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Amelioration of Tumor-promoting Microenvironment via Vascular Remodeling and CAF Suppression Using E7130: Biomarker
Ken Ito1,2, Masayuki Yamaguchi2, Taro Semba1
1Eisai Co., Ltd., Tsukuba Research Laboratory, Tsukuba, Ibaragi, Japan.
Abstract:
E7130 is a novel anticancer agent created from total synthetic study of the natural compound norhalichondrin B. In addition to inhibiting microtubule dynamics, E7130 also ameliorates tumor-promoting aspects of the tumor microenvironment (TME) by suppressing cancer-associated fibroblasts (CAF) and promoting remodeling of tumor vasculature. Here, we demonstrate TME amelioration by E7130 using multi-imaging modalities, including multiplexed mass cytometry [cytometry by time-of-flight (CyTOF)] analysis, multiplex IHC analysis, and MRI. Experimental solid tumors characterized by large numbers of CAFs in TME were treated with E7130. E7130 suppressed LAP-TGFβ1 production, a precursor of TGFβ1, in CAFs but not in cancer cells; an effect that was accompanied by a reduction of circulating TGFβ1 in plasma. To our best knowledge, this is the first report to show a reduction of TGFβ1 production in TME. Furthermore, multiplex IHC analysis revealed reduced cellularity and increased TUNEL-positive apoptotic cells in E7130-treated xenografts. Increased microvessel density (MVD) and collagen IV (Col IV), an extracellular matrix (ECM) component associated with endothelial cells, were also observed in the TME, and plasma Col IV levels were also increased by E7130 treatment. MRI revealed increased accumulation of a contrast agent in xenografts. Moreover, diffusion-weighted MRI after E7130 treatment indicated reduction of tumor cellularity and interstitial fluid pressure. Overall, our findings strongly support the mechanism of action that E7130 alters the TME in therapeutically beneficial ways. Importantly, from a translational perspective, our data demonstrated MRI as a noninvasive biomarker to detect TME amelioration by E7130, supported by consistent changes in plasma biomarkers.
Insights
E7130, a novel anticancer agent, effectively modifies the tumor microenvironment (TME) by suppressing cancer-associated fibroblasts and improving vasculature. This study highlights MRI as a noninvasive biomarker for detecting TME amelioration by E7130.
Area of Science:
- Oncology
- Pharmacology
- Biomedical Imaging
Background:
- E7130 is a novel synthetic anticancer agent derived from norhalichondrin B.
- It inhibits microtubule dynamics and modulates the tumor microenvironment (TME).
- The TME, including cancer-associated fibroblasts (CAFs) and tumor vasculature, plays a critical role in cancer progression.
Purpose of the Study:
- To demonstrate the TME-ameliorating effects of E7130 using multi-imaging modalities.
- To investigate the impact of E7130 on CAFs, TGFβ1 production, and tumor vasculature.
- To establish MRI as a noninvasive biomarker for TME modulation by E7130.
Main Methods:
- Multiplexed mass cytometry (CyTOF) and multiplex immunohistochemistry (IHC) were employed.
- Magnetic resonance imaging (MRI), including diffusion-weighted MRI, was utilized.
- Experimental solid tumors and plasma samples were analyzed.
Main Results:
- E7130 suppressed LAP-TGFβ1 in CAFs, leading to reduced circulating TGFβ1.
- Multiplex IHC showed decreased cellularity and increased apoptosis in E7130-treated tumors.
- MRI indicated reduced tumor cellularity, interstitial fluid pressure, and increased contrast agent accumulation.
Conclusions:
- E7130 therapeutically alters the TME by targeting CAFs and remodeling vasculature.
- The study provides the first evidence of reduced TGFβ1 production within the TME.
- MRI serves as a noninvasive biomarker for E7130-induced TME amelioration, corroborated by plasma biomarkers.
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