1.Extraction,Separation and Hypoglycemic Activity Analysis of Polysaccharides from Brassica rapa
Mengyu HOU ; Ruina XU ; Qingsong LI ; Shaoxuan LI ; Xinying MA ; Yaohui YE
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(10):219-228
ObjectiveTo optimize the extraction method for polysaccharides from turnip(Brassica rapa), and analyze and evaluate the primary structure of the isolated and purified turnip polysaccharide fraction(BP-1) and its hypoglycemic effects in diabetic zebrafish. MethodsTaking polysaccharide yield as the evaluation index, a semi-bionic extraction method was employed. Single-factor experiments and Box-Behnken response surface methodology were used to investigate three factors of solid-to-liquid ratio, extraction time and extraction temperature, in order to optimize the extraction process. BP-1 was isolated and purified using the Sevage method and DEAE-52 cellulose column chromatography. Structural characterization of the turnip polysaccharides was performed using ultraviolet-visible spectrophotometry(UV), gas chromatography-mass spectrometry(GC-MS), Congo red assay, and Fourier-transform infrared spectroscopy(FT-IR) to determine purity, monosaccharide composition, triple-helix structure, and functional groups. The microstructure of the polysaccharides was observed using scanning electron microscopy(SEM) and atomic force microscopy(AFM). Zebrafish were divided into the blank group(adding E3 medium), and BP-1-1, BP-1-10, BP-1-50, BP-1-200, BP-1-1 000 groups(adding BP-1 solutions at concentrations of 1, 10, 50, 200, 1 000 mg·L-1, respectively), and zebrafish embryos were subjected to a 96-hour exposure experiment. The maximum tolerated concentration of BP-1 in zebrafish was determined by evaluating its effects on phenotype, survival rate, malformation rate, and heart rate. Experimental animals were randomly divided into the blank group, model group, BP-1-10 group(10 mg·L-1), BP-1-50 group(50 mg·L-1), and BP-1-200 group(200 mg·L-1). The blank group was cultured in E3 medium, the model and treatment groups were induced to establish a diabetic model in 4 day-post-fertilization(dpf) zebrafish embryos using 10 g·L-1 of glucose combined with 500 µmol·L-1 of alloxan. The treatment groups received corresponding doses of BP-1 solution, while the blank and model groups received an equal volume of saline. Glucose and insulin(INS) levels were measured using enzyme-linked immunosorbent assay(ELISA) kits, the effects on the liver were observed by hematoxylin-eosin(HE) histopathological sections. The mRNA expression levels of glucagon(Glucagon), insulin(Insa), and phosphoenolpyruvate carboxykinase 1(PCK1) were detected with real-time fluorescence quantitative polymerase chain reaction(Real-time PCR). ResultsThe optimized extraction conditions were determined as follows:solid-to-liquid ratio of 1∶40(g·mL-1), extraction time of 66 min, and extraction temperature of 79 ℃. Under these conditions, the yield of turnip polysaccharides was (10.34±0.96)%. UV analysis indicated that BP-1 contained no proteins or nucleic acids, GC-MS analysis revealed that BP-1 consisted of six monosaccharides(arabinose, rhamnose, ribose, mannose, galactose and glucose). Congo red assay indicated that the molecular conformation did not exhibit a triple-helix structure, FT-IR analysis showed the presence of α-glycosidic bonds and uronic acids, SEM analysis revealed an irregular flaky structure with a flat and smooth surface, AFM analysis suggested that the aggregated structure might be formed by the entanglement of molecular chains and intramolecular hydrogen bonding. The maximum tolerated concentration of BP-1 in zebrafish over 96 h was determined to be 200 mg·L-1. Pharmacodynamic results showed that, compared with the blank group, the model group exhibited significantly increased glucose levels and significantly decreased INS levels(P<0.01). Compared with the model group, the BP-1-50 group significantly reduced glucose levels and increased INS levels(P<0.05). Histopathological examination of liver tissue revealed that various doses of BP-1 had a certain reparative effect on damaged liver tissue. The liver tissue structure in the BP-1-200 group was nearly normal, with hepatocytes appearing plump. Real-time PCR results showed that, compared with the blank group, the model group exhibited significantly upregulated mRNA expressions of Glucagon and PCK1, and significantly downregulated mRNA expression of Insa(P<0.01). Compared with the model group, the BP-1-50 and BP-1-200 groups showed significantly downregulated mRNA expressions of Glucagon and PCK1, and significantly upregulated mRNA expression of Insa(P<0.01). ConclusionThe semi-bionic extraction method for turnip polysaccharides yields a high extraction rate, is simple to operate, has low costs, making it suitable for large-scale industrial production. BP-1 consists of six monosaccharides, contains α-glycosidic bonds and uronic acids, exhibits hypoglycemic activity, and provides a certain protective effect on the liver of alloxan-induced diabetic model zebrafish.
2.Extraction,Separation and Hypoglycemic Activity Analysis of Polysaccharides from Brassica rapa
Mengyu HOU ; Ruina XU ; Qingsong LI ; Shaoxuan LI ; Xinying MA ; Yaohui YE
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(10):219-228
ObjectiveTo optimize the extraction method for polysaccharides from turnip(Brassica rapa), and analyze and evaluate the primary structure of the isolated and purified turnip polysaccharide fraction(BP-1) and its hypoglycemic effects in diabetic zebrafish. MethodsTaking polysaccharide yield as the evaluation index, a semi-bionic extraction method was employed. Single-factor experiments and Box-Behnken response surface methodology were used to investigate three factors of solid-to-liquid ratio, extraction time and extraction temperature, in order to optimize the extraction process. BP-1 was isolated and purified using the Sevage method and DEAE-52 cellulose column chromatography. Structural characterization of the turnip polysaccharides was performed using ultraviolet-visible spectrophotometry(UV), gas chromatography-mass spectrometry(GC-MS), Congo red assay, and Fourier-transform infrared spectroscopy(FT-IR) to determine purity, monosaccharide composition, triple-helix structure, and functional groups. The microstructure of the polysaccharides was observed using scanning electron microscopy(SEM) and atomic force microscopy(AFM). Zebrafish were divided into the blank group(adding E3 medium), and BP-1-1, BP-1-10, BP-1-50, BP-1-200, BP-1-1 000 groups(adding BP-1 solutions at concentrations of 1, 10, 50, 200, 1 000 mg·L-1, respectively), and zebrafish embryos were subjected to a 96-hour exposure experiment. The maximum tolerated concentration of BP-1 in zebrafish was determined by evaluating its effects on phenotype, survival rate, malformation rate, and heart rate. Experimental animals were randomly divided into the blank group, model group, BP-1-10 group(10 mg·L-1), BP-1-50 group(50 mg·L-1), and BP-1-200 group(200 mg·L-1). The blank group was cultured in E3 medium, the model and treatment groups were induced to establish a diabetic model in 4 day-post-fertilization(dpf) zebrafish embryos using 10 g·L-1 of glucose combined with 500 µmol·L-1 of alloxan. The treatment groups received corresponding doses of BP-1 solution, while the blank and model groups received an equal volume of saline. Glucose and insulin(INS) levels were measured using enzyme-linked immunosorbent assay(ELISA) kits, the effects on the liver were observed by hematoxylin-eosin(HE) histopathological sections. The mRNA expression levels of glucagon(Glucagon), insulin(Insa), and phosphoenolpyruvate carboxykinase 1(PCK1) were detected with real-time fluorescence quantitative polymerase chain reaction(Real-time PCR). ResultsThe optimized extraction conditions were determined as follows:solid-to-liquid ratio of 1∶40(g·mL-1), extraction time of 66 min, and extraction temperature of 79 ℃. Under these conditions, the yield of turnip polysaccharides was (10.34±0.96)%. UV analysis indicated that BP-1 contained no proteins or nucleic acids, GC-MS analysis revealed that BP-1 consisted of six monosaccharides(arabinose, rhamnose, ribose, mannose, galactose and glucose). Congo red assay indicated that the molecular conformation did not exhibit a triple-helix structure, FT-IR analysis showed the presence of α-glycosidic bonds and uronic acids, SEM analysis revealed an irregular flaky structure with a flat and smooth surface, AFM analysis suggested that the aggregated structure might be formed by the entanglement of molecular chains and intramolecular hydrogen bonding. The maximum tolerated concentration of BP-1 in zebrafish over 96 h was determined to be 200 mg·L-1. Pharmacodynamic results showed that, compared with the blank group, the model group exhibited significantly increased glucose levels and significantly decreased INS levels(P<0.01). Compared with the model group, the BP-1-50 group significantly reduced glucose levels and increased INS levels(P<0.05). Histopathological examination of liver tissue revealed that various doses of BP-1 had a certain reparative effect on damaged liver tissue. The liver tissue structure in the BP-1-200 group was nearly normal, with hepatocytes appearing plump. Real-time PCR results showed that, compared with the blank group, the model group exhibited significantly upregulated mRNA expressions of Glucagon and PCK1, and significantly downregulated mRNA expression of Insa(P<0.01). Compared with the model group, the BP-1-50 and BP-1-200 groups showed significantly downregulated mRNA expressions of Glucagon and PCK1, and significantly upregulated mRNA expression of Insa(P<0.01). ConclusionThe semi-bionic extraction method for turnip polysaccharides yields a high extraction rate, is simple to operate, has low costs, making it suitable for large-scale industrial production. BP-1 consists of six monosaccharides, contains α-glycosidic bonds and uronic acids, exhibits hypoglycemic activity, and provides a certain protective effect on the liver of alloxan-induced diabetic model zebrafish.
3.Study on the mechanism of Brassica rapa polysaccharide in improving alcoholic liver injury of mice based on intestinal microbiota and metabolomics
Xinying MA ; Ruina XU ; Shaoxuan LI ; Ruiyin YE ; Yuexing MA ; Yaohui YE
China Pharmacy 2025;36(16):2005-2011
OBJECTIVE To investigate the effects of Brassica rapa polysaccharide (BRP) on the Toll-like receptor 4 (TLR4)/ myeloid differentiation factor 88 (MyD88)/nuclear factor-κB (NF-κB), AMP-activated protein kinase (AMPK)/sterol regulatory element-binding protein-1c (SREBP-1c) pathways, intestinal microbiota and liver metabolism of mice with alcoholic liver injury, and preliminarily elucidate its mechanism for improving alcoholic liver injury. METHODS Seventy-two mice were randomly divided into blank group (normal saline), model group (normal saline), bifendate group (positive control, 300 mg/kg) and BRP low-, medium- and high-dose groups (75, 150 and 300 mg/kg). They were given relevant medicine intragastrically, once a day, for consecutive 9 d. After the last administration, mice in all groups except the blank group were gavaged with white liquor to establish an alcoholic liver injury model. The levels of alanine aminotransferase and aspartate aminotransferase in serum, total cholesterol, triglycerides, low-density lipoprotein cholesterol, interleukin-6, interleukin-1β, tumor necrosis factor- α and lipopolysaccharide, as well as protein expressions of TLR4, MyD88, NF-κB p65, phosphorylated NF-κB p65 (p-NF-κB p65), AMPK, phosphorylated AMPK (p-AMPK), and SREBP-1c were all detected; pathological morphological changes of liver tissue and colon were observed. 16S rRNA was used to detect the changes of intestinal microbiota in mice, and metabolomics 2022B02058) technology was used to detect the changes of liver metabolites. RESULTS Compared with model group, the above biochemical indicators and the protein expressions of TLR4, MyD88, p-NF-κB p65, and SREBP-1c in liver tissues were all significantly decreased (P<0.05 or P<0.01), while the protein expression of p-AMPK was significantly increased (P<0.05 or P<0.01). Pathological damage to liver and colon tissues was significantly improved. Medium dose of BRP could increase the relative abundance of Akkermansia, norank_f_Muribaculaceae and Lachnospiraceae_NK4A136_group in the intestinal contents of mice to a certain extent, and decrease the relative abundance of Lactobacillus and Escherichia-Shigella. A total of 9 differential metabolites were identified by metabolomics, including homogentisic acid, myristyl lysophosphatidylcholine, which were involved in pathways such as tyrosine metabolism. CONCLUSIONS BRP can regulate the relative abundance of beneficial flora, reduce the relative abundance of harmful flora, improve the structure of intestinal colonies, reduce the entry of pro-inflammatory mediator lipopolysaccharides into liver tissue, affect metabolic pathways such as tyrosine metabolism and the expression of TLR4/MyD88/NF- κB and AMPK/SREBP-1c signaling pathways in the liver, and ultimately improve alcoholic liver injury.
4.Ethacrynic acid targets GSTM1 to ameliorate obesity by promoting browning of white adipocytes.
Zhaomeng CUI ; Yang LIU ; Wei WAN ; Yuyan XU ; Yehui HU ; Meng DING ; Xin DOU ; Ruina WANG ; Hailing LI ; Yongmei MENG ; Wei LI ; Wei JIANG ; Zengxia LI ; Yiming LI ; Minjia TAN ; Dengke K MA ; Yu DING ; Jun O LIU ; Cheng LUO ; Biao YU ; Qiqun TANG ; Yongjun DANG
Protein & Cell 2021;12(6):493-501
5.A comparative study of visual quality between implantable collamer lens implantation and femtosecond LASIK for myopia
Ruina, WANG ; Hongliang, GUO ; Ting, MA ; Houcheng, LIANG ; Tan, LONG
Chinese Journal of Experimental Ophthalmology 2017;35(9):833-837
Background The incidence of myopia is gradually increasing,and how to choose a better corrective method of myopia for the best visual demand is very important.Objective This study was to compare visual quality of implantable collamer lens (ICL) implantation with femtosecond laser in situ keratomileusis (FSLASIK) for moderate and high myopia using double-pass optical quality analysis system (OQAS).Methods A non-randomized controlled clinical trail was performed.Fifty-two eyes with-4.00 to-9.00 D of 26 consecutive patients were included in NO.1 Hospital of Xi'an from January 2015 to January 2016.Twenty-four eyes of 12 patients with the corneal thickness <500 μm received ICL implantation as ICL group and 28 eyes of 14 patients which corneal thickness was ≥500 μm underwent FS-LASIK surgery as FS-LASIK group.The demography was matched between the two groups (all at P>0.05).All the patients were followed-up for 3 months after surgery.The preoperative best corrected distance visual acuity (BCDVA),spherical equivalent (SE),postoperative uncorrected distance visual acuity (UCDVA),BCDVA and SE were examined and compared between two groups.The parameters from OQAS were evaluated and intergrouply compared,including the objective scattering inders (OSI),modulation transfer function (MTF) cut off frequency,Strehl ratio and OQAS values under the contrast of 100%,20% and 9% (OV100,OV20,OV9).Results The postoperative BCDVA was not significantly different from preoperative UCDVA in both ICL group and FS-LASIK group (-0.04±t0.10 vs.0.05±0.12;-0.07±0.12 vs.0.00±0.12) (t=3.128,2.358,both at P>0.05).No statistically significant differnces were found in SE,UCDVA and BCDVA after operation between ICL group and FS-LASIK group (t =1.292,0.900,-0.653,all at P>0.05).OQAS examination showed that MTF cut off,OSI,Strehl ratio,OV100 were not significantly different after operation between ICL group and FS-LASIK group (t=-2.032,-1.440,-0.224,all at P>0.05).The postoperative OV20 and OV9 were 0.82±0.14 and 0.80±0.21 in the ICL group,which were significantly higher than those in the FS-LASIK group(0.59±0.15 and 0.47±0.13) (t =4.105,4.702,both at P<0.05).Conclusions Both ICL implantation and FS-LASIK provide good optical and visual quality for moderate to high myopic eyes,and ICL appears to have a better visual quality in comparison with FS-LASIK under the contrasts of 20% and 9%.
6.Segmental tracheal resection and anastomosis for the treatment of cicatricial stenosis in cervical tracheal
Pengcheng CUI ; Jiasheng LUO ; Zhi LIU ; Ka BIAN ; Zhihua GUO ; Ruina MA
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2016;51(2):95-99
Objective To evaluate the efficacy of segmental tracheal resection with end-to-end anastomosis for cicatricial cervical tracheal stenosis.Methods The clinical outcomes of 40 patients treated with tracheal resection were retrospectively reviewed.There were 28 male patients and 12 female patients with the age ranged from 6 to 64 years (mean 33.7 years).The degree of stenosis was classified according to Myer-Cotton classification as follows:grade Ⅱ (n =7),grade Ⅲ (n =22) and grade Ⅳ (n =11).The stenosis extension ranged from 1.0 to 4.3 cm (mean 2.5 cm).The causes of the stenosis were postintubation (n =33),cervical trauma (n =6) and resection of tracheal neoplasm (n =1).Results Thirty-four(85.0%) patients were decannulated and 6 failed.Of the 6 patients failed,4 were decannulated after reoperation with the sternohyoid myocutaneous flap or thyroid alar cartilage graft.Complications occurred in 10 patients.In 8 patients granulation tissues formed at the site of the tracheal anastomosis,which needed endoscopic resction,and in 2 patients anastomosic dehiscence occurred.No injury to recurrent laryngeal nerve or trachoesophageal fistula occurred.Conclusion Segmental tracheal resection with end-to-end anastomosis is an effective surgical method for tracheal stenosis,which has a higher successful rate for primary operation and shorter therapeutic period.
7.Management of subglottic stenosis in children with endoscopic balloon dilation
Pengcheng CUI ; Jiasheng LUO ; Daqing ZHAO ; Zhihua GUO ; Ruina MA
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2016;51(4):286-288
Objective To evaluate the efficacy of endoscopic balloon dilation for subglottic stenosis.Methods The clinical outcomes of 9 pediatric patients treated with balloon dilation were retrospectively analyzed.There were 8 male and Ⅰ female.Their age ranged from 7 months to 7 years (mean 2.5 years).The degree of stenosis was classified according to Myer-Cotton classification as follows:grade Ⅱ (n =7) and grade Ⅲ (n =2).The causes of the stenosis were postintubation lesions (n =8) and laryngeal penetrating trauma (n =1).Results The patients had undergone 1 to 3 dilations with an average of 1.8 procedures per patient.Six (66.7%) patients were decannulated.Among them,4 (44.4%) were decannulated after one dilation procedure.Pneumothoraces occurred in 2 children postoperatively.Conclusion Endoscopic balloon dilation is an effective,relatively safe and minimally invasive surgical method for patients with low-grade subglottic stenosis.
9.Effects of umbilical cord Wharton’s jelly mesenchymal stem cell transplantation on the expression of inflammatory factors in rats with spinal cord injury
Shanshan MA ; Ruina QU ; Yi TIAN ; Ning YAO ; Yuanbo CUI ; Kang HAN ; Qu XING ; Bo YANG ; Fangxia GUAN
Chinese Journal of Tissue Engineering Research 2015;(23):3729-3735
BACKGROUND:The production and release of a large amount of inflammatory factors caused by immune system inflammatory response mainly contributes to secondary spinal cord injury. OBJECTIVE:To investigate the effects of umbilical cord Wharton’s jely mesenchymal stem cel transplantation on repair of injured neurological function and expression of inflammatory factors monocyte chemoattractant protein 1 and interleukin 10 in rats with acute spinal cord injury. METHODS: Eighty-one healthy adult male Sprague-Dawley rats were randomly and equaly divided into sham operation, model and cel transplantation groups, with 27 rats per group. Rats in the latter two groups were subjected to hemisection of the spinal cord to establish acute spinal cord injury models. Rat models in the cel transplantation group received umbilical cord Wharton’s jely mesenchymal stem cel injection (1×106)via the tail vein. Rat neurological function was evaluated using the BBB score at different time points after spinal cord injury. The expression of monocyte chemoattractant protein 1 and interleukin 10 in injured spinal cord tissue was detected using ELISA assay at different time points after spinal cord injury. Migration and neuronal differentiation of umbilical cord Wharton’s jely mesenchymal stem cels in the injured spinal cord tissue were determined using immunohistochemical staining method. RESULTS AND CONCLUSION:Compared with the sham operation and model groups, rat neurological function was significantly recovered in the cel transplantation group (P < 0.05). Compared to the model group, monocyte chemoattractant protein 1 level in the serum and monocyte chemoattractant protein 1 mRNA and protein expression in the injured spinal cord tissue were significantly lower (P < 0.05), but interleukin 10 mRNA and protein expression in the injured spinal cord tissue was significantly higher (P < 0.05), in the cel transplantation group. In the cel transplantation group, umbilical cord Wharton’s jely mesenchymal stem cels could migrate to the injured region and express glial fibrilary acidic protein. These findings suggest that umbilical cord Wharton’s jely mesenchymal stem cels promote rat neurological function recovery by regulating the inflammatory response in the injured spinal cord tissue, which is likely to be one of mechanisms by which transplantation of umbilical cord Wharton’s jely mesenchymal stem cels treats spinal cord injury.

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