Application of remdesivir in the preparation of drugs for the treatment of diabetic complications
A technology for the treatment of drugs and diabetes, applied in the field of biomedicine, to achieve the effect of improving application potential, market prospects, and good curative effect
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Embodiment 1
[0027] Example 1 db / db diabetes mouse model successfully constructed
[0028] Experimental Materials
[0029] Experimental animals: db / db diabetic mouse model, 8 weeks old, SPF grade, male, provided by Beijing Huafukang Animal Experiment Co., Ltd.
[0030] Blood glucose test strips: purchased from Roche Diagnostic Products (Shanghai) Co., Ltd.
[0031] 2. Experimental steps
[0032] 1. Select 7-week-old db / db male mice to perform adaptive feeding for 1 week, then conduct blood glucose testing experiments, measure fasting blood glucose and random blood glucose, and confirm that the mouse model is successfully constructed, and the phenotype of elevated blood glucose appears. Littermates of normal genotype BKS mice were selected as the negative control group.
[0033] 2. Select db / db male mice aged 12-15 weeks and their littermate normal genotype BKS mice, and take blood from the orbits to measure the changes in blood glucose, blood lipids, and renal function indicators of the...
Embodiment 2
[0046] Example 2 Remdesivir has a protective therapeutic effect on the kidneys of diabetic nephropathy mice
[0047] 1. Experimental materials
[0048] 1. Remdesivir: Protect from light, seal, and dry at 4°C. Take an appropriate amount of medicine, dissolve it in 0.5% sodium carboxymethylcellulose, and make it 8mg / mL (relative to 80mg / kg). The 8mg / mL solution was diluted serially. Each animal was orally given 0.2mL / 20g by gavage according to body weight. Ready to use.
[0049] 2. Solvent: 0.5% sodium carboxymethylcellulose (CMC).
[0050] 3. Positive control drug: metformin hydrochloride.
[0051] All the other are with embodiment 1.
[0052] 2. Experimental group
[0053] a) Control group (negative control): BKS mice
[0054] b) Model group (db / db mice) + solvent
[0055] c) Model group (db / db mice) + remdesivir (10mg / kg, po, QD)
[0056] d) Model group (db / db mice) + remdesivir (20mg / kg, po, QD)
[0057] e) Model group (db / db mice) + remdesivir (40mg / kg, po, QD) ...
Embodiment 3
[0070] Example 3 Remdesivir has a therapeutic effect on cardiovascular complications in diabetic mice
[0071] 1. Experimental materials
[0072] All the other are with embodiment 2.
[0073] 2. Experimental group
[0074] a) Control group (negative control): BKS mice
[0075] b) Model group (db / db mice) + solvent
[0076] c) Model group (db / db mice) + remdesivir (10mg / kg, po, QD)
[0077] d) Model group (db / db mice) + remdesivir (20mg / kg, po, QD)
[0078] e) Model group (db / db mice) + remdesivir (40mg / kg, po, QD)
[0079] f) Positive control: model group (db / db mice) + metformin hydrochloride (300mg / kg / d, po, QD)
[0080] po: oral administration, QD: once a day.
[0081] 3. Experimental steps
[0082] With embodiment 2.
[0083] 4. Experimental results and conclusions
[0084] The pathological mechanism of diabetic cardiovascular complications includes atherosclerosis, and dyslipidemia is an important risk factor.
[0085] Figure 5 It is the detection and analysi...
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