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Biomedical subjects

Jaye L Viner

Publications and source records attributed to Jaye L Viner.

At least 19 recordsLinked to original sources

Celecoxib for the prevention of sporadic colorectal adenomas.

BACKGROUND: Studies showing that drugs that inhibit cyclooxygenase-2 (COX-2) reduce the number of colorectal adenomas in animals and patients with familial adenomatous polyposis suggest that COX-2 inhibitors may also prevent sporadic colorectal neoplasia. METHODS: We randomly assigned patients who had adenomas removed before study entry to receive placebo (679 patients) or 200 mg (685 patients) or 400 mg (671 patients) of celecoxib twice daily. Randomization was stratified for the use of low-dose aspirin. Follow-up colonoscopies were performed at one and three years after randomization. The occurrence of newly detected colorectal adenomas was compared among the groups with the life-table extension of the Mantel-Haenszel test. RESULTS: Follow-up colonoscopies were completed at year 1 in 89.5 percent of randomized patients, and at year 3 in 75.7 percent. The estimated cumulative incidence of the detection of one or more adenomas by year 3 was 60.7 percent for patients receiving placebo, as compared with 43.2 percent for those receiving 200 mg of celecoxib twice a day (risk ratio, 0.67; 95 percent confidence interval, 0.59 to 0.77; P<0.001) and 37.5 percent for those receiving 400 mg of celecoxib twice a day (risk ratio, 0.55; 95 percent confidence interval, 0.48 to 0.64; P<0.001). Serious adverse events occurred in 18.8 percent of patients in the placebo group, as compared with 20.4 percent of those in the low-dose celecoxib group (risk ratio, 1.1; 95 percent confidence interval, 0.9 to 1.3; P=0.5) and 23.0 percent of those in the high-dose group (risk ratio, 1.2; 95 percent confidence interval, 1.0 to 1.5; P=0.06). As compared with placebo, celecoxib was associated with an increased risk of cardiovascular events (risk ratio for the low dose, 2.6; 95 percent confidence interval, 1.1 to 6.1; and risk ratio for the high dose, 3.4; 95 percent confidence interval, 1.5 to 7.9). CONCLUSIONS: These findings indicate that celecoxib is an effective agent for the prevention of colorectal adenomas but, because of potential cardiovascular events, cannot be routinely recommended for this indication. (ClinicalTrials.gov number, NCT00005094 [ClinicalTrials.gov].).

Adenoma↗

What is the future of oncology? National Cancer Institute initiatives to improve research, development, and implementation in cancer prevention and treatment.

To improve the efficiency and effectiveness with which we bring novel cancer treatment and prevention strategies into routine clinical use, the National Cancer Institute has commissioned the Clinical Trials Working Group to restructure its activities related to clinical trials. A total of 22 initiatives have been developed and are being implemented under the rubrics of Coordination, Prioritization/Scientific Quality, Standardization, Operational Efficiency, and Integrated Management. A similar model was recently applied to the newly formed Translational Research Working Group, which will focus on more efficient translation of scientific discoveries arising from the laboratory, clinic, or population into early phase clinical testing.

Biomedical Research↗

Can animal models help us select specific compounds for cancer prevention trials?

Animal models provide unparalleled mechanistic insights into cancer development and potential opportunity for cancer prevention. Nevertheless, species differ markedly with regard to dietary exposures, cancer development, drug effects, and toxicity thresholds; therefore, testing in a single animal system may not predict human responses. Although replication of human cancer in animal models remains inexact, more than two decades of research have clearly yielded significant gains, as is evident in agents tested--and in certain cases, approved--for the prevention of epithelial cancers. Research efficiencies achievable through preliminary testing in genetically engineered and carcinogen-induced animal models enable us to probe genetic and signaling pathways that drive normal and neoplastic processes, and thereby figure prominently in decision trees for agent development.

Animals↗

Prevention and therapy of colorectal cancer.

Colorectal cancer is expected to affect more than 146,000 and kill more than 57,000 Americans in 2004. Increased understanding of carcinogenesis is transforming clinical approaches to all stages of this disease. During the last 5 years, four new drugs have been approved for colorectal cancer treatment, and substantial progress has been made in identifying and developing agents that prevent or delay carcinogenesis. These advances substantiate target-driven approaches to cancer prevention and treatment, and provide fruitful opportunities for future investigations.

Cell Transformation, Neoplastic↗

Colorectal cancer chemoprevention--an overview of the science.

The development and dissemination of sophisticated detection technologies have recently exposed the high prevalence of preinvasive colorectal neoplasia in the adult U.S. population. Although cancer screening and surveillance provide opportunities for risk stratification, they achieve risk reduction only when coupled with effective interventions. This review surveys the lead compounds for colorectal cancer prevention and the measures by which they may be prioritized for clinical testing. Clinical trials remain the rate-limiting step in agent development, and novel trial designs are needed to hasten agent identification and testing for cancer prevention. Innovative research models include the nesting of prevention end points within cancer treatment trials and within trials testing promising preventive compounds intended for nononcologic indications.

Chemoprevention↗

Irreversible ototoxicity associated with difluoromethylornithine.

Difluoromethylornithine (DFMO) is a potent, irreversible inhibitor of ornithine decarboxylase, the rate-limiting enzyme in the synthesis of polyamines that promote cellular proliferation. DFMO has been tested as a potential cancer therapeutic and chemopreventive agent in clinical trials. Reversible hearing loss is a recognized toxicity of DFMO that usually occurs at doses above 2 g/m(2)/d, and generally when the cumulative dose exceeds 250 g/m(2). In a recently completed Barrett's esophagus chemoprevention trial, a participant developed a 15-dB decrease in hearing at frequencies of 250, 2,000, and 3,000 Hz in the right ear and a > or =20-dB decrease in hearing at 4,000 to 6,000 Hz in the left ear after taking 0.5 g/m(2)/d DFMO for approximately 13 weeks (cumulative dose of 45 g/m(2)). The threshold shifts persisted 7 months after DFMO was discontinued. There was no obvious impact on the participant's clinical hearing, but these findings were consistent with irreversible hearing loss. This is the first case reported of irreversible ototoxicity in a clinical trial participant receiving DFMO and, thus, trial participants should be made aware of this small but important risk.

Antineoplastic Agents↗

Chemoprevention of nonmelanoma skin cancer: experience with a polyphenol from green tea.

Nonmelanoma skin cancer is extremely common and is increasing in incidence. It would be very useful to have forms of therapy that would prevent precancerous changes from going on to form cancer, or to reverse the precancerous changes. Epidemiologic evidence in humans, in vitro studies on human cells, and clinical experiments in animals have identified polyphenol compounds found in tea to be possibly useful in reducing the incidence of various cancers, including skin cancer. To examine the potential for a polyphenol from green tea, epigallocatechin gallate, to act as a chemopreventive agent for nonmelanoma skin cancer, a randomized, double-blind, placebo-controlled phase II clinical trial of topical epigallocatechin gallate in the prevention of nonmelanoma skin cancer was performed.

Antineoplastic Agents, Phytogenic↗

Chemoprevention of skin cancer.

OBJECTIVES: To discuss the principles, science, and roles of nurses related to skin cancer chemoprevention. DATA SOURCES: Journal articles and federal government reports. CONCLUSIONS: The skin is a model organ for investigating cancer prevention processes that may be relevant to other organs as well. Agents that selectively target molecular hallmarks of skin carcinogenesis are under intense clinical and preclinical investigation. IMPLICATIONS FOR NURSING PRACTICE: Nurses play key roles in coordinating clinical trials, stimulating public awareness, and ensuring access to and acceptance of new agents. Nurses play a role in translational research by bridging the gap between technologic development and patient care.

Anticarcinogenic Agents↗

Development of COX inhibitors in cancer prevention and therapy.

On the strength of in vitro, in vivo, observational, and clinical data, nonsteroidal antiinflammatory drugs (NSAIDs)-also referred to as COX inhibitors-have emerged as lead compounds for cancer prevention, and possible adjuncts to cancer therapy. Thus far, the routine use of NSAIDs for these indications is limited, largely owing to toxicity concerns, the paucity of efficacy data for any specific target organ, and uncertainties with regard to the most appropriate regimen (i.e., the best agent, formulation, dose, route of administration, and duration). Strategies to address these concerns primarily aim to improve the therapeutic index (i.e., benefit:risk ratio) of COX inhibitors by 1) minimizing systemic exposures whenever feasible, 2) achieving greater mechanistic specificity, 3) coadministering agents that provide prophylaxis against common toxicities, and 4) coadministering other effective anticancer agents. Clinical trials testing most of these strategies have been completed or are under way. The National Cancer Institute has a substantial research portfolio dedicated to the identification, testing, and development of NSAIDs as preventive and therapeutic anticancer agents. Discovering how to apply NSAIDs in persons with-or at risk for-cancer, although challenging, has the potential for considerable clinical and public health benefits.

Animals↗

Chemoprevention of colorectal carcinogenesis.

The field of cancer prevention is advancing rapidly, largely owing to post-genomic technology that has revolutionized our ability to identify and characterize molecular profiles for cancer. Advances in colorectal cancer screening (e.g., endoscopy, fecal occult blood testing, and mutational analysis) have made the detection and eradication of preinvasive neoplastic lesions the standard of care. Basic and translational sciences are building on these advances, and continue to expose molecular hallmarks of carcinogenesis that can be exploited as targets for molecularly targeted preventive interventions (i.e., chemoprevention). These targets will help identify more effective and better tolerated preventive agents. Carcinogenesis is now recognized as a disease in itself and has become the target of an ever-expanding array of preventive interventions.

Adenomatous Polyposis Coli↗

Epidemiology and prevention of colorectal cancer.

CRC, the second-leading cause of cancer death in the United States, is a highly preventable disease. Ironically, available and effective screening technologies are not consistently applied, even as new ones are developed. This discordance between preventive opportunity and practice conveys a sobering message regarding nontechnologic issues that must be addressed if the promise of CRC prevention is to be realized. Our response to this message will determine the public health impact of cancer prevention. In the 1980s, cancer chemoprevention was regarded as scientific speculation. Within the last decade, however, cancer has been recognized as a late, nonobligate stage of carcinogenesis, a chronic process that provides time and targets for preventive intervention. Further advances are emerging out of rigorous clinical testing, which remains the limiting factor in transforming ingenious concepts into useful tools for the prevention of CRC. The challenges and rewards of participation in chemoprevention research--both as patients and health care providers-have never been greater.

Biomarkers, Tumor↗

Chemoprevention of colorectal cancer: problems, progress, and prospects.

Chemoprevention holds great promise as a complement to traditional CRC screening and treatment. Effective chemopreventive agents might improve patient outcomes by reducing the number of missed lesions, the morbidity associated with their identification and treatment, and their malignant potential. In addition, chemoprevention may reduce neoplastic potential simultaneously in several organs and improve clinical outcomes for persons at risk for cancers at multiple sites (e.g., colorectal and extracolonic cancers in HNPCC cohorts). Complex molecular circuits underlie the disease mosaic that is associated with aging. Several of these diseases share common mechanisms against which preventive interventions appear to be effective, such as NSAIDs for colorectal neoplasia and neurodegenerative disease, and statins for cardiovascular disease and colorectal neoplasia. Understanding these mechanisms and effects could raise prevention science to an entirely new level. The number of trials that are investigating chemopreventives against CR neoplasia is relatively small; if these agents live up to a fraction of their promise, the public health impact may be great (see Table 6).

Chemoprevention↗

The role of cyclooxygenase inhibitors in cancer prevention.

Carcinogenesis results from the long-term accumulation of genetic and epigenetic aberrations at the molecular level, which are under constant selection pressure for growth advantage. Recognizing that cancer is the result of this long-term, multi-step process provides opportunities for molecularly targeted cancer prevention. Ideally, chemopreventive agents should be low in toxicity, morbidity, and cost. Several individual agents and agent combinations are currently under evaluation in the U.S. National Cancer Institute s (NCI) chemoprevention agent development program. Nonsteroidal anti-inflammatory drugs (NSAIDs) that inhibit cyclooxygenase (COX) -1 and -2 are among the most promising classes of agents for targeted molecular prevention.

Animals↗