• 제목/요약/키워드: Prostate cancer cells

검색결과 303건 처리시간 0.05초

Sodium Iodide Symporter (NIS)를 이용한 분자영상 (Molecular Imaging Using Sodium Iodide Symporter (NIS))

  • 조제열
    • 대한핵의학회지
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    • 제38권2호
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    • pp.152-160
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    • 2004
  • Radioiodide uptake in thyroid follicular epithelial cells, mediated by a plasma membrane transporter, sodium iodide symporter (NIS), provides a first step mechanism for thyroid cancer detection by radioiodide injection and effective radioiodide treatment for patients with invasive, recurrent, and/or metastatic thyroid cancers after total thyroidectomy. NIS gene transfer to tumor cells may significantly and specifically enhance internal radioactive accumulation of tumors following radioiodide administration, and result in better tumor control. NIS gene transfers have been successfully performed in a variety of tumor animal models by either plasmid-mediated transfection or virus (adenovirus or retrovirus)-mediated gene delivery. These animal models include nude mice xenografted with human melanoma, glioma, breast cancer or prostate cancer, rats with subcutaneous thyroid tumor implantation, as well as the rat intracranial glioma model. In these animal models, non-invasive imaging of in vivo tumors by gamma camera scintigraphy after radioiodide or technetium injection has been performed successfully, suggesting that the NIS can serve as an imaging reporter gene for gene therapy trials. In addition, the tumor killing effects of I-131, ReO4-188 and At-211 after NIS gene transfer have been demonstrated in in vitro clonogenic assays and in vivo radioiodide therapy studies, suggesting that NIS gene can also serve as a therapeutic agent when combined with radioiodide injection. Better NIS-mediated imaging and tumor treatment by radioiodide requires a more efficient and specific system of gene delivery with better retention of radioiodide in tumor. Results thus far are, however, promising, and suggest that NIS gene transfer followed by radioiodide treatment will allow non-invasive in vivo imaging to assess the outcome of gene therapy and provide a therapeutic strategy for a variety of human diseases.

Tazarotene-Induced Gene 1 Enhanced Cervical Cell Autophagy through Transmembrane Protein 192

  • Shyu, Rong-Yaun;Wang, Chun-Hua;Wu, Chang-Chieh;Chen, Mao-Liang;Lee, Ming-Cheng;Wang, Lu-Kai;Jiang, Shun-Yuan;Tsai, Fu-Ming
    • Molecules and Cells
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    • 제39권12호
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    • pp.877-887
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    • 2016
  • Tazarotene-induced gene 1 (TIG1) is a retinoic acid-inducible protein that is considered a putative tumor suppressor. The expression of TIG1 is decreased in malignant prostate carcinoma or poorly differentiated colorectal adenocarcinoma, but TIG1 is present in benign or well-differentiated tumors. Ectopic TIG1 expression led to suppression of growth in cancer cells. However, the function of TIG1 in cell differentiation is still unknown. Using a yeast two-hybrid system, we found that transmembrane protein 192 (TMEM192) interacted with TIG1. We also found that both TIG1A and TIG1B isoforms interacted and co-localized with TMEM192 in HtTA cervical cancer cells. The expression of TIG1 induced the expression of autophagy-related proteins, including Beclin-1 and LC-3B. The silencing of TMEM192 reduced the TIG1-mediated upregulation of autophagic activity. Furthermore, silencing of either TIG1 or TMEM192 led to alleviation of the upregulation of autophagy induced by all-trans retinoic acid. Our results demonstrate that the expression of TIG1 leads to cell autophagy through TMEM192. Our study also suggests that TIG1 and TMEM192 play an important role in the all-trans retinoic acid-mediated upregulation of autophagic activity.

유색감자 추출물의 항돌연변이 및 항암 활성 (Antimutagenic Effect and Cytotoxicity to Human Cancer Cell Lines of Colored Potato Extracts)

  • 박영은;정진철;조현묵;황영선;이현진;최수산나;이수진;박은선;고은아;김난솔;임정대;정명근
    • 한국작물학회지
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    • 제53권1호
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    • pp.75-84
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    • 2008
  • 본 연구는 괴경 내부에 적색 및 보라색의 안토시아닌 색소를 함유한 유색감자의 추출물을 대상으로 S. typhimurium TA98과 TA100 균주의 돌연변이 유발여부를 확인하였고, 직접돌연변이원인 4-nitroquinoline-1-oxide(4-NQO)와 간접 돌연변이원인 bozo(a)pyrene(BaP)에 의해 유발될 수 있는 돌연변이에 대한 항돌연변이 활성과 6종의 인간 암세포주(전립선암세포주: LNCaP, 결장암 세포주: HCT-15와 SW-620, 위암 세포주: ACHN, 폐암 세포주: A549, 백혈병 세포주: MOLT-4F)를 대상으로 SRB 방법을 이용하여 항암활성을 비교하였다. 그 결과 유색감자 중 괴경 내부에 보라색의 안토시아닌을 다량 함유한 자영 품종이 다른 품종에 비해 높은 수준의 항돌연변이활성 및 항암활성을 나타내었으며, 특히 자영 품종의 추출물은 다른 세포주 보다 전립선암 세포주에 대한 항암활성이 특이적으로 우수한 양상을 확인하였다. 자영 품종의 추출물은 $5\;{\mu}g/mL$ 이상의 농도에서 암세포의 증식을 억제할 뿐 아니라, 전립선암 세포주 LNCaP와 PC-3에 대해 세포사멸을 유발하는 결과를 Cell Death Detection ELISA와 TUNEL Assay로 확인하였고, 세포사멸과 연관된 유전자의 발현분석을 western blot으로 확인하였다. 이상의 결과에서 괴경 내부에 안토시아닌을 함유한 유색감자는 괴경 내부의 색상이 백색인 일반감자에 비해 강한 항돌연변이활성 및 항암활성을 나타내므로 유색감자는 기능성이 증대된 식용감자로서의 이용가치가 충분하며, 유색감자를 이용한 기능성식품 소재개발 및 의료산업의 신규소재화가 가능하리라 판단된다.

Conjugated linoleic acid 황갈색의 인체암세포와 인체정상세포에 대한 세포독성 (Lack of Cytotoxicity of the Colorant in Conjugated Linoleic Acid against Human Cancer and Normal Cells)

  • 지유철;안채린;서양곤;서정세;김정옥;하영래
    • 생명과학회지
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    • 제22권8호
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    • pp.1099-1106
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    • 2012
  • 체지방감소 효과가 있는 시판 conjugated linoleic acid (CLA)의 색깔을 제거하고 이 색깔의 세포독성에 관한 연구를 하였다. 황갈색의 시판 CLA 제품을 구입하여 crude CLA (c-CLA) 시료로 하였다. c-CLA 시료를 감압증류(10 mmHg-$220^{\circ}C$, 10 mmHg-$235^{\circ}C$, 10 mmHg-$240^{\circ}C$, 20 mmHg-$260^{\circ}C$; 30분)하여 증류된 CLA (distilled CLA; d-CLA) 시료와 증류되지 않고 남아있는 황갈색 CLA (residual CLA; r-CLA) 시료로 분리하였다. 10 mmHg-$220^{\circ}C$에서 증류하여 얻은 d-CLA 시료의 색깔은 L (brightness), a (red/blue), b (yellow/green)로 분석한 결과 무색에 가까웠고 r-CLA 시료는 황갈색이었고, 이들 두 CLA 시료의 CLA 이성체 조성은 변하지 않았다. 따라서 10 mmHg-$220^{\circ}C$에서 얻은 r-CLA 시료의 인체암세포(유방암 MCF-7. 폐암 A-549, 직장암 HT-29, 전립선암 PC-3)와 인체 정상세포(신경모세포 SK-N-SH)에 대한 세포독성을 d-CLA 시료와 비교하였다. 이들 암세포와 정상세포에 r-CLA 시료와 d-CLA 시료 처리 2일 후의 세포독성에는 차이가 없었다. 따라서 본 연구에서 c-CLA 시료에 함유된 색소는 10 mmHg-$220^{\circ}C$로 감압증류 하여 제거할 수 있었고, r-CLA 시료의 세포독성은 d-CLA 시료의 세포독성과 차이가 없었다. 이와 같은 결과는 c-CLA 시료에 함유된 색소는 세포생육에 아무런 영향을 미치지 않고 인체에 아무런 영향을 미치지 않음을 의미한다.

Benefits of Metformin Use for Cholangiocarcinoma

  • Kaewpitoon, Soraya J;Loyd, Ryan A;Rujirakul, Ratana;Panpimanmas, Sukij;Matrakool, Likit;Tongtawee, Taweesak;Kootanavanichpong, Nusorn;Kompor, Ponthip;Chavengkun, Wasugree;Kujapun, Jirawoot;Norkaew, Jun;Ponphimai, Sukanya;Padchasuwan, Natnapa;Pholsripradit, Poowadol;Eksanti, Thawatchai;Phatisena, Tanida;Kaewpitoon, Natthawut
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권18호
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    • pp.8079-8083
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    • 2016
  • Metformin is an oral anti-hyperglycemic agent, which is the most commonly prescribed medication in the treatment of type-2 diabetes mellitus. It is purportedly associated with a reduced risk for various cancers, mainly exerting anti-proliferation effects on various human cancer cell types, such as pancreas, prostate, breast, stomach and liver. This mini-review highlights the risk and benefit of metformin used for cholangiocarcinoma (CCA) prevention and therapy. The results indicated metformin might be a quite promising strategy CCA prevention and treatment, one mechanism being inhibition of CCA tumor growth by cell cycle arrest in both in vitro and in vivo. The AMPK/mTORC1 pathway in intrahepatic CCA cells is targeted by metformin. Furthermore, metformin inhibited CCA tumor growth via the regulation of Drosha-mediated expression of multiple carcinogenic miRNAs. The use of metformin seems to be safe in patients with cirrhosis, and provides a survival benefit. Once hepatic malignancies are already established, metformin does not offer any therapeutic potential. Clinical trials and epidemiological studies of the benefit of metformin use for CCA should be conducted. To date, whether metformin as a prospective chemotherapeutic for CCA is still questionable and waits further atttention.

새싹 잔대 잎과 뿌리의 항산화 및 항암 효과 (Antioxidant and anticancer activities of Adenophora triphylla leaf and root extracts)

  • 윤선영;김기현;현태경
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.137-141
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    • 2023
  • 잔대(Adenophora triphylla var. japonica)의 뿌리는 비만, 암, 염증을 예방하는 데 사용되는 귀중한 약용 자원으로 사용되지만, 어린잎이나 순은 식재료로 사용되고 있다. 본 연구에서는 A. triphylla 뿌리와 잎에서 얻은 70% 에탄올 추출물의 항산화 및 항암 효과를 비교 평가하였다. 잎 추출물이 뿌리 추출물보다 강력한 DPPH-radical 소거 활성, 환원력 및 ORAC 값을 나타냈다. 또한, 인체 암세포주에서 잔대 추출물의 세포독성 사멸 효과를 조사한 결과, 잎 추출물이 A549 (폐암), LNcaP (전립선암), SKOV3 (난소암) 및 Caco-2 (대장암) 세포에서 강력한 항암 성분의 공급원임을 보여주었다. 이러한 결과는 뿌리뿐만 아니라 잎도 제약 산업에서 기능성 소재의 귀중한 공급원이 될 수 있음을 시사한다.

LNCaP 세포주를 이용한 내분비계장애물질중 안드로겐성 확인시험을 위한 검색법 (Screening Assay for Identification of Endocrine Disruptors with Androgen Activities using LNCaP Cells)

  • 김진호;정혜주;김영옥;정승태;박재현;조대현;김동섭
    • Toxicological Research
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    • 제18권1호
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    • pp.59-64
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    • 2002
  • Substantial evidences have been accumulated about the hormone-like effects of exogenous substances such as pesticides and industrial chemicals during past years. The effects of these substances on the endocrine system are believed to be either enhancing or reducing of various endocrine action. It is necessary to identify putative causal agents by the batter system and to assess their ability to disrupt the endocrine system. A variety of in vitro and In vivo approaches have been used to determine the androgenic effects of environmental chemicals. To establish the method for assessment of the putative endocrine disruptors with androgenic activity, we carried out the cell proliferation assay by MTS method after treatment with the various concentration of testosterone in LNCaP cells (human prostatic cancer cell line) and also observed the expression of androgen-related genes by quantitative RT-PCR. In the cell proliferation assay, the results showed that the grouth of LNCaP cells increased within level of at least 10pM testosterone. We measured by quantitative RT-PCR method on the effects of testosterone on mRNA expression of androgen receptor (AR), prostate-specific antigen (PSA), bone morphogenetic protein (BMP) and BMP receptor (BMPR) In LNCaP cells. The results demonstrated that mRNA expression of PSA and BMPR-IB was observed differently within level of at least 0.01 pM testosterone compared with non-treated control. These observations suggest that the detection of PSA and BMPR-IB mRNA by the quantitative RT-PCR in LNCaP cells is very sensitive method to identify the endocrine disruptors to have the androgenic effects.

Characterization of ginsenoside compound K loaded ionically cross-linked carboxymethyl chitosan-calcium nanoparticles and its cytotoxic potential against prostate cancer cells

  • Zhang, Jianmei;Zhou, Jinyi;Yuan, Qiaoyun;Zhan, Changyi;Shang, Zhi;Gu, Qian;Zhang, Ji;Fu, Guangbo;Hu, Weicheng
    • Journal of Ginseng Research
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    • 제45권2호
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    • pp.228-235
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    • 2021
  • Backgroud: Ginsenoside compound K (GK) is a major metabolite of protopanaxadiol-type ginsenosides and has remarkable anticancer activities in vitro and in vivo. This work used an ionic cross-linking method to entrap GK within O-carboxymethyl chitosan (OCMC) nanoparticles (Nps) to form GK-loaded OCMC Nps (GK-OCMC Nps), which enhance the aqueous solubility and stability of GK. Methods: The GK-OCMC Nps were characterized using several physicochemical techniques, including x-ray diffraction, transmission electron microscopy, zeta potential analysis, and particle size analysis via dynamic light scattering. GK was released from GK-OCMC Nps and was conducted using the dialysis bag diffusion method. The effects of GK and GK-OCMC Nps on PC3 cell viability were measured by using the 3-(4,5-dimethyl-2-thiazolyl)-2,5-diphenyl-2-H-tetrazolium bromide assay. Fluorescent technology based on Cy5.5-labeled probes was used to explore the cellular uptake of GK-OCMC Nps. Results: The GK-OCMC NPs had a suitable particle size and zeta potential; they were spherical with good dispersion. In vitro drug release from GK-OCMC NPs was pH dependent. Moreover, the in vitro cytotoxicity study and cellular uptake assays indicated that the GK-OCMC Nps significantly enhanced the cytotoxicity and cellular uptake of GK toward the PC3 cells. GK-OCMC Nps also significantly promoted the activities of both caspase-3 and caspase-9. Conclusion: GK-OCMC Nps are potential nanocarriers for delivering hydrophobic drugs, thereby enhancing water solubility and permeability and improving the antiproliferative effects of GK.

Albendazole and Mebendazole as Anti-Parasitic and Anti-Cancer Agents: an Update

  • Chai, Jong-Yil;Jung, Bong-Kwang;Hong, Sung-Jong
    • Parasites, Hosts and Diseases
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    • 제59권3호
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    • pp.189-225
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    • 2021
  • The use of albendazole and mebendazole, i.e., benzimidazole broad-spectrum anthelmintics, in treatment of parasitic infections, as well as cancers, is briefly reviewed. These drugs are known to block the microtubule systems of parasites and mammalian cells leading to inhibition of glucose uptake and transport and finally cell death. Eventually they exhibit ovicidal, larvicidal, and vermicidal effects on parasites, and tumoricidal effects on hosts. Albendazole and mebendazole are most frequently prescribed for treatment of intestinal nematode infections (ascariasis, hookworm infections, trichuriasis, strongyloidiasis, and enterobiasis) and can also be used for intestinal tapeworm infections (taeniases and hymenolepiasis). However, these drugs also exhibit considerable therapeutic effects against tissue nematode/cestode infections (visceral, ocular, neural, and cutaneous larva migrans, anisakiasis, trichinosis, hepatic and intestinal capillariasis, angiostrongyliasis, gnathostomiasis, gongylonemiasis, thelaziasis, dracunculiasis, cerebral and subcutaneous cysticercosis, and echinococcosis). Albendazole is also used for treatment of filarial infections (lymphatic filariasis, onchocerciasis, loiasis, mansonellosis, and dirofilariasis) alone or in combination with other drugs, such as ivermectin or diethylcarbamazine. Albendazole was tried even for treatment of trematode (fascioliasis, clonorchiasis, opisthorchiasis, and intestinal fluke infections) and protozoan infections (giardiasis, vaginal trichomoniasis, cryptosporidiosis, and microsporidiosis). These drugs are generally safe with few side effects; however, when they are used for prolonged time (>14-28 days) or even only 1 time, liver toxicity and other side reactions may occur. In hookworms, Trichuris trichiura, possibly Ascaris lumbricoides, Wuchereria bancrofti, and Giardia sp., there are emerging issues of drug resistance. It is of particular note that albendazole and mebendazole have been repositioned as promising anti-cancer drugs. These drugs have been shown to be active in vitro and in vivo (animals) against liver, lung, ovary, prostate, colorectal, breast, head and neck cancers, and melanoma. Two clinical reports for albendazole and 2 case reports for mebendazole have revealed promising effects of these drugs in human patients having variable types of cancers. However, because of the toxicity of albendazole, for example, neutropenia due to myelosuppression, if high doses are used for a prolonged time, mebendazole is currently more popularly used than albendazole in anti-cancer clinical trials.

인체 전립선 상피세포에서 HDAC 저해제 trichostatin A의 caspase 및 NF-κB의 활성화를 통한 apoptosis 유도 (Induction of Apoptosis by HDAC Inhibitor Trichostatin A through Activation of Caspases and NF-κB in Human Prostate Epithelial Cells.)

  • 박철;김성윤;최병태;이원호;최영현
    • 생명과학회지
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    • 제18권3호
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    • pp.336-343
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    • 2008
  • 본 연구에서는 인체전립선 상피세포인 267B1 세포에서 HDAC 저해제인 TSA에 의한 증식억제가 apoptosis 유도에 의한 것임을 제시하였다. 이러한 TSA에 의한 267B1 세포의 apoptosis에는 c-IAP-1 및 c-IAP-2와 같은 IAP family의 발현감소가 동반되었으나 Bax 및 Bcl-2와 같은 Bcl-2 family의 발현에는 큰 변화가 없었다. 그리고 TSA에 의한 267Bl 세포의 apoptosis는 caspase의 활성에 의한 표적 단백질들의 분해와 연관성이 있었다. 또한 TSA에 의한 apoptosis 유도에서 $NF-{\kappa}B$의 활성이 증가된다는 것을 세포질에서 $NF-{\kappa}B$의 핵 내로의 이동에 따른 전사활성의 증가 현상에 의한 것임을 다양한 방법으로 제시하였다. 본 연구의 결과는 TSA와 같은 HDAC 저해제에 의한 apoptosis 유도에는 $NF-{\kappa}B$의 활성 증가가 동반될 수 있음을 보여주는 결과로서 HDAC 저해제의 항암활성에 대한 $NF-{\kappa}B$의 새로운 역할 가능성을 제시하여 주는 것으로서 이에 관한 추가적인 연구의 필요성을 제시하였다.