Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0019204 (hepatocellular carcinoma)
71,386 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Chemoprevention of cancer is reviewed from the viewpoints of action mechanisms and methodology of clinical trials in order to introduce promising agents discovered by in vitro and/or in vivo studies to applications in humans. The clinical trial procedure essentially follows the phase study which has been employed for chemotherapeutic drugs. Chemoprevention of bladder cancer, prostate cancer, gastric cancer, hepatocellular carcinoma, breast cancer, head and neck cancer, colorectal cancer and lung cancer is reviewed, mainly focusing on clinical trials. Previous clinical trials have shown the effectiveness of the following: polyprenoic acid (acyclic retinoid) for hepatocellular carcinoma; tamoxifen for breast cancer; retinoic acids for head and neck tumor; and aspirin, a COX-2 inhibitor, for colorectal cancer. Despite the advantageous effects of some of these agents, their toxic effects must also be of concern at the same time. For example, in a chemoprevention trial of lung cancer, beta-carotene was unexpectedly found to increase the risk of lung cancer among high-risk groups. It is also noted that large-scale clinical trials demand large research grants, which may not be affordable in Japan. Chemoprevention is still an emerging field of oncology where researchers in both basic and clinical sciences face great challenges.
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PMID:Chemoprevention of cancer--focusing on clinical trials. 1459 36

Annexin 7 (ANX7) acts as a tumor suppressor gene in prostate cancer, where loss of heterozygosity and reduction of ANX7 protein expression is associated with aggressive metastatic tumors. To investigate the mechanism by which this gene controls tumor development, we have developed an Anx7(+/-) knockout mouse. As hypothesized, the Anx7(+/-) mouse has a cancer-prone phenotype. The emerging tumors express low levels of Anx7 protein. Nonetheless, the wild-type Anx7 allele is detectable in laser-capture microdissection-derived tumor tissue cells. Genome array analysis of hepatocellular carcinoma tissue indicates that the Anx7(+/-) genotype is accompanied by profound reductions of expression of several other tumor suppressor genes, DNA repair genes, and apoptosis-related genes. In situ analysis by tissue imprinting from chromosomes in the primary tumor and spectral karyotyping analysis of derived cell lines identify chromosomal instability and clonal chromosomal aberrations. Furthermore, whereas 23% of the mutant mice develop spontaneous neoplasms, all mice exhibit growth anomalies, including gender-specific gigantism and organomegaly. We conclude that haploinsufficiency of Anx7 expression appears to drive disease progression to cancer because of genomic instability through a discrete signaling pathway involving other tumor suppressor genes, DNA-repair genes, and apoptosis-related genes.
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PMID:Haploinsufficiency of Anx7 tumor suppressor gene and consequent genomic instability promotes tumorigenesis in the Anx7(+/-) mouse. 1460 35

Proton beam therapy (PBT) makes it possible to deliver a higher concentration of radiation to the tumor by its Bragg-peak, and is easy to utilize due to its identical biological characteristics with X-rays. PBT has a half-century history, and more than 35,000 patients have been reported as having had treatments with proton beams worldwide. The historic change to this therapy occurred in the 1990s, when the Loma Linda University Medical Center began clinical activity as the first hospital in the world to utilize a medically dedicated proton therapy facility. Since then, similar hospital-based medically dedicated facilities have been constructed. Results from around the world have shown the therapeutic superiority of PBT over alternative treatment options for ocular melanoma, skull base sarcoma, head and neck cancer, lung cancer, esophageal cancer, hepatocellular carcinoma, and prostate cancer. PBT is expected to achieve further advancement both clinically and technologically.
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PMID:[Heavy charged particle radiotherapy--proton beam]. 1471 61

A cDNA clone of 1.1 kb encoding a 108-aa polypeptide was isolated from a human pituitary cDNA library by expression cloning. This protein was named tumor differentiation factor (TDF). The recombinant TDF protein and a 20-aa peptide, P1, selected from the ORF of the gene, induced morphological and biochemical changes consistent with differentiation of human breast and prostate cancer cells. Fibroblast, kidney, hepatoma, and leukemic lymphocytic cell lines were unaffected. Breast and prostate cancer cells aggregated in spheroid-like structures within 24 h of exposure to TDF. This effect was abrogated by a specific affinity-purified rabbit polyclonal anti-P1 Ab. E-cadherin expression was increased in a dose-dependent manner by TDF. Treatment of MCF7 cells with TDF led to production of a lactalbumin-related protein. Peptide P1 significantly decreased the growth of androgen-independent DU145 prostate cancer in severe combined immunodeficient mice. The presence of TDF protein in human sera was detected by the anti-P1 Ab, suggesting a role of TDF in endocrine metabolism. The fact that all activities of TDF can be mimicked by a peptide derived from the encoding TDF sequence opens the possibility of therapeutic applications.
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PMID:A pituitary gene encodes a protein that produces differentiation of breast and prostate cancer cells. 1474 5

Pain from bone metastases limits mobility and may cause pathological fractures that can seriously impair the patient's quality of life. Conservative treatments such as orthopedic fixation, radiotherapy, and opioids sometimes fail to give satisfactory pain relief. Bisphosphonates have been reported to reduce the severity of pain from bone metastasis due to breast cancer, prostate cancer, and multiple myeloma. Recent clinical reports demonstrated the effectiveness of bisphosphonates in reducing pain from bone metastases in various malignancies. This study presents 3 cases of refractory pain from bone metastases due to thyroid, colorectal and hepatocellular carcinoma. Primary treatment included orthopedic fixation, radiotherapy, and/or parenteral opioids that failed to reduce bone pain. Bisphosphonate therapy was considered at the start of pain control treatment using opioids. All 3 cases showed gradual reduction in pain after i.v. pamidronate administration and allowed physicians to control further pain with opioids. In 1 case, the patient was successfully withdrawn from opioids. The role of bisphosphonates in painful bone metastases remains unclear. However, recent encouraging reports have indicated that bisphosphonate may become one of the adjuvant treatments available to control refractory bone pain from various malignancies.
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PMID:[Bisphosphonate as an adjuvant therapy for the pain of bone metastases, 3 cases]. 1499 67

Monitoring the spontaneous antibody (Ab) response against a panel of relevant tumor-associated antigens (TAA) in cancer patients may provide useful information regarding the clinical status of cancer. However, current Ab detection approaches require the purification of recombinant proteins, which is often difficult to achieve. In order to bypass the purification of recombinant proteins, we identified a dominant B-cell epitope from a shared tumor antigen NY-ESO-1. A synthetic peptide of the epitope, ESO:1-40, was as sensitive as the recombinant protein for detecting Ab against NY-ESO-1 in most patients. NY-ESO-1 specific Ab present in the sera of patients with melanoma, prostate cancer, nonsmall cell lung cancer, esophageal cancer, gastric cancer and hepatocellular carcinoma reacted with the dominant peptide at a similar frequency as the recombinant protein. To our knowledge, ESO:1-40 is the first peptide epitope recognized by sera from a wide spectrum of cancer patients but not healthy donors. This simple and straightforward approach may allow the investigation of the clinical significance of spontaneous Ab responses against multiple TAA and their correlation with the clinical course of malignant diseases in the future.
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PMID:Dominant B cell epitope from NY-ESO-1 recognized by sera from a wide spectrum of cancer patients: implications as a potential biomarker. 1600 30

1. The prodrug CB1954 (5-(aziridin-1-yl)-2,4-dinitrobenzamide) is activated by Escherichia coli nitroreductase (NTR) to a potent DNA-crosslinking agent. 2. Virus-mediated expression of NTR in tumour cells sensitizes them to CB1954 in vitro and in vivo, providing the basis for a strategy of cancer gene therapy. 3. A phase I trial of CB1954 in cancer patients has been completed, documenting the pharmacokinetics and establishing an acceptable dose. Subsequent trials of the replication-defective adenovirus CTL102 in patients with resectable tumours have documented expression of NTR in injected colorectal liver metastases, hepatocellular carcinoma, head and neck cancer and prostate cancer. Trials combining CTL102 and CB1954 are underway. 4. An oncolytic (replication-competent) adenovirus vector allowed increased expression of NTR in vitro and in a mouse tumour model, resulting in a greater reduction in tumour growth when combined with CB1954 treatment. 5. Alternative prodrugs may eventually prove superior to CB1954; a nitroaryl phosphoramide mustard prodrug activated by NTR shows a greater therapeutic index than CB1954 in a human ovarian carcinoma. 6. The crystal structure of NTR provided the basis for site-directed mutagenesis, which has identified a number of mutants with improved kinetics of CB1954 activation. These can provide improved cell sensitization to CB1954. Combinations of these are being tested. 7. The basis for a positive selection for improved NTR variants has been demonstrated.
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PMID:Nitroreductase: a prodrug-activating enzyme for cancer gene therapy. 1556 99

In this Special Issue, we present a series of papers concerned with developing a multidisciplinary research agenda to address social disparities in cancer. Motivating this Special Issue are two concerns: (1) despite major advances in knowledge during the 20th century about the extent, determinants, treatment, and prevention of cancer, social disparities in cancer, including within the United States, remain serious, persistent, and require redress; and (2) huge gaps in knowledge exist regarding the causes of and solutions to social disparities in cancer across the full cancer continuum, from prevention to occurrence to diagnosis to treatment and, all too often, to death. Consequently, critical research is critically needed, both to answer the unanswered questions and to ascertain why existing knowledge is not implemented to reduce and eliminate these disparities. To help advance work in this field, we share papers developed for a January 2004 workshop on cancer disparities held at the Dana Farber/Harvard Cancer Center (DF/HCC), in Boston, MA. Topics addressed include: the definition and magnitude of, and programmatic responses to, social disparities in cancer, plus development of a systematic approach to raising research questions to address cancer disparities, using the case examples of breast, cervix, colon, and prostate cancer.
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PMID:Cancer disparities: developing a multidisciplinary research agenda - preface. 1575 Aug 52

1alpha,25-Dihydroxyvitamin D(3) [1,25-(OH)(2)D(3)], the active metabolite of vitamin D(3), is known for the maintenance of mineral homeostasis and normal skeletal architecture. However, apart from these traditional calcium-related actions, 1,25-(OH)(2)D(3) and its synthetic analogs are being increasingly recognized for their potent antiproliferative, prodifferentiative, and immunomodulatory activities. These actions of 1,25-(OH)(2)D(3) are mediated through vitamin D receptor (VDR), which belongs to the superfamily of steroid/thyroid hormone nuclear receptors. Physiological and pharmacological actions of 1,25-(OH)(2)D(3) in various systems, along with the detection of VDR in target cells, have indicated potential therapeutic applications of VDR ligands in inflammation (rheumatoid arthritis, psoriatic arthritis), dermatological indications (psoriasis, actinic keratosis, seborrheic dermatitis, photoaging), osteoporosis (postmenopausal and steroid-induced osteoporosis), cancers (prostate, colon, breast, myelodysplasia, leukemia, head and neck squamous cell carcinoma, and basal cell carcinoma), secondary hyperparathyroidism, and autoimmune diseases (systemic lupus erythematosus, type I diabetes, multiple sclerosis, and organ transplantation). As a result, VDR ligands have been developed for the treatment of psoriasis, osteoporosis, and secondary hyperparathyroidism. Furthermore, encouraging results have been obtained with VDR ligands in clinical trials of prostate cancer and hepatocellular carcinoma. This review deals with the molecular aspects of noncalcemic actions of vitamin D analogs that account for the efficacy of VDR ligands in the above-mentioned indications.
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PMID:Noncalcemic actions of vitamin D receptor ligands. 1579 98

Enhancer of zeste homologue 2 (EZH2), a member of the polycomb group protein family, plays a crucial role in the regulation of embryonic development and has been associated with the regulation of the cell cycle. Recently, several studies have shown that EZH2 is highly expressed in aggressive tumours, including human breast cancer, prostate cancer, and lymphomas. We thus analysed EZH2 expression using real-time reverse transcription-polymerase chain reaction, and correlated its expression status with various clinicopathological parameters in 66 patients with hepatocellular carcinoma (HCC). We found high expression of EZH2 in human liver cancer cell lines. Furthermore, EZH2 gene-expression levels in tumour tissue specimens (0.34+/-0.52) were significantly higher (P<0.0001) than those in the corresponding nontumour tissue specimens (0.07+/-0.09). The incidence of cancer cell invasion into the portal vein was significantly higher (P<0.001) in the high EZH2 expression group (26 of the 33, 79%) than in the low expression group (13 of the 33, 39%). However, there was no significant difference in the disease-free survival rate between the two groups. The findings of this study indicate that EZH2 mRNA expression was upregulated in human HCC and may play an important role in tumour progression, especially by facilitating portal vein invasion.
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PMID:Clinicopathological significance of EZH2 mRNA expression in patients with hepatocellular carcinoma. 1585 46


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