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Updated: Mar 22, 2026

Modeling Brain Metastasis Via Tail-Vein Injection of Inflammatory Breast Cancer Cells
Published on: February 4, 2021
miR-141-Mediated Regulation of Brain Metastasis From Breast Cancer
Bisrat G Debeb1, Lara Lacerda1, Simone Anfossi1
1Affiliation of authors: Departments of Experimental Radiation Oncology (BGD, LLa, PD, RAL, ARW, WX, DLS, LLi), Hematopathology (SA, JMR), Experimental Therapeutics (KC, CI, GAC), Pathology (LH, SK), Biostatistics (CW, WW), Radiation Oncology (AB, PKA, TAB, WAW), and Breast Medical Oncology (NTU), The University of Texas MD Anderson Cancer Center, Houston, TX; Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, TX (XHZ); Morgan Welch Inflammatory Breast Cancer Research Program and Clinic, The University of Texas MD Anderson Cancer Center, Houston, TX (BGD, LLa, SA, LH, RAL, ARW, WX, DLS, LLi, SK, TAB, NTU, JMR, WAW).
Background:
Brain metastasis poses a major treatment challenge and remains an unmet clinical need. Finding novel therapies to prevent and treat brain metastases requires an understanding of the biology and molecular basis of the process, which currently is constrained by a dearth of experimental models and specific therapeutic targets.
Methods:
Green Fluorescent Protein (GFP)-labeled breast cancer cells were injected via tail vein into SCID/Beige mice (n = 10-15 per group), and metastatic colonization to the brain and lung was evaluated eight weeks later. Knockdown and overexpression of miR-141 were achieved with lentiviral vectors. Serum levels of miR-141 were measured from breast cancer patients (n = 105), and the association with clinical outcome was determined by Kaplan-Meier method. All statistical tests were two-sided.
Results:
Novel brain metastasis mouse models were developed via tail vein injection of parental triple-negative and human epidermal growth factor receptor 2 (HER2)-overexpressing inflammatory breast cancer lines. Knockdown of miR-141 inhibited metastatic colonization to brain (miR-141 knockdown vs control: SUM149, 0/8 mice vs 6/9 mice,P= .009; MDA-IBC3, 2/14 mice vs 10/15 mice,P= .007). Ectopic expression of miR-141 in nonexpressing MDA-MB-231 enhanced brain metastatic colonization (5/9 mice vs 0/10 mice,P= .02). Furthermore, high miR-141 serum levels were associated with shorter brain metastasis-free survival (P= .04) and were an independent predictor of progression-free survival (hazard ratio [HR] = 4.77, 95% confidence interval [CI] = 2.61 to 8.71,P< .001) and overall survival (HR = 7.22, 95% CI = 3.46 to 15.06,P< .001).
Conclusions:
Our study suggests miR-141 is a regulator of brain metastasis from breast cancer and should be examined as a biomarker and potential target to prevent and treat brain metastases.
Insights
MicroRNA-141 (miR-141) promotes brain metastasis in breast cancer. Targeting miR-141 may offer a new strategy for preventing and treating brain metastases.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Brain metastasis is a significant challenge in breast cancer treatment.
- Understanding the molecular mechanisms of brain metastasis is crucial for developing novel therapies.
- Current experimental models and therapeutic targets for brain metastasis are limited.
Purpose of the Study:
- To investigate the role of microRNA-141 (miR-141) in breast cancer brain metastasis.
- To evaluate miR-141 as a potential biomarker and therapeutic target for brain metastases.
Main Methods:
- Developed novel mouse models of brain metastasis using GFP-labeled breast cancer cells.
- Manipulated miR-141 levels (knockdown and overexpression) using lentiviral vectors.
- Measured serum miR-141 levels in breast cancer patients and correlated with clinical outcomes.
Main Results:
- Knockdown of miR-141 significantly inhibited brain metastatic colonization in mouse models.
- Overexpression of miR-141 enhanced brain metastatic colonization.
- High serum miR-141 levels were associated with shorter brain metastasis-free survival and predicted poorer progression-free and overall survival.
Conclusions:
- miR-141 acts as a regulator of breast cancer brain metastasis.
- miR-141 is a promising biomarker for predicting metastasis and survival.
- miR-141 warrants further investigation as a therapeutic target to prevent and treat brain metastases.
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