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The objective of this study was to assess the efficacy in terms of growth and tolerance of an infant formula based on hydrolyzed rice proteins.Patients and methodsHealthy infants, born at term, less than 1 month old, and exclusively fed an infant formula based on hydrolyzed rice proteins until their diet was diversified, were included in this open-label, multicenter study. The main outcome measure was daily weight gain during the study period. The infant's weight, height, body mass index (BMI), and the data concerning tolerance (digestive disorders, allergy manifestations) were collected at inclusion in the study, at 2 and 4 months, and before diversifying the infant's diet between 4 and 6 months. The growth parameters were compared to the WHO standards by calculating the Z-score.ResultsSeventy-eight infants were included. The mean daily weight gain over 5 months was 23.2 ± 4.3 g/day, identical to the WHO standards (22.2 ± 1.8 g/day, P = 0.09). During the study period, the Z-scores for weight, height, and BMI varied between +1.1 and ?0.5 SD according to the WHO standards. Formula acceptance and tolerance were both good.ConclusionThe infant formula studied, based on hydrolyzed rice proteins, was well tolerated and led to normal growth over the first few months of life, comparable to the WHO standards.  相似文献   
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Prior findings in vitro of a TGF-β3 dependent mechanism induced by low dose-rate irradiation and resulting in increased radioresistance and removal of low dose hyper-radiosensitivity (HRS) was tested in an in vivo model. DBA/2 mice were given whole-body irradiation for 1 h at low dose-rates (LDR) of 0.3 or 0.03 Gy/h. Serum was harvested and added to RPMI (4% mouse serum and 6% bovine serum).This medium was transferred to reporter cells (T-47D breast cancer cells or T98G glioblastoma cells). The response to subsequent challenge irradiation of the reporter cells was measured by the colony assay. While serum from unirradiated control mice had no effect on the radiosensitivity in the reporter cells, serum from mice given 0.3 Gy/h or 0.03 Gy/h for 1 h removed HRS and also increased survival in response to doses up to 5 Gy. The effect lasted for at least 15 months after irradiation. TGF-β3 neutralizer added to the medium containing mouse serum inhibited the effect. Serum from mice given irradiation of 0.3 Gy/h for 1 h and subsequently treated with iNOS inhibitor 1400W did not affect radiosensitivity in reporter cells; neither did serum from the unirradiated progeny of mice given 1h LDR whole-body irradiation.  相似文献   
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