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At least 73 records · Page 4Linked to original sources

Delayed adjuvant tamoxifen: ten-year results of a collaborative randomized controlled trial in early breast cancer (TAM-02 trial)

AIM: Immediate adjuvant tamoxifen reduces disease recurrence and improves survival in patients with early breast cancer. However, is it too late to administer tamoxifen to patients who have already undergone treatment, but were unable to benefit from this adjuvant therapy? The French National Cancer Centers (FNCLCC) have investigated the efficacy of delayed tamoxifen administration in a randomized controlled trial. PATIENTS AND METHODS: From September 1986 to October 1989, women with primary breast cancer, who had undergone surgery, radiotherapy, and/or received adjuvant chemotherapy but not hormone therapy more than two years earlier, were randomized to receive either 30 mg/day tamoxifen or no treatment. The 10-year disease-free and overall survival rates of the two groups of patients and of various subgroups were determined according to the Kaplan-Meyer method and compared by the log-rank test. RESULTS: This intention-to-treat analysis comprised 250 Introduction women in the tamoxifen group and 244 in the control group. Patient characteristics (age, T stage, number of positive nodes, receptor status, and interval since tumor treatment) were comparable in both groups. Delayed adjuvant tamoxifen significantly improved overall survival only in node-positive patients and in patients with estrogen receptor-positive (ER+) or progesterone receptor-positive (PR+) tumors. Disease-free survival, however, was significantly improved in the global population and in several patient subgroups (node-positive, ER+, PR+). Patients in whom the interval between primary treatment and delayed adjuvant tamoxifen was greater than five years also had significantly improved disease-free survival. CONCLUSIONS: Overall and disease-free survival results indicate that delayed adjuvant tamoxifen administration (30 mg/day) is justified in women with early breast cancer, even if this treatment is initiated two or more years after primary treatment.

Adenocarcinoma↗

[Tumor-associated macrophages (TAM) in the stroma of squamous cell carcinomas of the ENT area studied using monoclonal antibodies].

Monoclonal antibodies were used to examine the presence and nature of tumor associated macrophages and T-lymphocytes in 26 cases of squamous cell carcinoma of head and neck. The content of macrophages varied according to the differentiation of the carcinoma: high differentiation was evidenced by a labelling index by an index between 13.5% and 23.7%, poor differentiation from 27.4% to 35.8%. T-lymphocytes were found where tumors were inflamed, but there was no significant correlation between tumor differentiation and infiltrating T-lymphocytes. The present results that prognosis decreases with the increasing number of tumor associated macrophages in squamous cell carcinoma.

Antibodies, Monoclonal↗

TAMS technology for simple and efficient in vitro site-directed mutagenesis and mutant screening.

Site-directed mutagenesis is an invaluable tool for functional studies and genetic engineering. However, most current protocols require the target DNA to be cloned into a plasmid vector before mutagenesis can be performed, and none of them are effective for multiple-site mutagenesis. We now describe a method that allows mutagenesis on any DNA template (eg. cDNA, genomic DNA and plasmid DNA), and is highly efficient for multiple-site mutagenesis (up to 100%). The technology takes advantage of the requirement that, in order for DNA polymerases to elongate, it is crucial that the 3' sequences of the primers match the template perfectly. When two outer mutagenic oligos are incorporated together with the desired mutagenic oligos into the newly synthesised mutant strand, they serve as anchors for PCR primers which have 3' sequences matching the mutated nucleotides, thus amplifying the mutant strand only. The same principle can also be used for mutant screening.

Base Sequence↗

A microarray-based high throughput molecular marker genotyping method: the tagged microarray marker (TAM) approach.

A microarray-based method has been developed for scoring thousands of DNAs for a co-dominant molecular marker on a glass slide. The approach was developed to detect insertional polymorphism of transposons and works well with single nucleotide polymorphism (SNP) markers. Biotin- terminated allele-specific PCR products are spotted unpurified onto streptavidin-coated glass slides and visualised by hybridisation of fluorescent detector oligonucleotides to tags attached to the allele- specific PCR primers. Two tagged primer oligonucleotides are used per locus and each tag is detected by hybridisation to a concatameric DNA probe labelled with multiple fluorochromes.

Biotinylation↗