4.6 Article

Molecularly imprinted polymer nanogels targeting the HAV motif in cadherins inhibit cell-cell adhesion and migration

期刊

JOURNAL OF MATERIALS CHEMISTRY B
卷 10, 期 35, 页码 6688-6697

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2tb00680d

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资金

  1. Mexican National Council for Science and Technology (CONACYT)
  2. Instituto para el Desarrollo de la Sociedad del Conocimiento del Estado de Aguascalientes (IDSCEA)
  3. CONACYT
  4. Instituto de Innovacion y Transferencia de Tecnologia de Nuevo Leon
  5. Erasmus+ program
  6. Region of Picardy
  7. European Union
  8. COST Action Innovation with Glycans: new frontiers from synthesis to new biological targets [CA18013]
  9. Institut Universitaire de France

向作者/读者索取更多资源

Cadherins are cell-surface proteins that play a crucial role in cell adhesion and are associated with cancer progression. This study proposes a synthetic antibody based on MIP-NGs that inhibits cell adhesion and migration, providing a potential alternative for cancer treatment.
Cadherins are cell-surface proteins that mediate cell-cell adhesion. By regulating their grip formation and strength, cadherins play a pivotal role during normal tissue morphogenesis and homeostasis of multicellular organisms. However, their dysfunction is associated with cell migration and proliferation, cancer progression and metastasis. The conserved amino acid sequence His-Ala-Val (HAV) in the extracellular domain of cadherins is implicated in cadherin-mediated adhesion and migration. Antagonists of cadherin adhesion such as monoclonal antibodies and small molecule inhibitors based on HAV peptides, are of high therapeutic value in cancer treatment. However, antibodies are not stable outside their natural environment and are expensive to produce, while peptides have certain limitations as a drug as they are prone to proteolysis. Herein, we propose as alternative, a synthetic antibody based on molecularly imprinted polymer nanogels (MIP-NGs) to target the HAV domain. The MIP-NGs are biocompatible, have high affinity for N-cadherin and inhibit cell adhesion and migration of human cervical adenocarcinoma (HeLa) cells, as demonstrated by cell aggregation and Matrigel invasion assays, respectively. The emergence of MIPs as therapeutics for fighting cancer is still in its infancy and this novel demonstration reinforces the fact that they have a rightful place in cancer treatment.

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