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Snow Fungus, Silver Ear · 2024 · Journal Article

High relevance

Cu-Tremella fuciformis polysaccharide-based tumor microenvironment-responsive injectable gels for cuproptosis-based synergistic osteosarcoma therapy.

Tremella fuciformis

OncologyImmune supportGut & microbiomeSkin & hydration
SpeciesSnow Fungus, Silver Ear
JournalInternational journal of biological macromolecules
Year2024

Key points

  • Cuproptosis affects osteosarcoma locally, and the exploitation of cuproptosis-related biomaterials for osteosarcoma treatment is still in its infancy
  • This material has antitumor effects, the ability to stimulate immunity and promote bone formation, and a controlled Cu 2+ release profile in smart response to tumor microenvironment stimulation
  • TFP-Cu can selectively inhibit the proliferation of K7M2 tumor cells by arresting the cell cycle and promoting cell apoptosis and cuproptosis
  • TFP-Cu also promoted the M1 polarization of RAW264.7 cells and regulated the immune microenvironment
  • These effects increased osteogenic gene and protein expression in MC3T3-E1 cells
  • TFP-Cu could significantly limit tumor growth in tumor-bearing mice by inducing tumor cell apoptosis and improving the activation of anti-CD8 T cell-mediated immune responses

Metadata-grounded summary

Citation abstract

Cuproptosis affects osteosarcoma locally, and the exploitation of cuproptosis-related biomaterials for osteosarcoma treatment is still in its infancy. We designed and synthesized a novel injectable gel of Cu ion-coordinated Tremella fuciformis polysaccharide (TFP-Cu) for antiosteosarcoma therapy. This material has antitumor effects, the ability to stimulate immunity and promote bone formation, and a controlled Cu 2+ release profile in smart response to tumor microenvironment stimulation. TFP-Cu can selectively inhibit the proliferation of K7M2 tumor cells by arresting the cell cycle and promoting cell apoptosis and cuproptosis. TFP-Cu also promoted the M1 polarization of RAW264.7 cells and regulated the immune microenvironment. These effects increased osteogenic gene and protein expression in MC3T3-E1 cells. TFP-Cu could significantly limit tumor growth in tumor-bearing mice by inducing tumor cell apoptosis and improving the activation of anti-CD8 T cell-mediated immune responses. Therefore, TFP-Cu could be a potential candidate for treating osteosarcoma and bioactive drug carrier for further cancer-related applications.

Citation

Xie C, Sun Q, Chen J, Yang B, Lu H, Liu Z, et al. (2024). Cu-Tremella fuciformis polysaccharide-based tumor microenvironment-responsive injectable gels for cuproptosis-based synergistic osteosarcoma therapy. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2024.132029 PMID: 38704064

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