• 제목/요약/키워드: Tyrosine kinase inhibitors

검색결과 147건 처리시간 0.027초

Fluorometric Detection of Low-Abundance EGFR Exon 19 Deletion Mutation Using Tandem Gene Amplification

  • Kim, Dong-Min;Zhang, Shichen;Kim, Minhee;Kim, Dong-Eun
    • Journal of Microbiology and Biotechnology
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    • 제30권5호
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    • pp.662-667
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    • 2020
  • Epidermal growth factor receptor (EGFR) mutations are not only genetic markers for diagnosis but also biomarkers of clinical-response against tyrosine kinase inhibitors (TKIs) in non-small cell lung cancer (NSCLC). Among the EGFR mutations, the in-frame deletion mutation in EGFR exon 19 kinase domain (EGFR exon 19-del) is the most frequent mutation, accounting for about 45% of EGFR mutations in NSCLCs. Development of sensitive method for detecting the EGFR mutation is highly required to make a better screening for drug-response in the treatment of NSCLC patients. Here, we developed a fluorometric tandem gene amplification assay for sensitive detection of low-abundance EGFR exon 19-del mutant genomic DNA. The method consists of pre-amplification with PCR, thermal cycling of ligation by Taq ligase, and subsequent rolling circle amplification (RCA). PCR-amplified DNA from genomic DNA samples was used as splint DNA to conjugate both ends of linear padlock DNA, generating circular padlock DNA template for RCA. Long stretches of ssDNA harboring multiple copies of G-quadruplex structure was generated in RCA and detected by thioflavin T (ThT) fluorescence, which is specifically intercalated into the G-quadruplex, emitting strong fluorescence. Sensitivity of tandem gene amplification assay for detection of the EGFR exon 19-del from gDNA was as low as 3.6 pg, and mutant gDNA present in the pooled normal plasma was readily detected as low as 1% fraction. Hence, fluorometric detection of low-abundance EGFR exon 19 deletion mutation using tandem gene amplification may be applicable to clinical diagnosis of NSCLC patients with appropriate TKI treatment.

Deoxypodophyllotoxin Inhibits Cell Growth and Induces Apoptosis by Blocking EGFR and MET in Gefitinib-Resistant Non-Small Cell Lung Cancer

  • Kim, Han Sol;Oh, Ha-Na;Kwak, Ah-Won;Kim, Eunae;Lee, Mee-Hyun;Seo, Ji-Hye;Cho, Seung-Sik;Yoon, Goo;Chae, Jung-Il;Shim, Jung-Hyun
    • Journal of Microbiology and Biotechnology
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    • 제31권4호
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    • pp.559-569
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    • 2021
  • As one of the major types of lung cancer, non-small cell lung cancer (NSCLC) accounts for the majority of cancer-related deaths worldwide. Treatments for NSCLC includes surgery, chemotherapy, and targeted therapy. Among the targeted therapies, resistance to inhibitors of the epidermal growth factor receptor (EGFR) is common and remains a problem to be solved. MET (hepatocyte growth factor receptor) amplification is one of the major causes of EGFR-tyrosine kinase inhibitor (TKI) resistance. Therefore, there exists a need to find new and more efficacious therapies. Deoxypodophyllotoxin (DPT) extracted from Anthriscus sylvestris roots exhibits various pharmacological activities including anti-inflammation and anti-cancer effects. In this study we sought to determine the anti-cancer effects of DPT on HCC827GR cells, which are resistant to gefitinib (EGFR-TKI) due to regulation of EGFR and MET and their related signaling pathways. To identify the direct binding of DPT to EGFR and MET, we performed pull-down, ATP-binding, and kinase assays. DPT exhibited competitive binding with ATP against the network kinases EGFR and MET and reduced their activities. Also, DPT suppressed the expression of p-EGFR and p-MET as well as their downstreat proteins p-ErbB3, p-AKT, and p-ERK. The treatment of HCC827GR cells with DPT induced high ROS generation that led to endoplasmic-reticulum stress. Accordingly, loss of mitochondrial membrane potential and apoptosis by multi-caspase activation were observed. In conclusion, these results demonstrate the apoptotic effects of DPT on HCC827GR cells and signify the potential of DPT to serve as an adjuvant anti-cancer drug by simultaneously inhibiting EGFR and MET.

Correlation between EGFR Gene Mutations and Lung Cancer: a Hospital-Based Study

  • Kavitha, Matam;Iravathy, Goud;Adi Maha, Lakshmi M;Ravi, V;Sridhar, K;Vijayanand, Reddy P;Chakravarthy, Srinivas;Prasad, SVSS;Tabassum, Shaik Nazia;Shaik, Noor Ahmad;Syed, Rabbani;Alharbi, Khalid Khalaf;Khan, Imran Ali
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권16호
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    • pp.7071-7076
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    • 2015
  • Epidermal growth factor receptor (EGFR) is one of the targeted molecular markers in many cancers including lung malignancies. Gefitinib and erlotinib are two available therapeutics that act as specific inhibitors of tyrosine kinase (TK) domains. We performed a case-control study with formalin-fixed paraffin-embedded tissue blocks (FFPE) from tissue biopsies of 167 non-small cell lung carcinoma (NSCLC) patients and 167 healthy controls. The tissue biopsies were studied for mutations in exons 18-21 of the EGFR gene. This study was performed using PCR followed by DNA sequencing. We identified 63 mutations in 33 men and 30 women. Mutations were detected in exon 19 (delE746-A750, delE746-T751, delL747-E749, delL747-P753, delL747-T751) in 32 patients, exon 20 (S786I, T790M) in 16, and exon 21 (L858R) in 15. No mutations were observed in exon 18. The 63 patients with EFGR mutations were considered for upfront therapy with oral tyrosine kinase inhibitor (TKI) drugs and have responded well to therapy over the last 15 months. The control patients had no mutations in any of the exons studied. The advent of EGFR TKI therapy has provided a powerful new treatment modality for patients diagnosed with NSCLC. The study emphasizes the frequency of EGFR mutations in NSCLC patients and its role as an important predictive marker for response to oral TKI in the south Indian population.

Predictive Factors for Switched EGFR-TKI Retreatment in Patients with EGFR-Mutant Non-Small Cell Lung Cancer

  • Kwon, Byoung Soo;Park, Ji Hyun;Kim, Woo Sung;Song, Joon Seon;Choi, Chang-Min;Rho, Jin Kyung;Lee, Jae Cheol
    • Tuberculosis and Respiratory Diseases
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    • 제80권2호
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    • pp.187-193
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    • 2017
  • Background: Third-generation tyrosine kinase inhibitors of the epidermal growth factor receptor (EGFR-TKIs) have proved efficacious in treating non-small cell lung cancer (NSCLC) patients with acquired resistance resulting from the T790M mutation. However, since almost 50% patients with the acquired resistance do not harbor the T790M mutation, retreatment with first- or second-generation EGFR-TKIs may be a more viable therapeutic option. Here, we identified positive response predictors to retreatment, in patients who switched to a different EGFR-TKI, following initial treatment failure. Methods: This study retrospectively reviewed the medical records of 42 NSCLC patients with EGFR mutations, whose cancers had progressed following initial treatment with gefitinib or erlotinib, and who had switched to a different first-generation EGFR-TKI during subsequent retreatment. To identify high response rate predictors in the changed EGFR-TKI retreatment, we analyzed the relationship between clinical and demographic parameters, and positive clinical outcomes, following retreatment with EGFR-TKI. Results: Overall, 30 (71.4%) patients received gefitinib and 12 (28.6%) patients received erlotinib as their first EGFR-TKI treatment. Following retreatment with a different EGFR-TKI, the overall response and disease control rates were 21.4% and 64.3%, respectively. There was no significant association between their overall responses. The median progression-free survival (PFS) after retreatment was 2.0 months. However, PFS was significantly longer in patients whose time to progression was ${\geq}10months$ following initial EGFR-TKI treatment, who had a mutation of exon 19, or whose treatment interval was <90 days. Conclusion: In patients with acquired resistance to initial EGFR-TKI therapy, switched EGFR-TKI retreatment may be a salvage therapy for individuals possessing positive retreatment response predictors.

Early or Late Gefitinib, Which is Better for Survival? - Retrospective Analysis of 228 Korean Patients with Advanced or Metastatic NSCLC

  • Kim, Dong-Gun;Kim, Min-Kyoung;Bae, Sung-Hwa;Koh, Sung-Ae;Park, Sung-Woo;Kim, Hyun-Je;Kim, Myung-Jin;Jang, Hyo-Jin;Lee, Kyung-Hee;Lee, Kwan-Ho;Chung, Jin-Hong;Shin, Kyung-Chul;Ryoo, Hun-Mo;Hyun, Myung-Soo
    • Journal of Yeungnam Medical Science
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    • 제28권1호
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    • pp.31-44
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    • 2011
  • Background: The optimal timing of treatment with EGFR-tyrosine kinase inhibitors (EGFR-TKI) in NSCLC patients has not yet been determined. Methods: We separated 228 patients with advanced /metastatic NSCLC treated with gefitinib into an early gefitinib group (patients who received gefitinib as first- or second-line treatment) and a delayed gefitinib group (patients who received gefitinib as third or fourth-line treatment) and attempted to determine whether the timing of gefitinib treatment affected clinical outcomes. Results: Median overall survival (OS), progression free survival (PFS), and median OS from first-line treatment of advanced/metastatic disease (OSt) for 111 patients in the early gefitinib group were 6.2 months, 3.3 months, and 11.6 months. However, median OS, PFS, and OSt for 84 patients in the delayed gefitinib group were 7.8 months, 2.3 months, and 22.7 months. No differences in OS and PFS were observed between the 2 groups. However, OSt was significantly longer in the delayed gefitnib group. Timing of gefitinib therapy was one of the independent predictors of OSt. Hb ${\geq}$ 10 g/dl, and having never smoked, and ECOG performance status ${\leq}1$ were independent predictors of better PFS. Conclusion:Deferral of gefitinib therapy in patientswith advanced ormetastatic NSCLC may be preferable if they are able to tolerate chemotherapy.

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Genistein이 사람 섬유육종 세포주 증식 및 Membrane Type 1-Matrix Metalloproteinase (MT1-MMP) mRNA 발현에 미치는 영향 (THE EFFECT OF THE GENISTEIN ON THE PROLIFERATION OF HT1080 AND EXPRESSION OF MEMBRANE TYPE 1-MATRIX METALLOPROTEINASE (MT1-MMP) mRNA)

  • 강진한;명훈;김명진
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제27권4호
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    • pp.314-320
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    • 2001
  • Matrix metalloproteinases have long been viewed as ideal candidates for proteinases that enables tumor cells to permeated basement membrane defenses and invade surrounding tissue. There is growing evidence that the MMPs have an expanded role, as they are important for the creation and maintenance of a microenvironment that facilitates growth and angiogenesis of tumors at primary and metastatic sites. MT-MMPs are not secreted but instead remaining attached to cell surfaces. Although not all of the MT-MMPs are fully characterized, MT-MMPs have important role in localizing and activating secreted MMPs. The MMP genes are transcriptionally responsive to a wide variety of oncogene, growth factors, cytokine, and hormones. Currently, a number of MMP inhibitors are being developed and some have reached clinical trials as anti-metastatic or anti-cancer therapies. MT1-MMP is involved in the activation of proMMP-2. MT1-MMP is significant not only as a tumor marker but as a new target for chemotherapy against cancer. The purpose of this study was to evaluate the effects of protein kinase C inhibitor(genistein) on the proliferation of HT1080 and expression of MT1-MMP mRNA. Human fibrosarcoma cell line HT1080 was cultured and divided 2 groups. The experimental group was treated with $100{\mu}M$ genistein and incubated 12h, 24h for $[3^H]-thymidine$ uptake assay and northern hybridization individually. And the control group was treated with same amount of PBS for the above procedures. $[3^H]-thymidine$ incorporation was measured with ${\beta}$ ray detector. And RT-PCR and northern blotting for MT1-MMP mRNA was performed. The results were as follows 1. $[3^H]-thymidine$ uptake was reduced in experimental group with statistical significance. 2. MT1-MMP mRNA expression was significantly reduced in experimental group. These results showed that protein kinase C inhibitor (genistein) inhibited proliferation of HT1080 and almost completely blocked transcription of MT1-MMP mRNA. So, it is possible to use the protein kinase inhibitor (genistein) as anti-metastatic and anti-proliferative agent.

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Destabilization of TNF-α mRNA by Rapamycin

  • Park, Jong-Woo;Jeon, Ye-Ji;Lee, Jae-Cheol;Ahn, So-Ra;Ha, Shin-Won;Bang, So-Young;Park, Eun-Kyung;Yi, Sang-Ah;Lee, Min-Gyu;Han, Jeung-Whan
    • Biomolecules & Therapeutics
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    • 제20권1호
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    • pp.43-49
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    • 2012
  • Stimulation of mast cells through the high affinity IgE receptor (Fc${\varepsilon}$RI) induces degranulation, lipid mediator release, and cytokine secretion leading to allergic reactions. Although various signaling pathways have been characterized to be involved in the Fc${\varepsilon}$RI-mediated responses, little is known about the precious mechanism for the expression of tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) in mast cells. Here, we report that rapamycin, a specific inhibitor of mammalian target of rapamycin (mTOR), reduces the expression of TNF-${\alpha}$ in rat basophilic leukemia (RBL-2H3) cells. IgE or specific antigen stimulation of RBL-2H3 cells increases the expression of TNF-${\alpha}$ and activates various signaling molecules including S6K1, Akt and p38 MAPK. Rapamycin specifically inhibits antigeninduced TNF-${\alpha}$ mRNA level, while other kinase inhibitors have no effect on TNF-${\alpha}$ mRNA level. These data indicate that mTOR signaling pathway is the main regulation mechanism for antigen-induced TNF-${\alpha}$ expression. TNF-${\alpha}$ mRNA stability analysis using reporter construct containing TNF-${\alpha}$ adenylate/uridylate-rich elements (AREs) shows that rapamycin destabilizes TNF-${\alpha}$ mRNA via regulating the AU-rich element of TNF-${\alpha}$ mRNA. The antigen-induced activation of S6K1 is inhibited by specific kinase inhibitors including mTOR, PI3K, PKC and $Ca^{2+}$chelator inhibitor, while TNF-${\alpha}$ mRNA level is reduced only by rapamycin treatment. These data suggest that the effects of rapamycin on the expression of TNF-${\alpha}$ mRNA are not mediated by S6K1 but regulated by mTOR. Taken together, our results reveal that mTOR signaling pathway is a novel regulation mechanism for antigen-induced TNF-${\alpha}$ expression in RBL-2H3 cells.

Octyl Gallate Inhibits ATP-induced Intracellular Calcium Increase in PC12 Cells by Inhibiting Multiple Pathways

  • Guo, Yujie;Hong, Yi-Jae;Jang, Hyun-Jong;Kim, Myung-Jun;Rhie, Duck-Joo;Jo, Yang-Hyeok;Hahn, Sang-June;Yoon, Shin-Hee
    • The Korean Journal of Physiology and Pharmacology
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    • 제14권1호
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    • pp.21-28
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    • 2010
  • Phenolic compounds affect intracellular free $Ca^{2+}$ concentration ($[Ca^{2+}]_i$) signaling. The study examined whether the simple phenolic compound octyl gallate affects ATP-induced $Ca^{2+}$ signaling in PC12 cells using fura-2-based digital $Ca^{2+}$ imaging and whole-cell patch clamping. Treatment with ATP ($100\;{\mu}M$) for 90 s induced increases in $[Ca^{2+}]_i$ in PC12 cells. Pretreatment with octyl gallate (100 nM to $20\;{\mu}M$) for 10 min inhibited the ATP-induced $[Ca^{2+}]_i$ response in a concentration-dependent manner ($IC_{50}=2.84\;{\mu}M$). Treatment with octyl gallate ($3\;{\mu}M$) for 10 min significantly inhibited the ATP-induced response following the removal of extracellular $Ca^{2+}$ with nominally $Ca^{2+}$-free HEPES HBSS or depletion of intracellular $Ca^{2+}$ stores with thapsigargin ($1\;{\mu}M$). Treatment for 10 min with the L-type $Ca^{2+}$ channel antagonist nimodipine ($1\;{\mu}M$) significantly inhibited the ATP-induced $[Ca^{2+}]_i$ increase, and treatment with octyl gallate further inhibited the ATP-induced response. Treatment with octyl gallate significantly inhibited the $[Ca^{2+}]_i$ increase induced by 50 mM KCI. Pretreatment with protein kinase C inhibitors staurosporin (100 nM) and GF109203X (300 nM), or the tyrosine kinase inhibitor genistein ($50\;{\mu}M$) did not significantly affect the inhibitory effects of octyl gallate on the ATP-induced response. Treatment with octyl gallate markedly inhibited the ATP-induced currents. Therefore, we conclude that octyl gallate inhibits ATP-induced $[Ca^{2+}]_i$ increase in PC12 cells by inhibiting both non-selective P2X receptor-mediated influx of $Ca^{2+}$ from extracellular space and P2Y receptor-induced release of $Ca^{2+}$ from intracellular stores in protein kinase-independent manner. In addition, octyl gallate inhibits the ATP-induced $Ca^{2+}$ responses by inhibiting the secondary activation of voltage-gated $Ca^{2+}$ channels.

The Interaction between Epidermal Growth Factor (EGF) and Follicular Stimulating Hormone (FSH) on Nuclear Maturation of Mouse Oocytes by Using Their Inhibitor

  • Cha, Soo-Kyung;Kim, Tae-Hyung;Eum, Jin-Hee;Park, Kang-Hee;Park, Eun-A;Kim, Seung-Bum;Chung, Mi-Kyung;Lee, Dong-Ryul;Ko, Jung-Jae
    • 한국수정란이식학회:학술대회논문집
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    • 한국수정란이식학회 2002년도 국제심포지엄
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    • pp.113-113
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    • 2002
  • The stimulatory effect of EGF and FSH on oocyte maturation have been reported in various mammalian species. And some reports presented FSH enhanced the effect of EGF on oocyte maturation. But, the interaction between EGF and FSH on nuclear maturation of mammalian oocytes is not fully understood. We observed the effect of EGF and FSH on nuclear maturation during in vitro maturation of mouse oocytes. Also, we examined the interaction between EGF and FSH on nuclear maturation of mouse oocytes using the EGFR inhibitor or FSH inhibitor. Germinal vesicle (GV) stage oocytes were obtained from 3-4weeks PMSG primed BCFI hybrid mice and cultured in TCM-199 medium with 0.4%PVP supplemented with/without EGF (1ng/ml), FSH (1ug/ml), EGFR specific tyrosine kinase inhibitors: Tyrphostin AG 1478 (500nM), MAP kinase kinase inhibitor : U0126 (20uM) or PD 98059 (100uM) for 14-l5hr. Rapid staining method were used for the assessment of nuclear maturation. Nuclear maturation rates of EGF indjor FSH-treated group were significantly higher than those of control group. Treatment of EGFR inhibitor significantly block the nuclear maturation of GV oocyte in EGF-treated group, but it did not block those of GV oocyte in FSH-treated or FSH and EGF-treated group. Treatment of FSH inhibitor(U0126, PD98059) significantly block the nuclear maturation of EGF-treated group, FSH-treated and FSH and EGF-treated group. These results show that EGF has a stimulatory effect as well as different action pathway with FSH on in-vitro maturation of mouse oocyte in vitro. Therefore, further studies will be needed to find the signaling pathway of EGF associated with nuclear maturation.

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K562 세포의 방사선 감수성 변화에 영향을 미치는 신호전달인자 (Signal Transduction Factors on the Modulation of Radiosusceptibility in K562 Cells)

  • 양광모;윤선민;정수진;장지연;조월순;도창호;유여진;신영철;이형식;허원주;임영진;정민호
    • Radiation Oncology Journal
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    • 제21권3호
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    • pp.227-237
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    • 2003
  • 목적: 만성 골수성 백혈병 세포인 K562 세포주는 방사선 및 다양한 항암제에 대한 apoptosis에 저항성을 가진다. 지난 연구에서 K562 세포는 방사선에 대하여 내성반응을 보이며, 세포내 PTK의 작용을 억제하고자 방사선 조사와 함께 투여한 herbimycin A (HMA)에 의하여 방사선에 대한 apoptosis와 같은 감수성반응이 유도되는 반면, genistein에 의하여 방사선에 대한 apoptosis 반응이 저해됨을 확인하였다. 본 연구에서는 타이로신 인산화효소 억제에 의한 K562 세포의 방사선 반응변화를 조절하는 신호전달경로를 조사하였다. 대상 및 방법: K562 세포를 지수증식기의 세포들만 선택하여 실험에 이용하였다. 방사선조사는 6 MeV 선형가속기(Clinac 1800C, Varian)를 이 용하여 $200\~300$ cGy/min 선량률로 $0.5\~12 $ Gy를 균일하게 조사하였다. HMA와 genistein은 각각 $0.25/muM,\;25\muM$을 방사선 조사 후 즉시 투여하였다. 실험에서 신호전달 경로로 abl kinase, MAPK family, NF-kB, c-fos, c-myc, thymidine kinase1 (TK1) 등에서의 단백질 또는 유전자 발현 및 활성을 조사하였다. 또한 약제 투여에 따른 유전자 발현차이(differential gene expression)를 조사하였다. 결과: Abl kinase의 발현 및 활성 변화를 조사하였으나 PTK 저해제에 의한 방사선 유도 세포사의 변화와의 연관성을 찾을 수 없었다. 세포 생존 및 사멸의 신호전달체계에서 주요 조절과정인 MAPK family의 관여 여부 확인에서 방사선으로 인한 SAPK/JNK의 활성화의 유도가 관찰되었으나, PTK 저해제에 따른 변화는 없었으며, 또한 MAPK/ERK와 p38 MAPK 활성은 모든 조건에서 변함 없이 일정하였다. 전사인자 활성화에 대한 조사에서 방사선 조사와 함께 genistein을 투여한 경우에 NF-kB활성이 증가하였다. 유전자 발현 차이의 조사에서 genistein 투여에 의한 TK 1 유전자 발현 및 단백질 활성이 증가하였다. 결론: PTK 억제에 의한 K562 세포의 방사선에 대한 반응 변화는 bcrabl kinase 활성과는 무관하게 진행되며, MAPK family 경로 외의 다른 경로를 통한 전사인자 활성화 과정이 연관되어 있음을 확인하였다.