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1.
Journal of Kunming Medical University ; (12): 126-129, 2016.
Article in Chinese | WPRIM | ID: wpr-510835

ABSTRACT

GCC/PKG/VASP,PKA/VASP et.al are associated with the occurrence and development of colorectal cancer.As one of the important signaling molecules of above signal pathways,VASP has constributed to the invasion,metastasis,apoptosis,angiogenesis and other events of colorectal cancer.The role of VASP signaling pathways in the development of CRC and its potential clinlic significance are reviewed in this article.

2.
Chinese Journal of Tissue Engineering Research ; (53): 173-175, 2006.
Article in Chinese | WPRIM | ID: wpr-408425

ABSTRACT

BACKGROUND: Resistin is an adipocyte-derived polypeptides. While central obesity can result in insulin resistance and type 2 diabetes mellitus.OBJECTIVE: To compare the expression of resistin protein in subcutaneous adipose tissue of normal human abdominal and thigh, and to investigate the role of resistin in central obesity bringing insulin resistance.DESIGN: Controlled observational experiment.SETTING: Department of Endocrinology, Tongji Hospital Affiliated to Tongji Medical College, Huazhong University of Science and Technology.PARTICIPANTS: Totally 20 patients hospitalized between January and April 2003 at the Department of Surgery of Tongji Hospital Affiliated to Tongji Medical College, Huazhong University of Science and Technology were selected. All cases were divided into abdominal fat group with 12 cases and thigh fat group with 8 cases based on the site of fat tissue.METHODS: ①Blood pressure, height, body mass were measured and body mass index (BMI), percentage of body fat (BF%) in vivo (according to formulas induced by data from white people) were calculated: Male=1.2×body mass (kg)+height-2 (M-2)+0.23×age-16.2; Female =1.2× body mass (kg)×height-2 (m-2)+0.23×age-5.4. ②Fasting blood glucose was measured with glucose oxidase assay. ③Protein was isolated with lysis buffer and protein concentration was identified with Bradford method; The expression of resistin protein was measured with Western-blot method.MAIN OUTCOME MEASURES: Blood pressure, BMI, BF%; fasting blood glucose and expression of resistin protein of all cases of the two groups.RESULTS: Totally 20 patients were involved the result analysis. ①There were no significant difference in fast blood glucose, systolic blood pressure (SBP), diastolic blood pressure (DBP), body mass index (BMI) and BF%between two groups (P > 0.05). ②Expression levels (A) of resistin protein in abdominal subcutaneous adipose tissues was (14 942±6 076), which was more higher than that in thigh subcutaneous adipose tissues (39 421±6 087). There was markedly significant difference (P < 0.01).CONCLUSION: The expression of resistin protein is much greater in abdominal fat depots than in thigh fat depots, which has evaluative value for studying the episode of central obesity-induced insulin resistance and type 2 diabetes mellitus.

3.
Chinese Journal of Tissue Engineering Research ; (53): 158-160, 2006.
Article in Chinese | WPRIM | ID: wpr-408315

ABSTRACT

BACKGROUND: Many basic researches and clinical observations prove that compound preparation of gingko extract and dipyridamole has an obvious effect on microcirculation. Methycobal is commonly used to repair nerve on clinic. Combination of compound preparation and methycobal has a great effect on treating diabetic peripheral neuropathy (DPN).OBJECTIVE: To observe the improved effect of combination of compound preparation and methycobal on conduction velocity of common peroneal nerve and hemorheology of DPN patients.DESIGN: Randomized controlled design and validated experiment on the basis of patients.SETTING: Department of Comprehensive Medicine, Tongji Hospital of Tongji Medic.al College, Huazhong University of Science and Technology.PARTICIPANTS: A total of 120 patients with type 2 diabetes mellitus (DM) combined with DPN were selected from the Department of Comprehensive Medicine in Tongji Hospital of Tongji Medical College affiliated to Huazhong University of Science and Technology between January 2002 and January 2005. Subjects were randomly divided into treatment group and control group with 60 in each group. All cases were consent.METHODS: Cases in the treatment group were venously dripped with 25 mL compound preparation and 250 mL saline (Guizhou Yibai Pharmacology Company Limited) once a day; meanwhile, 500 μg methycobal (Eisai Community, Japan) was intramuscularly injected into cases once a day for 4 successive weeks. Cases in the control group were intramuscularly injected with 500 μg methycobal once a day for 4 weeks.MAIN OUTCOME MEASURES: Conduction velocity of peroneal nerve and hemorheological indexes (blood viscosity, hematocrit and aggregative rate of platelet) of patients in the two groups at 1 day before treatment and at 4 weeks after treatment.RESULTS: A total of 120 patients were involved in the final analysis. ① Conduction velocity of motor nerve was faster in treatment group after treatment than that before treatment and that in control group after treatment [(45.6±4.3), (38.5±3.8), (41.4±6.2) m/s, t=9.585, 4.312, P < 0.01]; conduction velocity of sensory nerve was faster in treatment group after treatment than that before treatment and that in control group after treatment [(45.8±4.2), (36.7±4.8), (38.2±4.9) m/s, t=11.047, 9.120, P < 0.01]. ② Values of high-shearing blood viscosity, low-shearing blood viscosity and plasma viscosity were lower in treatment group after treatment than those before treatment and those in control group after treatment (P < 0.01). ③Value of hematocrit was lower in treatment group after treatment than those before treatment and those in control group after treatment [(41.32 ±3.56)%,(46.32±3.43)%, (44.32±4.49)%, t=7.834,4.05, P < 0.01]. ④ Aggregative rate of platelet was lower in treatment group after treatment than those before treatment and those in control group after treatment [(31.35±2.11)%,(48.44±2.68)%, (45.91±3.54)%, t=38.810, 27.367, P < 0.01].CONCLUSION: Combination ofcompound preparation and methycobal can increase nerve conduction velocity and decrease blood viscosity and aggregative rate of platelet, and it is also an effective method for treating DPN.

4.
Journal of Huazhong University of Science and Technology (Medical Sciences) ; (6): 288-91, 2006.
Article in English | WPRIM | ID: wpr-634364

ABSTRACT

The expression of resistin protein in normal human abdominal, thigh, pregnant women abdominal, non-pregnant women abdominal subcutaneous adipose tissue and placenta and the relationship between obesity, type 2 diabetes mellitus (T2DM), pregnant physiological insulin resistance (IR) and gestational diabetes mellitus (GDM) was investigated. The expression of resistin protein in normal human abdominal, thigh, pregnant women abdominal, non-pregnant women abdominal subcutaneous adipose tissue and placenta was detected by using Western blotting method. Fasting serum glucose concentration was measured by glucose oxidase assay. Serum cholesterol (CHOL), serum triglycerides (TG), serum HDL cholesterol (HDL-C) and serum LDL cholesterol (LDL-C) were determined by full automatic biochemical instrument. Fasting insulin was measured by enzyme immunoassay to calculate insulin resistance index (IRI). Height, weight, systolic blood pressure (SBP) and diastolic blood pressure (DBP) were measured to calculate body mass index (BMI) and body fat percentage (BF %). Resistin protein expression in pregnant women placental tissue (67 905 +/- 8441) (arbitrary A values) was much higher than that in subcutaneous adipose tissue in pregnant women abdomen (40 718 +/- 3818, P < 0.01), non-pregnant women abdomen (38 288 +/- 2084, P < 0.01), normal human abdomen (39 421 +/- 6087, P < 0.01) and thigh (14 942 +/- 6706, P < 0.001) respectively. The resistin expression in abdominal subcutaneous adipose tissue showed no significant difference among pregnant, non-pregnant women and normal human, but much higher than that in thigh subcutaneous adipose tissue (P < 0.001). Pearson analysis revealed that resistin protein was correlated with BMI (r = 0.42), fasting insulin concentration (r = 0.38), IRI (r = 0.34), BF % (r = 0.43) and fasting glucose (r = 0.39), but not with blood pressure, CHOL, TG, HDL-C and LDL-C. It was suggested that resistin protein expression in human abdominal subcutaneous adipose tissue was much higher than that in human thigh subcutaneous adipose tissue. Resistin was closely related with central obesity, leading to IR, subsequently obesity and T2DM. Resistin protein expression in placental tissue was much higher than that in subcutaneous adipose tissue in normal human abdomen, pregnant abdomen, non-pregnant women abdomen and thigh. It was indicated that resistin protein could be secreted from human placental tissue. Resistin might be one of the factors that lead to pregnant physiological IR and GDM.

5.
Journal of Huazhong University of Science and Technology (Medical Sciences) ; (6): 288-291, 2006.
Article in Chinese | WPRIM | ID: wpr-266389

ABSTRACT

The expression of resistin protein in normal human abdominal, thigh, pregnant women abdominal, non-pregnant women abdominal subcutaneous adipose tissue and placenta and the relationship between obesity, type 2 diabetes mellitus (T2DM), pregnant physiological insulin resistance (IR) and gestational diabetes mellitus (GDM) was investigated. The expression of resistin protein in normal human abdominal, thigh, pregnant women abdominal, non-pregnant women abdominal subcutaneous adipose tissue and placenta was detected by using Western blotting method.Fasting serum glucose concentration was measured by glucose oxidase assay. Serum cholesterol (CHOL), serum triglycerides (TG), serum HDL cholesterol (HDL-C) and serum LDL cholesterol (LDL-C) were determined by full automatic biochemical instrument. Fasting insulin was measured by enzyme immunoassay to calculate insulin resistance index (IRI). Height, weight, systolic blood pressure (SBP) and diastolic blood pressure (DBP) were measured to calculate body mass index (BMI) and body fat percentage (BF %). Resistin protein expression in pregnant women placental tissue (67 905±8441) (arbitrary A values) was much higher than that in subcutaneous adipose tissue in pregnant women abdomen (40 718 ± 3818, P < 0.01), non-pregnant women abdomen (38 288±2084, P<0.01), normal human abdomen (39 421±6087, P<0.01)and thigh (14 942 ±6706, P<0. 001) respectively. The resistin expression in abdominal subcutaneous adipose tissue showed no significant difference among pregnant, non-pregnant women and normal human, but much higher than that in thigh subcutaneous adipose tissue (P<0. 001). Pearson analysis revealed that resistin protein was correlated with BMI (r=0.42), fasting insulin concentration (r=0.38),IRI (r=0. 34), BF % (r=0.43) and fasting glucose (r=0. 39), but not with blood pressure,CHOL, TG, HDL-C and LDL-C. It was suggested that resistin protein expression in human abdominal subcutaneous adipose tissue was much higher than that in human thigh subcutaneous adipose tissue. Resistin was closely related with central obesity, leading to IR, subsequently obesity and T2DM. Resistin protein expression in placental tissue was much higher than that in subcutaneous adipose tissue in normal human abdomen, pregnant abdomen, non-pregnant women abdomen and thigh. It was indicated that resistin protein could be secreted from human placental tissue. Resistin might be one of the factors that lead to pregnant physiological IR and GDM.

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