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Updated: Feb 27, 2026

Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
Calcitriol exerts an anti-tumor effect in osteosarcoma by inducing the endoplasmic reticulum stress response
Takatsune Shimizu1,2, Walied A Kamel1,2,3,4, Sayaka Yamaguchi-Iwai1,5
1Division of Gene Regulation, Institute for Advanced Medical Research, Keio University School of Medicine, Tokyo, Japan.
Abstract:
Osteosarcoma is the most common type of primary bone tumor, and novel therapeutic approaches for this disease are urgently required. To identify effective agents, we screened a panel of Food and Drug Administration (FDA)-approved drugs in AXT cells, our newly established mouse osteosarcoma line, and identified calcitriol as a candidate compound with therapeutic efficacy for this disease. Calcitriol inhibited cell proliferation in AXT cells by blocking cell cycle progression. From a mechanistic standpoint, calcitriol induced endoplasmic reticulum (ER) stress, which was potentially responsible for downregulation of cyclin D1, activation of p38 MAPK, and intracellular production of reactive oxygen species (ROS). Knockdown of Atf4 or Ddit3 restored cell viability after calcitriol treatment, indicating that the ER stress response was indeed responsible for the anti-proliferative effect in AXT cells. Notably, the ER stress response was induced to a lesser extent in human osteosarcoma than in AXT cells, consistent with the weaker suppressive effect on cell growth in the human cells. Thus, the magnitude of ER stress induced by calcitriol might be an index of its anti-osteosarcoma effect. Although mice treated with calcitriol exhibited weight loss and elevated serum calcium levels, a single dose was sufficient to decrease osteosarcoma tumor size in vivo. Our findings suggest that calcitriol holds therapeutic potential for treatment of osteosarcoma, assuming that techniques to diminish its toxicity could be established. In addition, our results show that calcitriol could still be safely administered to osteosarcoma patients for its original purposes, including treatment of osteoporosis.
Insights
Calcitriol, a vitamin D analog, shows therapeutic potential against osteosarcoma by inducing endoplasmic reticulum stress and inhibiting cell proliferation. Further research is needed to manage its toxicity for effective cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Osteosarcoma is the most common primary bone cancer, necessitating new therapeutic strategies.
- Current treatments have limitations, driving the search for novel agents.
- FDA-approved drugs represent a promising source for identifying new cancer therapies.
Purpose of the Study:
- To identify effective therapeutic agents for osteosarcoma from FDA-approved drug candidates.
- To investigate the anti-proliferative mechanisms of calcitriol in osteosarcoma cells.
- To evaluate the therapeutic potential and toxicity of calcitriol in preclinical models.
Main Methods:
- Screening of FDA-approved drugs in a novel mouse osteosarcoma cell line (AXT cells).
- Analysis of cell cycle progression, endoplasmic reticulum (ER) stress markers (e.g., Atf4, Ddit3), and reactive oxygen species (ROS) production.
- In vivo studies assessing tumor size reduction and systemic toxicity in mice.
Main Results:
- Calcitriol demonstrated significant anti-proliferative effects in AXT cells by arresting cell cycle progression.
- Calcitriol induced ER stress, which was identified as the key mechanism mediating its anti-proliferative action.
- A single dose of calcitriol reduced osteosarcoma tumor size in vivo, despite observed side effects like weight loss and hypercalcemia.
Conclusions:
- Calcitriol exhibits therapeutic potential for osteosarcoma treatment by leveraging ER stress induction.
- The magnitude of ER stress induced by calcitriol may serve as a biomarker for its efficacy.
- Managing calcitriol's toxicity is crucial for its clinical application in osteosarcoma, though it remains safe for its original indications like osteoporosis.
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