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1.
Chinese Journal of Endocrinology and Metabolism ; (12): 398-403, 2019.
Article in Chinese | WPRIM | ID: wpr-755658

ABSTRACT

Objective To analyze the clinical manifestations and possible gene mutation sites of Chinese patients in order to improve the clinician's understanding of CHARGE syndrome. Methods Clinical data were collected and blood samples were obtained from the proband of CHARGE syndrome and their relatives. The peripheral blood DNA was extracted and sequenced by PCR amplification. Mutation sites were verified by Sanger sequencing. Results For the first proband, a heterozygous mutation was detected in the intron 10 of CHD7 gene. His parents and brother did not have mutation. For the second proband, total repeat sequence in exon 7 of CHD7 gene was detected. His father carried the same mutation and his mother did not have mutation. Conclusion For the patients who are diagnosed with CHARGE syndrome based on the clinical manifestations, genetic mutation detection should be proceeded. It is useful for studying possible genetic pathogenesis and enhancing the awareness of clinicians.

2.
Chinese Journal of Endocrinology and Metabolism ; (12): 354-359, 2015.
Article in Chinese | WPRIM | ID: wpr-468577

ABSTRACT

To study the effects of forkhead transcription factor O1 (FoxO1) on the expression of type Ⅳ collagen and desmin in podocytes of diabetic rats.Streptozotocin-induced diabetic rats were divided into three groups:diabetic rats (DM group),rats transfected with blank lentiviral vectors (diabetes mellitus plus LV-pSC-GFP group,LV-NC group),and rats which were transfected with lentiviral vectors carrying constitutively active FoxO1 (diabetes mellitus plus LV-FoxO1-AAA group,LV-CA group).Rats which received an injection of diluent buffer served as normal control.At 2,4,and 8 weeks after transfection,the levels of urine albumin,blood glucose,blood urea nitrogen,and serum creatinine were measured.Realtime PCR and Western blotting were performed to measure the mRNA and protein levels of FoxO1,COL4A3,COL4A5,and desmin in the renal cortex.Moreover,light microscope and electron microscope were used to observe the structural changes in glomerulus and podocytes.Compared with LV-NC and DM group,in LV-CA group,there was a significant increase in the mRNA and protein levels of FoxO1,and a distinct decrease in the levels of urine albumin,blood urea nitrogen and serum creatinine of rats (except at the twoweek time point) (all P<0.05),the mRNA and protein levels of COL4A3,COL4A5,and desmin were all decreased (all P<0.05),and pathological changes in kidney were also improved.Upregulating the expression of FoxO1 by transfecting with constructed lentiviral vectors can definitely improve the abnormal expression of type Ⅳ collagen and desmin in podocytes of diabetic rats.

3.
Chinese Journal of Endocrinology and Metabolism ; (12): 155-161, 2015.
Article in Chinese | WPRIM | ID: wpr-461022

ABSTRACT

Objective To study the role and molecular mechanism of forkhead transcription factor O1 (FoxO1) on proliferation of mesangial cells( MCs) in diabetic rats. Methods Empty lentiviral vector( LV-pSC-GFP) and the constitutively active FoxO1 lentiviral vector(LV-CA-FoxO1) were constructed. Diabetic rat model was established and rats were divided into diabetes group(DM group), diabetes with LV-pSC-GFP group(NC group), and diabetes with LV-CA-FoxO1 group(CA group). The normal SD rats of the same age were considered as the normal control group(NG group). The lentiviral vector was injected into the renal cortex of diabetic rats in corresponding groups. Body weight, blood glucose, 24 h urinary protein, urine albumin, serum creatinine, and blood urea nitrogen was detected at the end of 2 weeks, 4 weeks, and 8 weeks. The ratio of kidney weight/ body weight was counted and the renal cortex was reserved for light microscopy, electron microscopy and frozen section after rats were sacrificed in different groups. The mRNA level of FoxO1 and p27Kip1 were detected by real-time PCR. The protein expressions of FoxO1, p-FoxO1, and p27Kip1 were tested by Western blotting. Results The renal pathological changes were obviously ameliorated in CA group. Compared with DM group, the mRNA and protein expression of FoxO1 and p27Kip1 were significantly increased in CA group (P 0. 05). The p-FoxO1 / FoxO1 ratio was decreased ( P 0. 05). Conclusion Overexpression of FoxO1 in kidneys of diabetic rats can inhibit the proliferation of mesangial cells, and may through up-regulating the expression of p27Kip1 delay the progression of diabetic nephropathy.

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