coupling method helps improve the targeting of drugs, allowing them to more effectively localize to specific cells or tissues, particularly in cancer treatment and other related medical applications.

Sub Cat Product Name Liposome Name Datasheet  
VS-1124-FY4948 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled PEGylated Liposome (VS-1124-FY4948) PEGylated liposome
VS-1124-FY4949 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Gd-SLs Liposome (VS-1124-FY4949) Gd-SLs liposome
VS-1124-FY4950 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Triptolide-loaded Liposome (VS-1124-FY4950) Triptolide-loaded liposome
VS-1124-FY4951 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Phospholipid Liposome (VS-1124-FY4951) Phospholipid liposome
VS-1124-FY4952 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Cationic Liposome (VS-1124-FY4952) Cationic liposome
VS-1124-FY4953 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Adriamycin-encapsulated Liposome (VS-1124-FY4953) Adriamycin-encapsulated liposome
VS-1124-FY4954 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Magnetofluorescent Liposome (VS-1124-FY4954) Magnetofluorescent liposome
VS-1124-FY4955 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled pH-sensitive Liposome (VS-1124-FY4955) pH-sensitive liposome
VS-1124-FY4956 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Phototoxic Liposome (VS-1124-FY4956) Phototoxic liposome
VS-1124-FY4957 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Targeted Liposome (VS-1124-FY4957) Targeted Liposome
VS-1124-FY4958 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Apt1-Liposome (VS-1124-FY4958) Apt1-liposome
VS-1124-FY4959 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Thermosensitive Liposome (VS-1124-FY4959) Thermosensitive liposome
VS-1124-FY4960 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Clodronate Liposome (VS-1124-FY4960) Clodronate liposome
VS-1124-FY4961 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Galcer Liposome (VS-1124-FY4961) Galcer liposome
VS-1124-FY4962 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled HBsAg-loaded Liposome (VS-1124-FY4962) HBsAg-loaded liposome
VS-1124-FY4963 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled Phospholipid Liposome and Cationic Liposome (VS-1124-FY4963) Phospholipid liposome and Cationic liposome
VS-1124-FY4964 Anti-67LR/37LBP (clone W24V302) Recombinant Antibody Coupled ISMN Liposome (VS-1124-FY4964) ISMN liposome
More Infomation

Specifications

  • Potential Clinical Applications
  • Antibody-conjugated liposomes targeting 67LR/37LBP have the potential to selectively kill breast cancer cells.

Product Composition

  • Clone
  • W24V302
  • Antibody Type
  • IgG
  • Antibody Host
  • Rabbit
  • Antibody Reactivity
  • Human
  • Antibody Description
  • This antibody can specifically recognize and bind to 37LBP, aiding in the study of its biological functions in cancer cells. The application of antibody can help reveal the role of the 67 kDa laminin receptor (67LR) in cancer progression. Through this antibody, researchers can gain deeper insights into the potential mechanisms of 37LBP in cancer invasiveness and metastatic potential.

Product Property

  • Storage
  • See in the COA
  • Storage Shelf Time
  • See in the COA

Target Information

  • Target
  • 67LR/37LBP
  • Introduction
  • Laminins, a family of extracellular matrix glycoproteins, are the major noncollagenous constituent of basement membranes. They have been implicated in a wide variety of biological processes including cell adhesion, differentiation, migration, signaling, neurite outgrowth and metastasis. Many of the effects of laminin are mediated through interactions with cell surface receptors. These receptors include members of the integrin family, as well as non-integrin laminin-binding proteins. This gene encodes a high-affinity, non-integrin family, laminin receptor 1. This receptor has been variously called 67 kD laminin receptor, 37 kD laminin receptor precursor (37LRP) and p40 ribosome-associated protein. The amino acid sequence of laminin receptor 1 is highly conserved through evolution, suggesting a key biological function. It has been observed that the level of the laminin receptor transcript is higher in colon carcinoma tissue and lung cancer cell line than their normal counterparts. Also, there is a correlation between the upregulation of this polypeptide in cancer cells and their invasive and metastatic phenotype. Multiple copies of this gene exist, however, most of them are pseudogenes thought to have arisen from retropositional events. Two alternatively spliced transcript variants encoding the same protein have been found for this gene.
  • Alternative Names
  • Ribosomal Protein SA; Laminin Receptor 1 (67kD, Ribosomal Protein SA); Multidrug Resistance-Associated Protein MGr1-Ag; Colon Carcinoma Laminin-Binding Protein; Laminin-Binding Protein Precursor P40; Small Ribosomal Subunit Protein US2; 37/67 KDa Laminin Receptor; 7 KDa Laminin Receptor; NEM/1CHD4; LBP/P40; LRP/LR; LAMR1; 37LRP
  • Full Name
  • Ribosomal Protein SA
  • Sequence Similarities
  • Belongs to the universal ribosomal protein uS2 family.
  • Cellular Localization
  • Cell membrane, Cytoplasm, Nucleus
  • Post Translation Modifications
  • Acylated
  • Function
  • Required for the assembly and/or stability of the 40S ribosomal subunit.
    Required for the processing of the 20S rRNA-precursor to mature 18S rRNA in a late step of the maturation of 40S ribosomal subunits.
    Also functions as a cell surface receptor for laminin.
    Plays a role in cell adhesion to the basement membrane and in the consequent activation of signaling transduction pathways.
    May play a role in cell fate determination and tissue morphogenesis.
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