Publications by authors named "Xiaoshan Qiu"

Applying organic fertilizer is the main way to enhance soil fertility through the interfacial reaction between mineral and dissolved organic matter (DOM). However, the interfacial reaction between minerals and DOM may influence antimony(V) (Sb(V)) mobility in agricultural soils around antimony mines. In our study the ferrihydrite (Fh) was chosen as a representative mineral, to reveal the effect of its interaction with chicken manure organic fertilizer (CM-DOM) with Fh on Sb(V) migration.

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With illegal discharge of wastewater containing inorganic and organic pollutants, combined pollution is common and needs urgent attention. Understanding the migration and transformation laws of pollutants in the environment has important guiding significance for environmental remediation. Due to the characteristics of adsorption, oxidation, and catalysis, manganese minerals play important role in the environment fate of pollutants.

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This work aims to establish an analytical and comparative model of pavement stormwater runoff and determine how to solve water pollution in saturated porous media pavements. Heavy metal element particles in the stormwater runoff due to the rainfall will cause inevitable environmental pollution. First, the pavement runoff and materials of saturated porous media are analyzed.

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The dynamic interactions among iron (Fe) oxides, dissolved organic matter (DOM) and toxic trace metals play crucial roles in risk assessment and environmental remediation. Although the inhibitory effects of DOM on the iron oxides transformation process have been studied previously, there is still a lack of mechanistic and quantitative understanding on the kinetics of Cr(VI) and ferrihydrite transformation in the present of DOM. In this study, we investigated the fractionation process of DOM on ferrihydrite and its influence on the fate of Cr(VI) and transformation of ferrihydrite.

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BACKGROUND Preterm skeletal muscle genesis is a paradigm for myogenesis. The role of mitogen-activating protein kinase kinase kinase kinase-3 (MAP4K3) in preterm skeletal muscle satellite cells myogenesis or its relationship to mammalian target of rapamycin complex 1 (mTORC1) activity have not been previously elaborated. MATERIAL AND METHODS Small interfering RNA (siRNA) interference technology was used to inhibit MAP4K3 expression.

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The ratio of patients with RPR constant positive more than 2 years despite receiving standard syphilis treatment has been reported to be 11.54%~31.3%.

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Signaling through the mammalian target of rapamycin (mTOR) in response to leucine modulates many cellular and developmental processes. However, in the context of satellite cell proliferation and differentiation, the role of leucine and mTORC1 is less known. This study investigates the role of leucine in the process of proliferation and differentiation of primary preterm rat satellite cells, and the relationship with mammalian target of rapamycin complex 1 (mTORC1) activation.

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Our aim was to explore in children with functional dyspepsia the effect of hippophae rhamnoides on the levels of plasma appetite factors and on their gastrointestinal motility. A hundred and twenty children with functional dyspepsia were randomly divided into three groups: Group I (treated with hippophae rhamnoides), Group II (treated with domperidone), and Group III (treated with hippophae rhamnoides plus domperidone). The treatment lasted for eight weeks.

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Objective: To study the effects of post-discharge formula (PDF) for preterm infants, breast milk (BM) and term infant formula (TF) on increase rates of body weight, length and head circumference in preterm and low-birth-weight infants (PLBWIs) from discharge to 3 months after birth, and to provide a reference for the choice of feeding pattern for PLBWIs.

Methods: A total of 407 PLBWIs discharged from the newborn departments of ten hospitals in Guangzhou City and Foshan City in Guangdong Province, China were chosen for this study. According to feeding pattern, they were assigned to three groups: PDF-fed (n=258), BM-fed (n=58) and TF-fed (n=91).

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Objective: We aimed to investigate the effects of early high-protein supplementation on low birth weight (LBW)-associated adult metabolic disturbances.

Materials And Methods: This study involved 32 LBW rat pups that were fed a normal protein (20% of energy intake) diet or high-protein (30% of energy intake) diet on their first 4 weeks of life. Sixteen rat pups with normal birth weight (NBW) fed the normal-protein diet were included as control.

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Objective: To investigate the effect of birth weight and early growth on body fat composition and insulin sensitivity.

Methods: The birth and growth data of 258 children of 6 to 7 years old in Guangzhou were collected from Jun.2009 to Feb.

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Objective: About 20 - 50% individuals with intrauterine growth retardation (IUGR) could not achieve catch-up growth and remain small in size till adulthood. There are few reports on the relation between intestinal development and body catch-up growth of IUGR. Studies showed that early "nutritional programming" would results in long-term effects on the body growth and organic function, and gastrointestinal development is closely related to the body development as well.

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Aim: To investigate the intestine and body development of intrauterine growth retardation (IUGR) rats under early different protein diet and to analyze the correlation between leptin and intestine and body development.

Methods: An IUGR rat model was established by food restriction of pregnant female rats. Fifty-six neonatal IUGR rats and 24 neonatal normal rats were randomly divided into normal control group (C group), IUGR model group (SC group), low protein diet IUGR group (SL group), and high protein diet IUGR group (SH group).

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Objective: To investigate the association between the expression of turnor necrosis factor alpha (TNF-alpha) mRNA in fat tissue of intrauterine growth retarded (IUGR) rats and insulin resistance, and the long-term effects of early different nutritional diet.

Methods: The IUGR rat model was established by food restriction of pregnant rats. A total of 32 newborn IUGR rats were randomly divided into 4 groups: IUGR model (S/N) group, IUGR high caloric diet (A) group, IUGR high caloric and high protein diet (B) group, IUGR high protein diet (C) group.

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Article Synopsis
  • Scientists studied how giving baby rats a special high-protein diet can help them grow better after they were born smaller than normal because their moms didn't eat enough during pregnancy.
  • They found that the rats on the high-protein diet grew the fastest and had better body and intestine measurements compared to other groups.
  • The results suggest that feeding these baby rats a nutritious diet right after birth helps them catch up in growth and develop their intestines better, which is important for getting nutrients.
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Objective: To investigate the effects of pregnancy malnutrition on the occurrence of insulin resistance (IR) in rat offspring during adult stage and to find out the relationship between TNF-alpha and IR; and to find out a reasonable early nutritional intervention measure for the prevention of IR, through giving different diets to offspring.

Methods: An IUGR model was built by maternal nutrition restriction. 80 newborn IUGR female pups were randomly divided into 4 groups, the mother rats were given the following diet respectively for 3 weeks after delivery, pups were fed by mother milk: (1) The IUGR (intrauterine growth retardation) rat model was used and the animals were divided into: IUGR control group (group S/N) fed with normal diet, (2) IUGR high-caloric diet group (group A), (3) IUGR high-protein and high-caloric diet group (group B) and (4) IUGR high-protein isocaloric diet group (group C).

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