Τετάρτη 24 Αυγούστου 2016

Clinical and histopathological effects of presurgical treatment with sunitinib for renal cell carcinoma with inferior vena cava tumor thrombus at a single institution.

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To evaluate the clinical and histopathological effects of presurgical treatment with sunitinib on inferior vena cava (IVC) tumor thrombus. Between 2010 and 2014, we treated seven patients with renal cell carcinoma and IVC tumor thrombus presurgically with sunitinib. We retrospectively evaluated primitive tumor size, the level of tumor thrombus according to Novick's classification, its distance above the renal vein, thrombus diameter at its widest segment, and histopathological change after sunitinib treatment. Three patients were diagnosed histologically. Percutaneous biopsy of the renal mass before sunitinib treatment was performed in two patients. One patient was diagnosed after sunitinib treatment following nephrectomy. The primitive tumors shrank upon sunitinib therapy in four cases; however, although the caval thrombus was downstaged (from level II to I) in one patient, the level of caval thrombus did not change in five patients and increased in one patient (from level III to IV). We evaluated the histopathological effects in two patients. In one patient, the IVC tumor thrombus was mostly replaced with necrotic tissue, but its thrombus level was not downstaged. In the other patient, the IVC tumor thrombus was downstaged, but tumor thrombus was not replaced with necrotic tissue and viable tumor cells remained. Presurgical treatment with sunitinib for renal cell carcinoma with IVC tumor thrombus appears to have limited effect on IVC tumor thrombus, in contrast to its effects on primitive tumor shrinkage. In the absence of evidence of presurgical benefits from prospective studies, this treatment may not be systematically advisable. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND), where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially. http://ift.tt/1hexVwJ Copyright (C) 2016 Wolters Kluwer Health, Inc. All rights reserved.

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Chamaejasmine induces apoptosis in HeLa cells through the PI3K/Akt signaling pathway.

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Chamaejasmine is one of the major bioactive components of Stellera chamaejasme L, which is a Chinese traditional herbal medicine that has been used widely in the treatment of cancer. The aim of this study is to investigate the potential effect of chamaejasmine on cervical cancer cells and elucidate the underlying mechanisms of action. We first examined the antitumor activity of chamaejasmine both in vitro and in vivo. In the following experiments with HeLa cells, cell apoptosis and ultrastructure changes were assessed by flow cytometry and transmission electron microscopy, respectively. The effects of chamaejasmine on reactive oxygen species production and mitochondrial membrane potential ([DELTA][psi]m) were examined using 2',7'-dichlorohydrofluorescein and rhodamine-123 staining. The mRNA and protein levels of apoptosis-related proteins were detected by real-time PCR and western blot. The activity of caspases 3, 8, and 9 was measured using the corresponding assay kit. The effect of chamaejasmine on the phosphoinositide 3-kinase (PI3K)/Akt pathway was evaluated by luciferase assay and western blot, and further confirmed in Akt overexpressing HeLa cells. We found that chamaejasmine has potent antitumor effects on cervical cancer cell lines both in vitro and in vivo. Mechanistic studies showed that chamaejasmine could induce apoptosis in HeLa cells, and this apoptosis-inducing effect may be mediated through the suppression of PI3K/Akt signaling cascades. These findings not only indicate the therapeutic potential of chamaejasmine for cervical cancer, but provide valuable insight into its mechanism of action. Copyright (C) 2016 Wolters Kluwer Health, Inc. All rights reserved.

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The TYMS-TSER polymorphism is associated with toxicity of low-dose capecitabine in patients with advanced gastrointestinal cancer.

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Low doses of drugs delivered at close, regular intervals are increasingly being used to manage patients with different neoplasms. Despite the good tolerability, treatment-related adverse events still occur following metronomic protocols. The aim of this study was to retrospectively investigate whether polymorphisms of different genes involved in fluoropyrimidine metabolism and 5-fluorouracil (5-FU) degradation rate were associated with the outcome of a low-dose capecitabine schedule. Genotyping of DPYD IVS14+1 G>A, MTHFR C677T, and A1298C single-nucleotide polymorphisms was performed by pyrosequencing technology. A PCR technique was used for genotyping TYMS-TSER. Using peripheral blood mononuclear cells, we also evaluated the 5-FU degradation rate, which determines the net result of all the enzymatic transformation of 5-FU, in terms of the amount of drug consumed by the cells in a time unit. The association of these variables with clinical outcome was evaluated using multivariate logistic regression analysis. Eighty-four patients with metastatic gastrointestinal cancer, who had been treated with a low-dose fluoropyrimidine schedule, as a rescue therapy were included in the study. The TSER 2R/2R genotype was significantly associated with both hematologic (odds ratio=7.90, P=0.002) and gastrointestinal toxicity (odds ratio=3.24, P=0.009). Because DPYD IVS14 G>A single-nucleotide polymorphism was not observed in the cohort, it was excluded from the statistical analysis. No significant association was detected between clinical outcome and both MTHFR polymorphisms and the 5-FU degradation rate. In the advanced setting of cancer care, high attention should be paid toward avoiding toxicity and worsening of quality of life. Although metronomic chemotherapy is generally well tolerated, treatment toxicity nonetheless does occur. Our data suggest a possible role of the TSER 2R/2R polymorphism as a predictive marker of toxicity in patients treated with low-dose capecitabine. Copyright (C) 2016 Wolters Kluwer Health, Inc. All rights reserved.

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Uncertainty in the Era of Precision Medicine

A National Research Council report on "precision medicine" explains that the term "refers to the tailoring of medical treatment to the individual characteristics of each patient." The report goes on to say, "It should be emphasized that in 'precision medicine' the word 'precision' is being…

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Increasing Precision in Adjuvant Therapy for Breast Cancer

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Genomic testing of tumors can enable improved matching of individual patients or groups with treatments, but it can also identify situations where a specific intervention is not effective. In the recently reported results of the Trial Assigning Individualized Options for Treatment (TAILORx),…

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70-Gene Signature as an Aid to Treatment Decisions in Early-Stage Breast Cancer

Women with early-stage breast cancer are often treated with adjuvant systemic therapy consisting of chemotherapy, endocrine therapy, agents against human epidermal growth factor receptor 2 (HER2), or combinations of these drugs when appropriate. Treatment decisions are based on characteristics of…

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Bispecific antibody-drug conjugate targeting HER2 and CD63

Antibody-drug conjugates (ADC) are designed to be stable in circulation and to release potent cytotoxic drugs intracellularly following antigen-specific binding, uptake and degradation in tumor cells. Efficient internalization and routing to lysosomes where proteolysis can take place is therefore essential. For many cell surface proteins and carbohydrate structures on tumor cells, however, the magnitude of these processes is insufficient to allow for an effective ADC approach. We hypothesized that we could overcome this limitation by enhancing lysosomal ADC delivery via a bispecific antibody (bsAb) approach, in which one binding domain would provide tumor specificity, whereas the other binding domain would facilitate targeting to the lysosomal compartment. We therefore designed a bsAb in which one binding arm specifically targeted CD63, a protein that is described to shuttle between the plasma membrane and intracellular compartments, and combined it in a bsAb with a HER2 binding arm, which was selected as model antigen for tumor specific binding. The resulting bsHER2xCD63his demonstrated strong binding, internalization and lysosomal accumulation in HER2-positive tumor cells, and minimal internalization into HER2-negative cells. By conjugating bsHER2xCD63his to the microtubule-disrupting agent duostatin-3, we were able to demonstrate potent cytotoxicity of bsHER2xCD63his-ADC against HER2-positive tumors, which was not observed with monovalent HER2- and CD63-specific ADCs. Our data demonstrate, for the first time, that intracellular trafficking of ADCs can be improved using a bsAb approach that targets the lysosomal membrane protein CD63 and provide a rationale for the development of novel bsADCs that combine tumor-specific targeting with targeting of rapidly internalizing antigens.



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