Related Experiment Video
Updated: Feb 5, 2026

An Orthotopic Mouse Model of Anaplastic Thyroid Carcinoma
Published on: April 17, 2013
S100A4 Knockout Sensitizes Anaplastic Thyroid Carcinoma Cells Harboring BRAFV600E/Mt to Vemurafenib
Xuelong Jiao1, Hongmei Zhang2, Xiangpeng Xu2
1Department of General Surgery, the Affiliated Hospital of Qingdao University, Qingdao, China.
Background/Aims:
Anaplastic thyroid cancer (ATC), with 25% BRAFV600E mutation, is one of the most lethal human malignancies that currently has no effective therapy. Vemurafenib, a BRAFV600E inhibitor, has shown promise in clinical trials, including ATC patients, but is being hampered by the acquisition of drug resistance. Therefore, combination therapy that includes BRAFV600E inhibition and avoids resistance is a clinical need.
Methods:
ATC cell lines 8505C (BRAFV600E/mt), SW1736 (BRAFV600E/mt), KAT18 (BRAFV600E/wt) and Cal-62(BRAFV600E/wt) cells were used in the study. The ability of S100A knockout or /and in combination with the BRAF inhibitor vemurafenib on growth, apoptosis, invasion and apoptosis in ATC cells in vitro was demonstrated by MTT and BrdUrd incorporation assay, Annexin-V-FITC staining analyzed by flow cytometry, Transwell migration and Matrigel invasion assay. S100A4,pERK1/2, pAKT and pROCK1/2 protein was detected by western blot assay; Small molecule inhibitors of Y27632, U0126, MK-2206 and constitutively active forms of pCDNA-Myc-pERK, pCMV6-HA-Akt, pCMV-RhoA were employed, and the mechanistic studies were performed. We assessed the efficiency of in vivo combination treatment with S100A4 knockout and Vemurafenib on tumors.
Results:
S100A4 knockout induced apoptosis and reduced proliferation by inactivation of pAKT and pERK signals, and inhibited invasion and migration by inactivation of pAKT and RhoA/ROCK1/2 signals in 8505C or Cal-62 cells in vitro, and vice versa in SW1736 and KAT18 cells. Vemurafenib did not affect apoptosis of both 8505C and SW1736 cells, but reduced proliferation via arresting cell cycle, and promoted cell migration and invasion in vitro. Combination treatment with S100A4 knockdown and vemurafenib reduced cell proliferation, migration and invasion in vitro compared to the S100A4 knockdown or Vemurafenib alone. Vemurafenib treatment resulted in a transient inhibition of pERK expression and gradually activation of pAKT expression, but quickly recovery from ERK1/2 activation inhibition by vemurafenib treatment in 4 h for SW1736 and 8505C cells. Combined treatment completely inhibited ERK1/2 and AKT activation during 48 h. In an in vivo mouse model of SW1736 and 8505C, vemurafenib treatment alone did not significantly inhibit tumor growth in both of the tumors, but inhibited tumor growth in combined groups.
Conclusion:
Our results show S100A4 knockout alone inhibits ATC cells (rich endogenous S100A4) survival and invasion, regardless of the BRAFV600E status, and potentiates the effect of vemurafenib on tumor regression in vitro and in vivo. In addition, S100A4 knockout potently inhibits the recovery from ERK1/2 activation inhibition and the AKT activation following vemurafenib treatment and reversed the vemurafenib resistance. This therapeutic combination may be of benefit in patients with ATC.
Insights
Targeting S100A4 in anaplastic thyroid cancer (ATC) with vemurafenib overcomes drug resistance. This combination therapy inhibits tumor growth and invasion, offering a potential new treatment for this lethal cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Anaplastic thyroid cancer (ATC) is a highly lethal malignancy with limited therapeutic options.
- The BRAFV600E mutation is present in 25% of ATC cases, and while vemurafenib shows promise, drug resistance is a significant challenge.
- Combination therapy is needed to overcome vemurafenib resistance in ATC.
Purpose of the Study:
- To investigate the role of S100A4 in anaplastic thyroid cancer.
- To evaluate the efficacy of combining S100A4 knockout with vemurafenib in preclinical ATC models.
- To elucidate the molecular mechanisms underlying the combination therapy's effect on vemurafenib resistance.
Main Methods:
- Utilized ATC cell lines (BRAFV600E-mutant and wild-type) for in vitro studies.
- Assessed cell growth, apoptosis, invasion, and migration using assays like MTT, Annexin-V-FITC, and Transwell.
- Analyzed protein expression (S100A4, pERK, pAKT, RhoA/ROCK1/2) via Western blot and conducted in vivo studies with a mouse tumor model.
Main Results:
- S100A4 knockout alone inhibited ATC cell proliferation and invasion by downregulating pAKT and pERK signaling.
- Vemurafenib alone showed limited efficacy, reducing proliferation but promoting migration and invasion, and led to rapid recovery of ERK1/2 activation.
- Combination therapy significantly reduced proliferation, migration, and invasion, completely inhibited ERK1/2 and AKT activation, and suppressed tumor growth in vivo.
Conclusions:
- S100A4 knockout potentiates vemurafenib's anti-tumor effects in ATC, regardless of BRAFV600E status.
- The combination therapy overcomes vemurafenib resistance by inhibiting the reactivation of ERK1/2 and AKT signaling pathways.
- This S100A4-targeted combination therapy represents a promising strategy for treating anaplastic thyroid cancer.
Related Concept Videos
The Thyroid Gland
The follicles have a central cavity lined by simple cuboidal to squamous epithelial cells called follicular cells. These cells produce the glycoprotein...
Functions of Thyroid Hormones
TH is indispensable for the normal development and maturation of the skeletal, muscular, and nervous systems during fetal and childhood growth. It facilitates bone mineral turnover and regulates protein synthesis in developing tissues, contributing significantly to overall growth and...
Synthesis and Regulation of Thyroid Hormones
Upon reaching the thyroid gland, TSH stimulates the follicular cells' active uptake of iodide ions from the blood. The ions diffuse to the apical surface of the cells and are oxidized to iodine. The...
Sensitivity, Specificity, and Predicted Value
Sensitivity is the...
Sputum Studies II: Culture and Sensitivity
Sputum culture and sensitivity is a medical procedure used to diagnose bacterial infections in the respiratory tract and select the most appropriate antibiotics for treatment. This process involves analyzing sputum samples of thick and opaque secretions produced in the lungs and airways. These samples are collected from patients and then sent to the laboratory for analysis.
The test can identify various pathogens responsible for respiratory infections, including Streptococcus,...
Urine Studies II: Urine Culture and Sensitivity Test

