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Intra-iliac Artery Injection for Efficient and Selective Modeling of Microscopic Bone Metastasis
Published on: September 26, 2016
Interference with the microenvironmental support impairs the de novo formation of bone metastases in vivo
Gabri van der Pluijm1, Ivo Que, Bianca Sijmons
1Department of Endocrinology, Leiden University Medical Center, Leiden, Netherlands. G.van_der_Pluijm@lumc.nl
Abstract:
Interference with the microenvironmental growth support is an attractive therapeutic strategy for repressing metastatic tumor growth. Bone is a highly dynamic tissue that is continuously remodeled by bone resorption and subsequent bone formation. Growth factors supporting bone metastatic growth are released especially during bone resorption. Differently from most other tissues, drugs that can limit local turnover, such as bisphosphonates, are available for bone. In the present study, we tested the hypothesis that inhibition of bone turnover can affect development and growth progression of experimental bone metastasis. Whole-body bioluminescent reporter imaging was used for the detection, monitoring, and quantification in vivo of the growth progression of bone metastases induced by intracardiac or intraosseous injection of luciferase-transfected breast cancer cells (MDA-231-B/luc+) to nude mice. Suppression of bone turnover by bisphosphonates, before bone colonization by cancer cells, inhibited by a great extent the number of developing bone metastasis. Tumor growth in the few, but still developing, bone metastases was affected only transiently. Reduction of bone turnover had no effect on growth progression of bone metastases, which were already established when bisphosphonate treatment was initiated, despite a substantial reduction in osteolysis. Therefore, cancer cells metastatic to bone, after an initial growth phase that depends on the interaction with the local stroma, become independent of microenvironmental growth factor support and progress autonomously. Inhibition of bone turnover may represent a useful adjuvant therapy especially for cancer patients at risk to develop bone metastasis.
Insights
Inhibiting bone turnover with bisphosphonates before cancer spread can reduce new bone metastasis development. However, established bone metastases eventually grow independently of bone turnover support.
Area of Science:
- Oncology
- Bone Biology
- Cancer Metastasis
Background:
- Bone is a dynamic tissue supporting metastatic growth through growth factors released during resorption.
- Bisphosphonates can limit bone turnover, offering a therapeutic avenue for bone metastases.
Purpose of the Study:
- To investigate if inhibiting bone turnover affects experimental bone metastasis development and progression.
- To determine if bisphosphonate treatment impacts early-stage versus established bone metastases.
Main Methods:
- Utilized whole-body bioluminescent imaging in mice to monitor bone metastasis growth.
- Administered bisphosphonates to inhibit bone turnover before or after cancer cell injection.
- Quantified metastasis number and growth progression in vivo.
Main Results:
- Pre-treatment with bisphosphonates significantly reduced the number of developing bone metastases.
- Tumor growth in early-stage metastases was only transiently affected by bisphosphonate treatment.
- Established bone metastases continued to grow despite reduced osteolysis, indicating independence from bone turnover.
Conclusions:
- Inhibiting bone turnover is effective in preventing the establishment of new bone metastases.
- Bone-metastatic cancer cells become independent of microenvironmental support after an initial growth phase.
- Bisphosphonate therapy may serve as an adjuvant treatment for patients at risk of bone metastasis.

