• 제목/요약/키워드: anti-cancer drugs

검색결과 298건 처리시간 0.03초

Paris polyphylla Smith Extract Induces Apoptosis and Activates Cancer Suppressor Gene Connexin26 Expression

  • Li, Fu-Rong;Jiao, Peng;Yao, Shu-Tong;Sang, Hui;Qin, Shu-Cun;Zhang, Wei;Zhang, Ya-Bin;Gao, Lin-Lin
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권1호
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    • pp.205-209
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    • 2012
  • Background: The inhibition of tumor cell growth without toxicity to normal cells is an important target in cancer therapy. One possible way to increase the efficacy of anticancer drugs and to decrease toxicity or side effects is to develop traditional natural products, especially from medicinal plants. Paris polyphylla Smith has shown anti-tumour effects by inhibition of tumor promotion and inducement of tumor cell apoptosis, but mechanisms are still not well understood. The present study was to explore the effect of Paris polyphylla Smith extract (PPSE) on connexin26 and growth control in human esophageal cancer ECA109 cells. Methods: The effects of PPSE on Connexin26 were examined by RT-PCR, western blot and immunofluorescence; cell growth and proliferation were examined by the 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyl-tetrazolium bromide (MTT) assay. Results: PPSE inhibited the growth and proliferation on esophageal cancer ECA109 cells, while increasing the expression of connexin26 mRNA and protein; conversely, PPSE decreased Bcl-2 and increased Bad. Conclusion: This study firstly shows that PPSE can increase connexin26 expression at mRNA and protein level, exerting anti-tumour effects on esophageal cacner ECA109 cells via inhibiting cell proliferation and inducing cell apoptosis.

Therapeutic effects of dihydroartemisinin and transferrin against glioblastoma

  • Kim, Suk Hee;Kang, Seong Hee;Kang, Bo Sun
    • Nutrition Research and Practice
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    • 제10권4호
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    • pp.393-397
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    • 2016
  • BACKGROUND/OBJECFTIVES: Artemisinin, a natural product isolated from Gaeddongssuk (artemisia annua L.) and its main active derivative, dihydroartemisinin (DHA), have long been used as antimalarial drugs. Recent studies reported that artemisinin is efficacious for curing diseases, including cancers, and for improving the immune system. Many researchers have shown the therapeutic effects of artemisinin on tumors such as breast cancer, liver cancer and kidney cancer, but there is still insufficient data regarding glioblastoma (GBM). Glioblastoma accounts for 12-15% of brain cancer, and the median survival is less than a year, despite medical treatments such as surgery, radiation therapy, and chemotherapy. In this study, we investigated the anti-cancer effects of DHA and transferrin against glioblastoma (glioblastoma multiforme, GBM). MATERIALS/METHODS: This study was performed through in vitro experiments using C6 cells. The toxicity dependence of DHA and transferrin (TF) on time and concentration was analyzed by MTT assay and cell cycle assay. Observations of cellular morphology were recorded with an optical microscope and color digital camera. The anti-cancer mechanism of DHA and TF against GBM were studied by flow cytometry with Annexin V and caspase 3/7. RESULTS: MTT assay revealed that TF enhanced the cytotoxicity of DHA against C6 cells. An Annexin V immune-precipitation assay showed that the percentages of apoptosis of cells treated with TF, DHA alone, DHA in combination with TF, and the control group were $7.15{\pm}4.15%$, $34.3{\pm}5.15%$, $66.42{\pm}5.98%$, and $1.2{\pm}0.15%$, respectively. The results of the Annexin V assay were consistent with those of the MTT assay. DHA induced apoptosis in C6 cells through DNA damage, and TF enhanced the effects of DHA. CONCLUSION: The results of this study demonstrated that DHA, the derivative of the active ingredient in Gaeddongssuk, is effective against GBM, apparently via inhibition of cancer cell proliferation by a pharmacological effect. The role of transferrin as an allosteric activator in the GBM therapeutic efficacy of DHA was also confirmed.

Inductions of Caspase-, MAPK- and ROS-dependent Apoptosis and Chemotherapeutic Effects Caused by an Ethanol Extract of Scutellaria barbata D. Don in Human Gastric Adenocarcinoma Cells

  • Shim, Ji Hwan;Gim, Huijin;Lee, Soojin;Kim, Byung Joo
    • 대한약침학회지
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    • 제19권2호
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    • pp.129-136
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    • 2016
  • Objectives: The crude extracts of Scutellaria barbata D. Don (SB) have traditionally demonstrated inhibitory effects on numerous human cancers both in vitro and in vivo. Gastric cancer is one of the most common types of cancer on world. The authors investigated the effects of an ethanol extract of Scutellaria barbata D. Don (ESB) on the growth and survival of MKN-45 cells (a human gastric adenocarcinoma cell line). Methods: The MKN-45 cells were treated with different concentrations of ESB, and cell death was examined using an MTT (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide) assay. Analyses of sub-G1 peaks, caspase-3 and -9 activities, and mitochondrial membrane depolarizations were conducted to determine the anti-cancer effects of SB on MKN-45 cells. Also, intracellular reactive oxygen species (ROS) generation was investigated. Results: ESB inhibited the growth of MKN-45 cells, caused cell cycle arrest, and increased the sub-G1 population. In addition, ESB markedly increased mitochondrial membrane depolarization and the activities of caspase-3 and -9. ESB exerted anti-proliferative effects on MKN-45 cells by modulating the mitogen-activated protein kinase (MAPK) signaling pathway and by increasing the generation of ROS. Furthermore, combinations of anti-cancer drugs plus ESB suppressed cell growth more than treatments with an agent or ESB, and this was especially true for cisplatin, etoposide, and doxorubicin. Conclusion: ESB has a dose-dependent cytotoxic effect on MKN-45 cells and this is closely associated with the induction of apoptosis. ESB-induced apoptosis is mediated by mitochondria-, caspase- and MAPK dependent pathways. In addition, ESB enhances ROS generation and increases the chemosensitivity of MKN-45 cells. These results suggest that treatment with ESB can inhibit the proliferation and promote the apoptosis of human gastric adenocarcinoma cells by modulating the caspase-, MAPK- and ROS-dependent pathway.

Unlocking the Therapeutic Potential of BCL-2 Associated Protein Family: Exploring BCL-2 Inhibitors in Cancer Therapy

  • Bisan El Dakkak;Jalal Taneera;Waseem El-Huneidi;Eman Abu-Gharbieh;Rifat Hamoudi;Mohammad H. Semreen;Nelson C. Soares;Eman Y. Abu-Rish;Mahmoud Y. Alkawareek;Alaaldin M. Alkilany;Yasser Bustanji
    • Biomolecules & Therapeutics
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    • 제32권3호
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    • pp.267-280
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    • 2024
  • Apoptosis, programmed cell death pathway, is a vital physiological mechanism that ensures cellular homeostasis and overall cellular well-being. In the context of cancer, where evasion of apoptosis is a hallmark, the overexpression of anti-apoptotic proteins like Bcl2, Bcl-xL and Mcl-1 has been documented. Consequently, these proteins have emerged as promising targets for therapeutic interventions. The BCL-2 protein family is central to apoptosis and plays a significant importance in determining cellular fate serving as a critical determinant in this biological process. This review offers a comprehensive exploration of the BCL-2 protein family, emphasizing its dual nature. Specifically, certain members of this family promote cell survival (known as anti-apoptotic proteins), while others are involved in facilitating cell death (referred to as pro-apoptotic and BH3-only proteins). The potential of directly targeting these proteins is examined, particularly due to their involvement in conferring resistance to traditional cancer therapies. The effectiveness of such targeting strategies is also discussed, considering the tumor's propensity for anti-apoptotic pathways. Furthermore, the review highlights emerging research on combination therapies, where BCL-2 inhibitors are used synergistically with other treatments to enhance therapeutic outcomes. By understanding and manipulating the BCL-2 family and its associated pathways, we open doors to innovative and more effective cancer treatments, offering hope for resistant and aggressive cases.

전이성 뇌종양 환자에게 발생한 오심(惡心), 구토(嘔吐)에 대해 가미복령반하탕으로 호전된 치험 1례 (A Case of Metastatic Brain Tumor Patient with Nausea and Vomiting Treated with Gamibokryungbanha-tang)

  • 정종수;박재우;윤성우
    • 대한한방내과학회지
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    • 제28권4호
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    • pp.956-962
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    • 2007
  • In cancer patients showing nausea and vomiting, a number of factors can be considered as the cause including brain tumor, electrolyte imbalance, gastrointestinal diseases or types of chemotherapy agents and dose of the drugs. Though nausea and vomiting can be minimized through the use of various anti-emetic drugs, many people still suffer from severe nausea and vomiting with poor quality of life compared with patients who do not show significant nausea and vomiting. In this report, we introduce a case of a cancer patient who suffered from severe nausea and vomiting. The patient was female and 59 years old with NSCLC (non small cell lung cancer) with metastatic brain tumor. Though western conventional medical treatment was used to reduce the symptoms, persistent nausea and vomiting were noted during the admission period. Herbal decoction Gamibokryungbanha-tang was used for nausea and vomiting which were uncontrolled under conventional western medicine; the patient showed remarkable improvement in terms of frequency and severity of nausea and vomiting. Further study will be needed in order to determine the long-term effectiveness of oriental medical treatment on cancer patient with nausea and vomiting.

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DAPT 및 MHY2245의 비스테로이드소염제(NSAID)의 항암 활성 증강 및 종양줄기세포관련 표지자 발현 감소 활성에 대한 분자적 기전 (Enhancing the Anti-cancer Activity of Non-steroidal Anti-inflammatory Drug and Down-regulation of Cancer Stemness-related Markers in Human Cancer Cells by DAPT and MHY2245)

  • 문현정;강치덕;김선희
    • 생명과학회지
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    • 제32권3호
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    • pp.210-221
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    • 2022
  • 비스테로이드소염제(NSAID)와 γ-secretase 저해제(DAPT) 또는 SIRT1저해제(MHY2245)의 병용 효과를 인간 대장암(KM12) 및 간암(SNU475) 세포를 대상으로 조사한 결과, celecoxib (CCB) 및 2, 5-dimethyl celecoxib (DMC)를 포함하는 NSAID는 DAPT 또는 MHY2245와의 병용에 의하여 COX-2활성과 상관없이 NSAID의 암세포 증식 억제능이 현저히 증강되었다. DAPT와 MHY2245는 p62단백질 감소와 동시에 Notch1, CD44, CD133, octamer- binding transcription factor 4 (Oct4) 등의 다수의 종양 줄기세포 표지자 및 NICD1 발현 양을 감소시켰지만, activating transcription factor 4 (ATF4) 발현은 증강시켰다. 또한 NSAID 단독처리 보다 NSAID/DAPT 및 NSAID/MHY2245 병용 처리에 의하여 오토파지가 촉진되므로서 종양 줄기세포 표지자의 발현 및 단백질양의 감소가 가속화되고, 이에 따라 PARP 활성화 및 세포사멸이 현저히 증강 되었다. 결론적으로 NSAID/DAPT 및 NSAID/MHY2245의 병용 투여는 종양 줄기세포 표지자를 발현하는 인간 암세포의 증식 억제 및 제거에 효과적인 처리방법으로, 임상에 적용시킬 수 있는 학문적 근거로서 제공 될 수 있다.

Mechanistic insights into differential requirement of receptor dimerization for oncogenic activation of mutant EGFR and its clinical perspective

  • Cho, Jeonghee
    • BMB Reports
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    • 제53권3호
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    • pp.133-141
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    • 2020
  • The epidermal growth factor receptor (EGFR), a member of the ErbB family (EGFR, ErbB2, ErbB3 and ErbB4), plays a crucial role in regulating various cellular responses such as proliferation, differentiation, and survival. As a result, aberrant activation of EGFR, mostly mediated through different classes of genomic alterations occurring within EGFR, is closely associated with the pathogenesis of numerous human cancers including lung adenocarcinoma, glioblastoma, and colorectal cancer. Thus, specific suppression of oncogenic activity of mutant EGFR with its targeted drugs has been routinely used in the clinic as a very effective anti-cancer strategy in treating a subset of tumors driven by such oncogenic EGFR mutants. However, the clinical efficacy of EGFR-targeted therapy does not last long due to several resistance mechanisms that emerge in the patients following the drug treatment. Thus, there is an urgent need for the development of novel therapeutic tactics specifically targeting mutant EGFR with the focus on the unique biological features of various mutant EGFR. Regarding this point, our review specifically emphasizes the recent findings about distinct requirements of receptor dimerization and autophosphorylation, which are critical steps for enzymatic activation of EGFR and signaling cascades, respectively, among wildtype and mutant EGFR and further discuss their clinical significance. In addition, the molecular mechanisms regulating EGFR dimerization and enzymatic activity by a key negative feedback inhibitor Mig6 as well as the clinical use for developing potential novel drugs targeting it are described in this review.

호초(胡椒)의 지방세포 억제 효과 (Anti-adipogencic Effect of Piper Nigrum Linne)

  • 정홍석;정지천
    • 동의생리병리학회지
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    • 제24권1호
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    • pp.118-123
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    • 2010
  • Piper nigrum Linne has been used spice as well as herbal medicine in worldwide and has function of anti-oxidant, anti-inflammation, anti-cancer, bioavailability of drugs and etc. In this study, anti-adipogenic activity of Piper nigrum Linne extract and its constituent piperine were investigated in 3T3-L1 differentiation. Adipogenic effects and lipid accumulation in 3T3-L1 was measured by RT-PCR and Oil Red O staining assays respectively in stimulation of Piper nigrum Linne extract and piperine. Piper nigrum Linne and piperine reduced lipid accumulation in 3T3-L1 differentiation and expression of genes associated with adipogenesis such as PPAR${\gamma}$, adipsin, SERBP-1c and LPL. All of taken, anti-adipogenic mechanism of Piper nigrum Linne and piperine were related with regulation of SREBP-1c and PPAR${\gamma}$ expression.

항 백혈병작용에 관련된 천연물의 자료조사 (Review of Anti-Leukemia Effects from Medicinal Plants)

  • 배현옥;임창경;장선일;한동민;안원근;윤유식;전병훈;김원신;윤용갑
    • 동의생리병리학회지
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    • 제17권3호
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    • pp.605-610
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    • 2003
  • 인삼, 호장근, 상산 등에서 분리한 성분들이 HL60, HL-60, Jurkat, Molt-4에 대한 억제작용이 있는 것으로 조사되었고, 익모초의 Leonunrine, 대청엽의 Indirubin, 천문동의 Aspargus polysaccharideA.B.C.D, 백합의 Colchicnamile, 익모초의 Lenunrine, 산두근, 자초근 추출물이 여러유형의 백혈병 환자에 대한 백혈병 억제효과가 있는 것으로 조사되었으며, mouse의 P388, L1210, L615, L120, S-180 등에 항 백혈병 효과가 있는 것으로는 완화, 로회, 원지, 오수유, 파두, 뇌공등, 석산, 백출, 단삼, 산약, 목단피, 청대, 감초, 당귀에서 분리한 성분들이 있으며 백굴채, 마전자, 가시오가피, 천초 추출물들이 동물실험에서 항암작용이 있는 것으로 조사되었다. 또 천연물에서 분리한 성분이 항백혈병 작용이 있는것으로는 ginsenoside Ro, ginseonoside Rh2, Emodin, Yuanhuacine, Aleemodin, phorbocdiester, Triptolide, Homolycorine, Atractylol, Colchicnamile, Paeonol, 당귀다당체, Aspargus polysaccharideABCD, Indirubin, Leonunrine, Acinosohic acid, Trichosanthin, G2 132, Schizandrin, allicin, Indirubin, cmdiumlactone chuanxiongol, 18A glycyrrhetic acid, Kansuiphorin A, 13 oxyingenol Kansuiphorin B 등이 조사되었고, 추출물이 항 백혈병 작용이 있는 것으로는 원지, 오수유, 백굴채, 대황, 산두근, 마전자, 가시오가피, 천초 등이 조사되었다.

Motility Contrast Imaging for Drug Screening Applications

  • Jeong, Kwan
    • Journal of the Optical Society of Korea
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    • 제19권4호
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    • pp.382-389
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    • 2015
  • Motility contrast imaging is a coherence-domain imaging technique that uses cellular motility as a fully endogenous imaging contrast agent. Motility is measured inside tissue using a digital holographic coherence gate that extracts dynamic speckle from fixed depths. The dynamic speckle arises from the normal organelle motion inside cells, and from the movement of the cellular membranes driven by the cytoskeleton. It measures cellular activity and the effects of temperature and osmolarity. Motion is sensitive to cytoskeletal drugs, such as the antimitotic drugs used for cancer chemotherapy, and the effects of drug combinations also can be monitored. Motility contrast imaging is a potential tissue-based assay platform for highthroughput screening of pharmaceuticals.