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1.
Zhonghua Yi Xue Za Zhi ; 97(44): 3466-3470, 2017 Nov 28.
Article in Zh | MEDLINE | ID: mdl-29275580

ABSTRACT

Objective: To evaluate the efficacy and safety of neoadjuvant dose-dense or standard schedule chemotherapy with anthracyclines and taxanes for Luminal B (HER2-)Breast Cancer. Methods: From January 2010 to December 2014, 168 Luminal B (HER2-) breast cancer patients with stageⅡA-ⅢC confirmed by pathology were randomly assigned to receive one of the following regimens: (group A) concurrent TEC× 4 every 3 weeks, ( group B ) sequential EC× 4-T × 4 every 3 weeks, (group C ) dose-dense TEC× 4 every 2 weeks with G-CSF, (group D) sequential EC× 4(dose-dense)-T × 4 with dose-dense every 2 weeks . Results: A total of 168 patients completed the neoadjuvant chemotherapy as planned. The pathologic complete response (pCR) was 16.8% in the 4 groups.The pCR were 30.9% and 26.1% in the group C and group D respectively, significantly higher than patients with group A and group B(9.5%and 7.1%) ( P<0.05). Median follow-up was 43 months (IQR 3-63). The 3-year disease free survival (DFS) rate was 64.7%, 55.5%, 87.8% and 92.1% and the 3-year overall survival(OS)rate was 79.4%, 77.7%, 95.1%, 97.3% in the 4 groups respectively. Patients in the dose-dense group had better 3-year DFS and 3-year OS than those with the regular group.The side-effects could be evaluated in 154 patients.The incidence of neutropenia was 29.2% and 21.9% in the group C and group D versus 65.7%and 51.3% in the regular group(P<0.05), the incidence of nervous toxicity was 54.2%, 18.9%, 60.0%, 26.8% in the 4 groups respectively. The incidence of nervous toxicity in the dose-dense group was lower than that in the regular regimen group(P<0.05). Conclusion: Neoadjuvant dose-dense chemotherapy with anthracyclines and taxanes for Luminal B (HER2-)Breast Cancer was effective and can improve the pCR, DFS and OS.Comparing the two dose dense regimens, sequentially with anthracyclines and taxanes, the incidence of nervous toxicity were lower.


Subject(s)
Anthracyclines/therapeutic use , Antineoplastic Combined Chemotherapy Protocols/therapeutic use , Breast Neoplasms/drug therapy , Neoadjuvant Therapy , Taxoids/therapeutic use , Chemotherapy, Adjuvant , Disease-Free Survival , Female , Humans , Prognosis
2.
Genetica ; 128(1-3): 297-306, 2006.
Article in English | MEDLINE | ID: mdl-17028959

ABSTRACT

The dynamic expression of genes for protein and lysine contents of rice grain under different environments was carried out with time-dependent measures by using the developmental genetic models for quantitative traits of triploid endosperm in cereal crops. The results showed that the genetic effects, especially genotype x environment (GE) interaction effects from the genes expression of different genetic systems including triploid endosperm, cytoplasm and diploid maternal plant were important for the performance of both nutrient quality traits at all developmental times/stages of rice grain. The conditional genetic variance analysis found that the activation of quantitative genes especially from endosperm and maternal plant genetic systems for protein and lysine contents was gradually carried through the developmental process of rice grain. The net genetic effects showed that the new expression of quantitative genes for protein and lysine contents was more active at late filling stage (15-21 days after flowering) and maturity stage (22-28 days) of rice grain. Also the sequential expression of cytoplasmic genes cannot be ignorable for the development of nutrient quality traits. The phenomena that some genes could continuously express for several developmental stages or the genes expression could be interrupted among developmental stages of rice grain was detected especially for net endosperm additive main effects or maternal additive main effects. The differences of genetic relationships from different genetic systems were found for protein and lysine contents among developmental times of rice grain.


Subject(s)
Lysine/analysis , Oryza/chemistry , Oryza/genetics , Plant Proteins/analysis , Diploidy , Gene Expression Regulation, Developmental , Gene Expression Regulation, Plant , Genes, Plant , Genetic Variation , Lysine/genetics , Models, Genetic , Oryza/growth & development , Plant Proteins/genetics , Polyploidy , Quantitative Trait, Heritable
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