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Updated: Nov 5, 2025

Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
JunB is a key regulator of multiple myeloma bone marrow angiogenesis
Fengjuan Fan1,2, Stefano Malvestiti2, Sonia Vallet3,4
1Institute of Hematology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Bone marrow (BM) angiogenesis significantly influences disease progression in multiple myeloma (MM) patients and correlates with adverse prognosis. The present study shows a statistically significant correlation of the AP-1 family member JunB with VEGF, VEGFB, and IGF1 expression levels in MM. In contrast to the angiogenic master regulator Hif-1α, JunB protein levels were independent of hypoxia. Results in tumor-cell models that allow the induction of JunB knockdown or JunB activation, respectively, corroborated the functional role of JunB in the production and secretion of these angiogenic factors (AFs). Consequently, conditioned media derived from MM cells after JunB knockdown or JunB activation either inhibited or stimulated in vitro angiogenesis. The impact of JunB on MM BM angiogenesis was finally confirmed in a dynamic 3D model of the BM microenvironment, a xenograft mouse model as well as in patient-derived BM sections. In summary, in continuation of our previous study (Fan et al., 2017), the present report reveals for the first time that JunB is not only a mediator of MM cell survival, proliferation, and drug resistance, but also a promoter of AF transcription and consequently of MM BM angiogenesis. Our results thereby underscore worldwide efforts to target AP-1 transcription factors such as JunB as a promising strategy in MM therapy.
Insights
JunB promotes bone marrow angiogenesis in multiple myeloma (MM) by increasing angiogenic factors. Targeting JunB offers a promising therapeutic strategy for MM patients.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- Bone marrow (BM) angiogenesis is critical in multiple myeloma (MM) progression and prognosis.
- The transcription factor JunB's role in MM angiogenesis was previously unexplored.
Purpose of the Study:
- To investigate the functional role of JunB in promoting angiogenesis within the MM bone marrow microenvironment.
- To explore JunB as a potential therapeutic target in MM.
Main Methods:
- Correlation analysis of JunB with angiogenic factors (VEGF, VEGFB, IGF1) in MM.
- JunB knockdown and activation studies in MM cell models.
- In vitro angiogenesis assays using conditioned media.
- Validation in 3D BM models, xenograft mouse models, and patient-derived BM sections.
Main Results:
- JunB expression positively correlated with VEGF, VEGFB, and IGF1 in MM.
- JunB levels were independent of hypoxia.
- JunB modulated the production and secretion of angiogenic factors, impacting in vitro angiogenesis.
- JunB's pro-angiogenic role was confirmed in vivo and in patient samples.
Conclusions:
- JunB promotes MM bone marrow angiogenesis by regulating angiogenic factor transcription.
- JunB is a key mediator of MM cell survival, proliferation, and drug resistance.
- Targeting JunB represents a promising therapeutic strategy for MM.
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