Engineering immunity in osteosarcoma: nanomedicine strategies for overcoming immune evasion

Qin Huang1, Gongchang Yu1, Bin Shi1

  • 1Neck-Shoulder and Lumbocrural Pain Hospital of Shandong First Medical University, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, China.

Frontiers in Immunology
|August 15, 2026
PubMed

Insights

Nanotechnology platforms can overcome the immunosuppressive tumor microenvironment in osteosarcoma (a type of bone cancer). These targeted nanomedicines reprogram immune cells and clear physical barriers, offering a new strategy for treating this aggressive cancer.

Area of Science:

  • Oncology
  • Nanomedicine
  • Immunotherapy

Background:

  • Osteosarcoma is an aggressive bone cancer with poor outcomes due to chemoresistance and metastasis.
  • The tumor microenvironment (TME) of osteosarcoma is immunosuppressive, hindering effective immunotherapy.
  • Key barriers include myeloid-derived suppressor cells, tumor-associated macrophages, cancer-associated fibroblasts, and a dense extracellular matrix.

Purpose of the Study:

  • To review how nanotechnology can overcome the challenges of osteosarcoma immunotherapy.
  • To focus on innovative nanomedicine delivery systems for reshaping the osteosarcoma TME.
  • To highlight biomimetic, stimuli-responsive, and bone-targeted nanomedicine strategies.

Main Methods:

  • Examination of cellular and molecular mechanisms of immunotherapy resistance in osteosarcoma.
  • Review of nanotechnology platforms designed for bone targeting and TME modulation.
  • Analysis of strategies like TAM reprogramming, MDSC depletion, ECM clearance, and immune pathway activation.

Main Results:

  • Nanomedicine delivery systems can be engineered to target osteosarcoma bone tissue.
  • These systems can reprogram tumor-associated macrophages and deplete myeloid-derived suppressor cells.
  • Nanoparticles can clear the extracellular matrix and activate innate immunity, overcoming physical and cellular barriers.

Conclusions:

  • Targeted nanomedicine holds significant preclinical promise for osteosarcoma treatment.
  • Multi-targeted nanodelivery systems can precisely modulate the TME and induce antitumor immune responses.
  • Addressing translational hurdles like protein corona and in vivo stability is crucial for clinical progression.

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