Salivary gland adenocarcinoma(AdCa NOS) is one of the major causes of mortality among malignant salivary gland tumors. New therapeutic measure are needed to improve the outcome for patients with AdCa NOS because current therapy does not significantly improve survival rates. Transglutaminase 2(TGase 2) was implicated in forming cross-linked protein polymer, apoptosis and matrix interaction. And also TGase 2 expression is up-regulated in proliferation, migration, invasion, and metastasis of cancer cells. shRNA which has emerged as an effective method to target specific genes for silencing has provided new opportunities for cancer therapy. But there has been rarely reported using shRNA-TGase 2 transfection in AdCa NOS. The purpose of this study were to examine the specific inhibition of TGase 2 mRNA and protein expression by siRNA transfection of TGase 2 through RT-PCR and immunoslot blotting, and to study proliferation, migration and invasion assay of SGT cell line from AdCa NOS. Cell cycle analysis showed that the downregulation of shRNA-TGase 2 caused the accumulation of cells in the sub-G0/G1 phase. In migration assay, suppressing shRNA-TGase 2 inhibited the capacity of the cells to migrate compared to parental cells. In invasion assay, cells transfected with shRNA-TGase 2 decreased in invasion when compared to SGT and vector transfected cells. shRNA-TGase 2 expressing plasmids efficiently downregulated TGase 2 mRNA and TGase 2 protein expression. It suggested that the shRNA-TGase 2 targeting system against TGase 2 could have a therapeutic potentiality for malignant salivary gland tumors, especially in inhibiting and/or preventing cancer cell proliferation, migration and invasion.
This study aimed to examine the effect of a mild elevation in serum cholesterol level in a porcine coronary overstretch restenosis model using a balloon angioplasty catheter or drug-eluting coronary stent. Pigs were divided into two groups and were fed a commercial normal diet (CND, n = 4) or a high-fat diet (HFD, n = 4) for 5 weeks. Coronary overstretch injury by balloon angioplasty or stent implantation was induced in the left anterior descending and left circumflex artery after 1 week of feeding. Histopathological analysis was performed at 4 weeks after coronary injury. During the experiment, the total cholesterol level in the HFD group increased by approximately 44.9% (from 65.9 ± 3.21 mg/dL at baseline to 95.5 ± 9.94 mg/dL at 5 weeks). The lumen area in the CND group was reduced in comparison with that in the HFD group after balloon angioplasty. After stent implantation, the injury score showed no significant difference. There were significant differences in the neointimal area (2.7 ± 0.33 mm2 in the CND group vs. 3.3 ± 0.34 mm2 in the HFD group, p<0.05), lumen area (2.6 ± 0.54 mm2 in the CND group vs. 2.0 ± 0.33 mm2 in the HFD group, p<0.05), and percent area stenosis (52.0 ± 7.96% in the CND group vs. 62.4 ± 5.15% in the HFD group, p<0.05). Body weight change was not different between the two groups. Increased serum cholesterol level activated vascular smooth muscle cell proliferation in the porcine coronary overstretch model.
The carcinogenesis mechanism of human salivary gland adenocarcinoma NOS is poorly understood. MicroRNA155(miRNA155) has been involved in the carcinogenesis of many malignant tumors. The purpose of this study was to examine the role of miRNA155 in tumor growth and invasion of adenocarcinoma NOS. Using SGT cells as a model for adenocarcinoma NOS, cell proliferation was examined by MTT assay after knocking down miRNA155 expression, and cell cycle analysis was performed. Invasive capacity by a Transwell culture assay, and miRNA155 expression in SGT cell line by RT-PCR were examined. In MTT assay, proliferation of SGT-miRNA155 cells was decreased prominently after 96 hrs. Proliferation of SGT cells was markedly inhibited by knocking down miRNA155, resulting from a blockade of cell cycle in the G1 phase, but apoptosis was increased about 4 folds. In adhesion assay, SGT-miRNA155 cells decreased about 60% compared to SGT cells. In invasion assay, inhibition of miRNA155 significantly suppressed the invasive capacity of about 34% SGT cells. mRNA expression of SGT-miRNA155 cells prominently were decreased compared to SGT cells by RT-PCR. It suggested that miRNA155 could play an role in cell cycle progression and invasion in SGT cells, including antitumor effect. These results have provided insights into the carcinogenic mechanisms and new intervention method of salivary gland adenocarcinoma NOS.
Recently, extensive research has been performed in the field of orthopedic medicine to develop cell-based therapies for the restoration of injured bone tissue. But there has been rarely reported about rehabilitaton of oral and maxillofacial bone defect using self-derived osteoblasts. Normal human osteoblast cell(NHost) was previously established into marrow-derived human mesenchymal stem cells for their capacity to proliferate and differentiate into osteoblasts under various culture conditions. The purpose of this study was to examine proliferation and differentiation of NHosts effected by growth factors with ALP activity and RT-PCR. After NHosts were cultured under basal and osteogenic medium at 37℃ and 5% CO2, they were analyzed by ALP activity and RT-PCR. BMP-2 under osteogenic medium decreased growth rate of NHosts compared to under osteogenic medium. BMP-2 under osteogenic medium induced osteoblastic differentiation in NHosts by increased ALP activity. The differentiating capacity of NHosts under osteogenic medium showed that NHosts expressed higher mRNA expression levels of OSX and OCN, while that of RUNX2 decreased after BMP-2 treatment. It suggested that NHosts having characteristics of osteoprecursor cells might be more advanced in their osteogenesis development by BMP-2, making NHosts an interesting biological tool for treatment of skeletal defects and diseases of oral and maxillofacial bone.
Cyclosporine A (Cs A) which is a highly lipophilic cyclic undecapeptide mainly used for its immunosuppressive properties exert a wide spectrum of biological activities including fungicidal antiproliferactive, anti-inflammatory and chemotherapuetic effects. Human salivary gland adenocarcinoma is very aggressive characteristics, which is need to get the effective chemotherapuetic methods. Subconfluent SGT cell cultures have been treated with CsA at in vivo relevant concentrations for 24h. MTT assay for cellular proliferation of cultured SGT cell line has been performed and TGase 1 activity assay for cellular differentiation has been detected in the CsA-treated samples. It suggested that CsA could have an inhibitory effect in the proliferation of SGT cell line but no in the differentiation.
Epithelium maintains homeostasis by the signaling balance of growth stimulation and inhibition. Recently, loss of growth inhibitory effects of transforming growth factor-β(TGF-β) on epithelial cells is regarded as a possible mechanism of cancer. Although the genomic mutation in type I and type Ⅱ receptors of TGF-β is considered one of important mechanism of these inactivation, there might be another inactivation mechanism because the mutation rate is relatively low and inhibitory effect is not associated with the mutation. The purpose of this study is evaluating controlling mechanism type Ⅱ receptor of TGF-β by detecting effects of TGF-β on growth inhibition and on expression of cell cycle regulatory protein p21CIP1. Eight cancer cell lines derived from oral squamous cell carcinoma(OSCC) were examined. There was no growth inhibition effects by TGF-β except YD-8 cells. YD-8 cells which showed growth inhibition expresses p21CIP1 by TGF-β whether refractory cell lines, YD-9, did not. All of the tumor cells express mRNA of type Ⅱ receptor by RT-PCR and northern blot analysis, especially on YD-8 and YD-17M. From these results, most of oral cancer cell lines might loose the growth inhibitory effects by TGF-β, and the growth inhibition on YD-8 cells was mediated by expression of p21CIP1.
본 연구 결과들을 바탕으로 도깨비부채 잎(RPL)은 GSK3β 활 성화를 통해 IκB-α를 인산화시켜 단백질 분해를 유도하고 Iκ B-α 분해로 인해 p65 핵내 전이를 유도하여 NF-κB 신호전달을 활성화?시킨다. 이러한 NF-κB 신호전달 활성화를 통해 대장암 의 세포생육을 억제하는 것으로 추정된다. 본 결과는 도깨비부채 잎을 소재로 항암을 목적으로 한 천연치료제 및 대체보완소재 개발에 활용할 수 있다고 판단된다. 그러나 도깨비부채 잎의 대장암에 대한 세포생육 억제와 작용기전의 정확한 관련성과 세포생육 억제활성 물질 분석을 위해 추가적인 연구가 필요할 것으로 사료된다.
In this study, we evaluated the anti-cancer activity and potential molecular mechanism of 70% ethanol extracts of branches from Taxillus yadoriki parasitic to Neolitsea sericea (TN-NS-B) against human lung cancer cells, A549. TY-NS-B dose-dependently suppressed the growth of A549 cells. TY-NS-B decreased β-catenin protein level, but not mRNA level in A549 cells. The downregulation of β-catenin protein level by TY-NS-B was attenuated in the presence of MG132. Although TY-NS-B phosphorylated β-catenin protein, the inhibition of GSK3β by LiCl did not blocked the reduction of β-catenin by TY-NS-B. In addition, TY-NS-B decreased β-catenin protein in A549 cells transfected with Flag-tagged wild type β- catenin or Flag-tagged S33/S37/T41 mutant β-catenin construct. Our results suggested that TN-NS-B may downregulate β- catenin protein level independent on GSK3β-induced β-catenin phosphorylation. Based on these findings, TY-NS-B may be a potential candidate for the development of chemopreventive or therapeutic agents for human lung cancer.
꿀풀과(Labiatae)의 일종인 잉글리쉬 라벤더(Lavendula angustifolia L.)추출물이 tert-butylhydro- peroxide (t-BHP)에 미치는 영향을 조사하기 위하여 인체피부흑색종세포(SK-MEL-3)를 배양한 후 t- BHP의 산화적 손상에 대한 영향을 세포증식율에 의하여 조사하였다. 또한 t-BHP의 멜라닌화(melanogenesis)에 대한 라벤더 추출물의 영향을 티로시나제 활성(tyrosinase activity) 및 멜라닌합성(melanin synthesis)에 대하여 분석하였다. 본 연구에서 t-BHP는 배양 SK-MEL-3세포에 처리한 농도에 따라 세포증식을 대조군에 비하여 유의하게 감소시켰다. 이 과정에서 t-BHP의 독성이 세포증식에 영향을 미치는 초기독성값(initial-cytotoxicity value )와 중간독성값(mid-cytotoxicity value)가 각각 4 uM과 30uM에서 나타났다. 한편, t-BHP에 대한 라벤더추출물은 t-BHP에 의해 감소된 세포증식을 유의하게 증가시켰으며, 동시에 티로시나제의 활성과 멜라닌합성을 유의하게 감소시켰다. 이상의 결과로 부터 라벤더추출물은 t-BHP에 대한 항산화효과와 멜라닌화를 방어하는데 효과적인 것으로 나타났다.