• Title/Summary/Keyword: anaplastic thyroid cancer cells

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In Vitro Evaluation of Anti-cancer Properties of Hongyoung on SNU-80 Anaplastic Thyroid Carcinoma Cell Line

  • Gaeun Kim;Eun-Jung Kim
    • Biomedical Science Letters
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    • v.29 no.4
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    • pp.321-329
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    • 2023
  • Anaplastic thyroid cancer has the highest mortality rate of all thyroid cancers and shows low responsiveness to most treatments. Hongyoung, a reddish-colored potato, is an excellent source of dietary polyphenol containing a large amount of anthocyanins, which has anti-cancer and anti-inflammatory effects. This study investigated the effects of Hongyoung extract on apoptosis and invasiveness in SNU-80 anaplastic thyroid cancer cells. The quantification of the total polyphenol content was done by spectrophotometric measurement. Cell growth was measured by using 2-(2-methoxy-4-nitrophenyl)-3-(4-nitrophenyl)-5-(2,4-disulfophenyl) 2H tetrazolium, monosodium salt (MTS) assay. Cell cycle was analyzed through FACS analysis. Induction of apoptosis in cells was investigated by annexin V staining using flow cytometer and the expression of caspase-3 and Poly (ADP-ribose) polymerase (PARP) through western blot. mRNA expression and protein activation of matrix metalloproteinases (MMP)-2/-9 were examined by RT-PCR and zymography. As a result, the TPC of Hongyoung was 292.43±8.42 mg gallic acid equivalent (GAE)/100 g dry extract. Hongyoung showed a dose-dependent cell growth inhibition, and the IC50 values was 1,000 ㎍/mL. sub-G1 phase was more than doubled compared to the control group, and S and G2/M phase arrest were also induced. Hongyoung induced apoptosis by increasing FITC-Annexin V-positive cells and increased the activation of caspase-3 (cleaved caspase-3) and PARP (fragmented PARP). Hongyoung significantly inhibited mRNA expression and protein activation of MMP-2/-9 in phorbol 12-myristate 13-acetate (PMA)-treated SNU-80 cells. Therefore, this study suggests the possibility of development of Hongyoung extract as an anti-cancer agent.

Anti-cancer Activity of Paclitaxel, Lenvatinib and Radiation Combination Therapy on Anaplastic Thyroid Cancer in Vitro and in Vivo (Paclitaxel, Lenvatinib 및 방사선 병용 요법의 역형성 갑상선암에서의 항암 작용)

  • Jun, Shiyeol;Kim, Soo Young;Kim, Seok-Mo;Park, Ki Cheong;Kim, Hee Jun;Chang, Ho Jin;Lee, Yong Sang;Chang, Hang-Seok;Park, Cheong Soo
    • Korean Journal of Head & Neck Oncology
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    • v.35 no.2
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    • pp.19-25
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    • 2019
  • Background/Objectives: Although anaplastic thyroid carcinoma (ATC) is rare, it is one of the deadliest forms of thyroid cancer. The fatality rate for ATC is high, and the survival rate at one year after diagnosis is <20%. The present study aimed to investigate the anti-tumor activities of paclitaxel, radiation, and tyrosine kinase inhibitor (TKI) combined therapy in anaplastic thyroid cancer cells both in vitro and in vivo and explore its effects on apoptotic cell death pathways. Materials & Methods: ATC cell line was exposed to TKI, lenvatinib in the presence or absence of paclitaxel with radiation, and cell viability was determined by MTT assay. Effects of the combined treatment on cell cycle and intracellular signaling pathways were assessed by flow cytometry and western blot analysis. The ATC cell line xenograft model was used to examine the anti-tumor activity in vivo. Results: Our data revealed that the combined administration of paclitaxel, TKI, and radiation decreased cell viability in ATC cells, and also significantly increased apoptotic cell death in these cells, as demonstrated by the cleavage of caspase-3 and DNA fragmentation. This combination therapy reduced anti-apoptotic factor levels in ATC cells, while significantly decreasing tumor volume and increasing survival in ATC xenografts. Conclusion: These results indicate that administering the combination of paclitaxel, TKI, and radiation therapy may exert significant anticancer effects in preclinical models, potentially suggesting a new clinical approach for treating patients with ATC.

Treatment of Human Thyroid Carcinoma Cells with the G47delta Oncolytic Herpes Simplex Virus

  • Wang, Jia-Ni;Xu, Li-Hua;Zeng, Wei-Gen;Hu, Pan;Rabkin, Samuel D.;Liu, Ren-Rin
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.3
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    • pp.1241-1245
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    • 2015
  • Background: Thyroid carcinoma is the most common malignancy of the endocrine organs. Although the majority of thyroid cancer patients experience positive outcomes, anaplastic thyroid carcinoma is considered one of the most aggressive malignancies. Current therapeutic regimens do not confer a significant survival benefit, and new therapies are urgently needed. Oncolytic herpes simplex virus (oHSV) may represent a promising therapy for cancer. In the present study, we investigated the therapeutic effects of a third-generation HSV vector, $G47{\Delta}$, on various human thyroid carcinoma cell lines in vitro. Two subcutaneous (s.c.) models of anaplastic thyroid carcinoma were also established to evaluate the in vivo anti-tumor efficacy of $G47{\Delta}$. Materials and Methods: The human thyroid carcinoma cell line ARO, FRO, WRO, and KAT-5, were infected with $G47{\Delta}$ at different multiplicities of infection (MOIs) in vitro. The survival rates of infected cells were calculated each day. Two s.c. tumor models were established using ARO and FRO cells in Balb/c nude mice, which were intratumorally (i.t.) treated with either $G47{\Delta}$ or mock. Tumor volumes and mouse survival times were documented. Results: $G47{\Delta}$ was highly cytotoxic to different types of thyroid carcinomas. For ARO, FRO, and KAT-5, greater than 30% and 80% of cells were killed at MOI=0.01 and MOI=0.1, respectively on day 5. WRO cells displayed modest sensitivity to $G47{\Delta}$, with only 21% and 38% of cells killed. In the s.c. tumor model, both of the anaplastic thyroid carcinoma cell lines (ARO and FRO) were highly sensitive to $G47{\Delta}$; $G47{\Delta}$ significantly inhibited tumor growth and prolonged the survival of mice bearing s.c. ARO and FRO tumors. Conclusions: The oHSV $G47{\Delta}$ can effectively kill different types of human thyroid carcinomas in vitro. $G47{\Delta}$ significantly inhibited growth of anaplastic thyroid carcinoma in vivo and prolonged animal survival. Therefore, $G47{\Delta}$ may hold great promise for thyroid cancer patients.

MiR-99a Inhibits Cell Proliferation and Tumorigenesis through Targeting mTOR in Human Anaplastic Thyroid Cancer

  • Huang, Hou-Gang;Luo, Xi;Wu, Shuai;Jian, Bin
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.12
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    • pp.4937-4944
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    • 2015
  • MicroRNAs (miRNAs) are emerging as critical regulators in carcinogenesis and tumor progression. Recently, miR-99a has been reported as a tumor suppressor gene in various human cancers, but its functions in the context of anaplastic thyroid cancer (ATC) remain unknown. In this study, we reported that miR-99a was commonly downregulated in ATC tissue specimens and cell lines with important functional consequences. Overexpression of miR-99a not only dramatically reduced ATC cell viability by inducing cell apoptosis and accumulation of cells at G1 phase, but also inhibited tumorigenicity in vivo. We then screened and identified a novel miR-99a target, mammalian target of rapamycin (mTOR), and it was further confirmed by luciferase assay. Up-regulation of miR-99a would markedly reduce the expression of mTOR and its downstream phosphorylated proteins (p-4E-BP1 and p-S6K1). Similar to restoring miR-99a expression, mTOR down-regulation suppressed cell viability and increased cell apoptosis, whereas restoration of mTOR expression significantly reversed the miR-99a antitumor activity and the inhibition of mTOR/p-4E-BP1/p-S6K1 signal pathway profile. In clinical specimens and cell lines, mTOR was commonly overexpressed and its protein levels were statistically inversely correlated with miR-99a expression. Taken together, our results demonstrated for the first time that miR-99a functions as a tumor suppressor and plays an important role in inhibiting the tumorigenesis through targeting the mTOR/p-4E-BP1/p-S6K1 pathway in ATC cells. Given these, miR-99a may serve as a novel prognostic/diagnostic and therapeutic target for treating ATC.

Antineoplastic Effect of Several Herbal Medicine Mixtures on SNU-80 Anaplastic Thyroid Carcinoma Cell Line (수종 한약 복합물의 역형성갑상선암세포 SNU-80에 대한 항암효과)

  • Yeo, Hyun-Soo;Lee, Min-Hye;Choi, You-Kyung;Jun, Chan-Young;Park, Jong-Hyeong
    • The Journal of Internal Korean Medicine
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    • v.35 no.4
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    • pp.416-427
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    • 2014
  • Objectives: The purpose of this study was to investigate the antineoplastic effect of several herbal medicine mixtures (compositions of Astragalus membranaceu, Angelica gigas, Trichosanthes kirilowii, Panax ginseng, Rhus verniciflua Stokes) on the SNU-80 anaplastic thyroid carcinoma cell line. Methods: MTT assay was used to examine whether our herbal medicine mixtures decreased cell growth rate of SNU-80. Wound healing assay and Transwell invasion assay was performed to investigate whether our herbal medicine mixtures affect the migration and invasion of anaplastic cancer cells, SNU-80. ELISA assay was performed to know if our herbal medicine mixtures suppressed the expression of pro-invasive molecules, such as vascular endothelial growth factor (VEGF) and matrix metalloproteinase-2 (MMP-2) secreted from SNU-80. Results: MTT assay demonstrated that A. membranaceus:A. gigas:T. kirilowii=1:1:1 or 3:1:1, A. membranaceus:A. gigas :T. kirilowii:P. ginseng=1:1:1:1 or 3:1:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng:R. verniciflua Stokes=1:1:1:1:1 or 3:1:1:1:1 strongly suppressed the growth of SNU-80. Wound healing assay demonstrated that A. membranaceus:A. gigas=3:1, A. membranaceus:A. gigas:T. kirilowii=1:1:1 or 3:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng=1:1:1:1 or 3:1:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng:R. verniciflua Stokes=1:1:1:1:1 or 3:1:1:1:1 inhibited the migration of SNU-80. Transwell invasion assay demonstrated that A. membranaceus:A. gigas=1:1, A. membranaceus:A. gigas:T. kirilowii =1:1:1 or 3:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng=1:1:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng :R. verniciflua Stokes=1:1:1:1:1 or 3:1:1:1:1 inhibited the invasion of SNU-80. ELISA assay demonstrated that A. membranaceus :A. gigas:T. kirilowii=1:1:1 or 3:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng:R. verniciflua Stokes=1:1:1:1:1 suppressed the expression of VEGF. Also, A. membranaceus:A. gigas=1:1, A. membranaceus:A. gigas:T. kirilowii=1:1:1 or 3:1:1, A. membranaceus :A. gigas:T. kirilowii:P. ginseng=1:1:1:1 or 3:1:1:1, A. membranaceus:A. gigas:T. kirilowii:P. ginseng:R. verniciflua Stokes =1:1:1:1:1 or 3:1:1:1:1 suppressed the expression of MMP-2. Conclusions: The results obtained in this study suggest that several herbal medicine mixtures suppresse the growth and inhibit the migration and invasion of SNU-80, which is anaplastic thyroid cancer cells. Especially, A. membranaceus:A. gigas: T. kirilowii=1:1:1 mixture had a stronger anti-cancer effect.

Antineoplastic Effect of Several Herbal Medicines on SNU-80 Anaplastic Thyroid Carcinoma Cell Line (황기, 당귀, 칠피, 천화분의 역형성갑상선암세포 SNU-80에 대한 항암효과)

  • Yeo, Hyun Soo;Lee, Min Hye;Ko, Seong Gyu;Choi, You Kyung;Jun, Chan Young;Park, Jong Hyeong
    • Journal of Society of Preventive Korean Medicine
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    • v.18 no.1
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    • pp.83-92
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    • 2014
  • Objective : This study was performed to investigate the antineoplastic effect of Astragalus membranaceus, Angelica gigas, Rhus verniciflua Stokes and Trichosanthes kirilowii on SNU-80 anaplastic thyroid carcinoma cell line. Method : We examined whether our herbal medicines decreases cell growth rate of SNU-80 using MTT assay. We performed western blot analysis to verify that our herbal medicines induces apoptosis via caspase-dependent mechanism. We also performed wound healing assay and transwell invasion assay to investigate whether our herbal medicines affects the migration and invasion of anaplastic cancer cells, SNU-80. We also carried out ELISA assay to know our herbal medicines suppresses the expression of proinvasive molecules, such as VEGF and MMP-2 secreted from SNU-80. Results : MTT assay demonstrates that Angelica gigas, Rhus verniciflua Stokes, and Trichosanthes kirilowii suppressed strongly the growth of SNU-80. Western blot analysis demonstrates that Trichosanthes kirilowii induces apoptosis activating the cleavages of caspases (caspase-8, caspase-3) and PARP. Wound healing assay demonstrates that Rhus verniciflua Stokes, and Trichosanthes kirilowii inhibited the migration of SNU-80. Transwell invasion assay demonstrates that Rhus verniciflua Stokes, and Trichosanthes kirilowii inhibited the invasion of SNU-80. Elisa assay demonstrates that Astragalus membranaceus, Angelica gigas, Rhus verniciflua Stokes, and Trichosanthes kirilowii suppressed the expression of VEGF and MMP-2. Conclusion : We could conclude that several herbal medicines suppresses the growth and inhibits the migration and invasion of SNU-80 which is anaplastic thyroid cancer cells. Especially, Rhus verniciflua Stokes, Trichosanthes kirilowii had stronger anti-cancer effect suggesting that we can apply them to treat anaplastic thyroid cancer.

What's New in Molecular Targeted Therapies for Thyroid Cancer? (갑상선암 표적치료의 최신지견)

  • Min, Seonyoung;Kang, Hyunseok
    • Korean Journal of Head & Neck Oncology
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    • v.37 no.2
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    • pp.1-9
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    • 2021
  • Thyroid cancer refers to various cancers arising from thyroid gland. Differentiated thyroid cancers (DTCs) include papillary, follicular, and Hurthle cell carcinomas and represent cancers retain normal thyroid functions such as iodine uptake. Radioactive iodine (RAI) is generally used for upfront treatment of metastatic DTCs, but RAI refractory DTCs remain to be clinical challenges. Sorafenib and lenvatinib were approved for the treatment of RAI refractory DTCs and more recently, genomics-based targeted therapies have been developed for NTRK and RET gene fusion-positive DTCs. Poorly differentiated and anaplastic thyroid cancers (ATCs) are extremely challenging diseases with aggressive courses. BRAF/MEK inhibition has been proven to be highly effective in BRAF V600E mutation-positive ATCs and immune checkpoint inhibitors have shown promising activities. Medullary thyroid cancers, which arise from parafollicular cells of thyroid, represent a unique subset of thyroid cancer and mainly driven by RET mutation. In addition to vandetanib and cabozantinib, highly specific RET inhibitors such as selpercatinib and pralsetinib have demonstrated impressive activity and are in clinical use.

Can the Serum Level of Myostatin be Considered as an Informative Factor for Cachexia Prevention in Patients with Medullary Thyroid Cancer?

  • Hedayati, Mehdi;Nozhat, Zahra;Hannani, Masoomeh
    • Asian Pacific Journal of Cancer Prevention
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    • v.17 no.sup3
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    • pp.119-123
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    • 2016
  • Thyroid cancer, the most common endocrine neoplasia, consists of four main types of carcinomas: papillary, follicular, and anaplastic, all with thyroid follicular origin, and medullary thyroid cancer (MTC) related to para-follicular cells. Cronic diseases such as diverse cancers may be associated with cachexia, especially at advanced stage. Cancer-induced cachexia is associated with diminished quality of life, functional performance, reduced response to antitumor therapy, and increased morbidity and mortality. Myostatin (Mst) is one of the outstanding molecules in the skeletal muscle loss process in cancer and it may be released by both skeletal muscle and cachexia-inducing tumors. Recently changes in serum levels of Mst have been identified as an important factor of cancer-induced cachexia. The goal of this study was to assessserum Mst levels in MTC patients. In this descriptive and case-control study, 90 participants were selected, comprising 45 MTC patients (20 males, $29{\pm}13.9years$, 25 females, $29{\pm}14.5years$) and 45 control individuals (25 males, $23.1{\pm}11.6years$, 20 females, $31.5{\pm}14.4years$). Serum Mst was determined using an ELISA kit and body mass index (BMI) was calculated by weight and height measurements. The Kolmogorov Simonov test showed a normal distribution for log transformed Mst serum levels in both case and control groups. Geometric means were 5.9 and 8.2 ng/ml respectively, and a significant difference was found according to the independent t-test results (P<0.01). There was also a significant difference mean of Mst between females in control and MTC groups, but not for the males. Pearson correlation test showed no correlation between age and BMI with Mst serum levels. The findings of this study support the hypothesis that Mst serum levels may have a potential ability for early diagnosis of cachexia in MTC patients, especially in females.

Platelet-Derived Growth Factor Receptor-α Subunit Targeting Suppresses Metastasis in Advanced Thyroid Cancer In Vitro and In Vivo

  • Lin, Ching-Ling;Tsai, Ming-Lin;Chen, Yu-hsin;Liu, Wei-Ni;Lin, Chun-Yu;Hsu, Kai-Wen;Huang, Chien-Yu;Chang, Yu-Jia;Wei, Po-Li;Chen, Shu-Huey;Huang, Li-Chi;Lee, Chia-Hwa
    • Biomolecules & Therapeutics
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    • v.29 no.5
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    • pp.551-561
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    • 2021
  • Thyroid cancer is the most common endocrine malignancy. Patients with well-differentiated thyroid cancers, such as papillary and follicular cancers, have a favorable prognosis. However, poorly differentiated thyroid cancers, such as medullary, squamous and anaplastic advanced thyroid cancers, are very aggressive and insensitive to radioiodine treatment. Thus, novel therapies that attenuate metastasis are urgently needed. We found that both PDGFC and PDGFRA are predominantly expressed in thyroid cancers and that the survival rate is significantly lower in patients with high PDGFRA expression. This finding indicates the important role of PDGF/PDGFR signaling in thyroid cancer development. Next, we established a SW579 squamous thyroid cancer cell line with 95.6% PDGFRA gene insertion and deletions (indels) through CRISPR/Cas9. Protein and invasion analysis showed a dramatic loss in EMT marker expression and metastatic ability. Furthermore, xenograft tumors derived from PDGFRA geneedited SW579 cells exhibited a minor decrease in tumor growth. However, distant lung metastasis was completely abolished upon PDGFRA gene editing, implying that PDGFRA could be an effective target to inhibit distant metastasis in advanced thyroid cancers. To translate this finding to the clinic, we used the most relevant multikinase inhibitor, imatinib, to inhibit PDGFRA signaling. The results showed that imatinib significantly suppressed cell growth, induced cell cycle arrest and cell death in SW579 cells. Our developed noninvasive apoptosis detection sensor (NIADS) indicated that imatinib induced cell apoptosis through caspase-3 activation. In conclusion, we believe that developing a specific and selective targeted therapy for PDGFRA would effectively suppress PDGFRA-mediated cancer aggressiveness in advanced thyroid cancers.

Mechanism of Resistance and Epithelial to Mesenchymal Transition of BRAF(V600E) Mutation Thyroid Anaplastic Cancer to BRAF(V600E) Inhibition Through Feedback Activation of EGFR (BRAF(V600E) 돌연변이 갑상선 역형성암에서 BRAF(V600E) 억제에 의한 EGFR 발현 증가가 표적치료에 대한 저항성발현과 상피-간질세포이행과정에 미치는 영향분석)

  • Byeon, Hyung Kwon;Na, Hwi Jung;Yang, Yeon Ju;Park, Jae Hong;Kwon, Hyeong Ju;Chang, Jae Won;Ban, Myung Jin;Kim, Won Shik;Shin, Dong Yeob;Lee, Eun Jig;Koh, Yoon Woo;Choi, Eun Chang
    • Korean Journal of Head & Neck Oncology
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    • v.30 no.2
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    • pp.53-61
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    • 2014
  • Background and Objectives : Anaplastic thyroid carcinoma(ATC) is a rare but highly aggressive thyroid malignancy that is associated with an extremely poor survival despite the best multidisciplinary care. BRAF(V600E) mutation is detected in about a quarter of ATC, but unlike its high treatment response to selective BRAF inhibitor (PLX4032) in metastatic melanoma, the treatment response of ATC is reported to be low. The purpose of this study is to investigate the innate resistance mechanism responsible for this low treatment response to BRAF inhibitor and its effect on epithelial-mesenchymal transition(EMT). Materials and Methods : Two ATP cell lines, 8505C and FRO were selected and treated with PLX4032 and its drug sensitivity and effects on cell migration and EMT were examined and compared. Further investigation on the changes in signals responsible for the different treatment response to PLX4032 was carried out and the same experiment was performed on both orthotopic and ectopic xenograft mouse models. Results : FRO cell line was more sensitive to PLX4032 treatment compared to 8505C cell line. The resistance to BRAF inhibition in 8505C was due to increased expression of EGFR. Effective inhibition of both EGFR and p-AKT was achieved after dual treatment with BRAF inhibitor(PLX4032) and EGFR inhibitor(Erlotinib). Similar results were confirmed on in vivo study. Conclusion : EGFR-mediated reactivation of the PI3K/AKT pathway and MAPK pathway contributes to the relative insensitivity of BRAF(V600E) mutant ATC cells to PLX4032. Dual inhibition of BRAF and EGFR leads to sustained treatment response including cell invasiveness.