1.Preparation and characterization of a novel self-assembled polypeptide hydrogel sustainably releasing platelet-rich plasma growth factors
Fengying QI ; Lei WANG ; Dongdong LI ; Shaoduo YAN ; Kun LIU ; Yizhe ZHENG ; Zixin HE ; Xiaoyang YI ; Donggen WANG ; Qiuxia FU ; Jun LIANG
Chinese Journal of Tissue Engineering Research 2024;28(15):2364-2370
BACKGROUND:Due to the sudden release and the rapid removal by proteases,platelet-rich plasma hydrogel leads to shorter residence times of growth factors at the wound site.In recent years,researchers have focused on the use of hydrogels to encapsulate platelet-rich plasma in order to improve the deficiency of platelet-rich plasma hydrogels. OBJECTIVE:To prepare self-assembled polypeptide-platelet-rich plasma hydrogel and to explore its effects on the release of bioactive factors of platelet-rich plasma. METHODS:The self-assembled polypeptide was synthesized by the solid-phase synthesis method,and the solution was prepared by D-PBS.Hydrogels were prepared by mixing different volumes of polypeptide solutions with platelet-rich plasma and calcium chloride/thrombin solutions,so that the final mass fraction of polypeptides in the system was 0.1%,0.3%,and 0.5%,respectively.The hydrogel state was observed,and the release of growth factors in platelet-rich plasma was detected in vitro.The polypeptide self-assembly was stimulated by mixing 1%polypeptide solution with 1%human serum albumin solution,so that the final mass fraction of the polypeptide was 0.1%,0.3%,and 0.5%,respectively.The flow state of the liquid was observed,and the rheological mechanical properties of the self-assembled polypeptide were tested.The microstructure of polypeptide(mass fraction of 0.1%and 0.001%)-human serum albumin solution was observed by scanning electron microscope and transmission electron microscope. RESULTS AND CONCLUSION:(1)Hydrogels could be formed between different volumes of polypeptide solution and platelet-rich plasma.Compared with platelet-rich plasma hydrogels,0.1%and 0.3%polypeptide-platelet-rich plasma hydrogels could alleviate the sudden release of epidermal growth factor and vascular endothelial growth factor,and extend the release time to 48 hours.(2)After the addition of human serum albumin,the 0.1%polypeptide group still exhibited a flowing liquid,the 0.3%polypeptide group was semi-liquid,and the 0.5%polypeptide group stimulated self-assembly to form hydrogel.It was determined that human serum albumin in platelet-rich plasma could stimulate the self-assembly of polypeptides.With the increase of the mass fraction of the polypeptide,the higher the storage modulus of the self-assembled polypeptide,the easier it was to form glue.(3)Transmission electron microscopy exhibited that the polypeptide nanofibers were short and disordered before the addition of human serum albumin.After the addition of human serum albumin,the polypeptide nanofibers became significantly longer and cross-linked into bundles,forming a dense fiber network structure.Under a scanning electron microscope,the polypeptides displayed a disordered lamellar structure before adding human serum albumin.After the addition of human serum albumin,the polypeptides self-assembled into cross-linked and densely arranged porous structures.(4)In conclusion,the novel polypeptide can self-assemble triggered by platelet-rich plasma and the self-assembly effect can be accurately adjusted according to the ratio of human serum albumin to polypeptide.This polypeptide has a sustained release effect on the growth factors of platelet-rich plasma,which can be used as a new biomaterial for tissue repair.
2.Role of AQP4 in dexmedetomidine-induced reduction of blood-brain barrier permeability in mechanically ventilated mice: relationship with PKC
Min QU ; Wenbo SUN ; Xiuqing ZHANG ; Wang LIU ; Lei CHEN ; Zilong QI ; Dongdong HUANG
Chinese Journal of Anesthesiology 2024;44(3):318-323
Objective:To evaluate the role of aquaporin 4 (AQP4) in dexmedetomidine-induced reduction of blood-brain barrier permeability in mechanically ventilated mice and the relationship with protein kinase C (PKC).Methods:One hundred and fifty clean-grade healthy male C57BL6 mice, weighing 20-25 g, aged 8-12 weeks, were divided into 5 groups ( n=30 each) using a random number table method: control group (group C), mechanical ventilation group (group V), LY317615 group (group L), dexmedetomidine group (group D), and dexmedetomidine+ PMA group (group DP). Group C spontaneously breathed air for 6 h. The animals were mechanically ventilated for 6 h in group V. PKC inhibitor LY3176 15 μg/kg was intraperitoneally injected at 30 min before mechanical ventilation in group L. Dexmedetomidine 50 μg/kg was intraperitoneally injected at 30 min before mechanical ventilation in D and DP groups. PKC activator PMA 15 μg/kg was intraperitoneally injected at 60 min before mechanical ventilation in group DP. Mice were anesthetized at 1 day after mechanical ventilation, then sacrificed and hippocampal tissues were taken for microscopic examination of pathological changes in the hippocampal CA1 and CA3 areas (with a light microscope). Brain tissues were also taken to measure the water content and content of Evans blue (EB) and to detect the expression of PKC and AQP4 (by Western blot). The cognitive function was evaluated using a novel object recognition task at 3 days after mechanical ventilation. Results:Compared with group C, the water content and EB content of brain tissues were significantly increased after mechanical ventilation, the expression of PKC and AQP4 in brain tissues was up-regulated, the percentage of novel object exploration and discrimination index were decreased ( P<0.05), and the histopathological damage in the hippocampal CA1 and CA3 areas was aggravated in group V and group DP. Compared with group V, the water content and EB content of brain tissues were significantly decreased after mechanical ventilation, the expression of PKC and AQP4 in brain tissues was down-regulated, the percentage of novel object exploration and discrimination index were increased ( P<0.05), and the histopathological damage in the hippocampal CA1 and CA3 areas was significantly attenuated in group D and group L. Compared with group D, the water content and EB content of brain tissues were significantly increased after mechanical ventilation, the expression of PKC and AQP4 in brain tissues was up-regulated, the percentage of novel object exploration and discrimination index were decreased ( P<0.05), and the histopathological damage in the hippocampal CA1 and CA3 areas was aggravated in group DP. Conclusions:AQP4 is involved in dexmedetomidine-induced reduction of blood-brain barrier permeability in mechanically ventilated mice, and the mechanism is related to inhibiting activation of PKC.
3.Effect of iron overload on apoptosis in primary cells from mouse livers
Xian SU ; Bo WANG ; Dongdong LI ; Lei WANG ; Fengying QI ; Qiuxia FU ; Shaoduo YAN
Military Medical Sciences 2024;48(6):445-452
Objective To investigate the impact of iron overload on apoptosis in primary mouse liver cells via a synchronous separation technology.Methods Hepatocyte(HC),liver sinusoidal endothelial cell(LSEC),and Kupffer cell(KC)were isolated and purified with collagenase,percoll density gradient centrifugation,and CD146 magnetic beads.Cell types were identified using flow cytometry and immunofluorescence staining.Cells of different types were cultured in vitro,and an iron overload model was established by treating the mice with 0,25,50 and 100 μmol/L ferric ammonium citrate(FAC)for 24 h.The iron content was quantified using Prussian blue staining,while cell viability and mitochondrial membrane potential were assessed by flow cytometry.Results The synchronous separation technology of primary liver cells exhibited stable efficiency.The yield of HC was(4.0±0.5)×107 cells per mouse,exhibiting an effective survival rate of(76.33±0.67)%.The yield of LSEC was(5.0±1.0)×106 cells per mouse,with a survival rate of(93.63±0.25)%and a purity level of(93.40±0.46)%.The yield of KC was(1.5±0.5)×106 cells per mouse while a high survival rate of(98.33±0.12)%and a purity level of(88.30±2.02)%were maintained.The obtained cells were large in number,with good vitality and high purity,which could meet the requirements of subsequent experiments.Treatment with FAC significantly elevated iron contents in different types of cells when compared with the control group.Upon stimulation of FAC,the survival rate of HC decreased from(73.97±5.54)%to(54.10±1.68)%,the mean fluorescence intensity of JC-1 aggregates decreased from 326.33±30.37 to 155.00±6.56,JC-1 monomer increased from 1700.00±1 44.04 to 3713.33±81.82.The survival rate of LSEC decreased from(90.60±1.74)%to(78.03±2.15)%,the mean fluorescence intensity of JC-1 aggregates decreased from 502.33±5.51 to 372.33±4.04,and JC-1 monomer increased from 750.00±67.51 to 1340.00±36.39.The survival rate of KC decreased from(94.23±1.44)%to(88.37±1.56)%,the mean fluorescence intensity of JC-1 aggregates decreased from 652.67±25.66 to 478.00±12.49,and JC-1 monomer increased from 1984.33±80.65 to 3062.33±245.20.Conclusion A robust and reliable simultaneous isolation technique of primary mouse HC,LSEC,and KC has been established.Moreover,our finding demonstrates that iron overload significantly enhances apoptosis levels in HC,LSEC and KC.
4.Comprehensive analysis of mRNA/miRNA networks in peripheral blood of patients with schizophrenia
Dongdong QI ; Shifa MA ; Xiaolong LI ; Kegang WANG
International Journal of Laboratory Medicine 2024;45(15):1867-1873
Objective To explore the comprehensive analysis of mRNA/microRNA(miRNA)networks in peripheral blood of patients with schizophrenia.Methods A total of 6 schizophrenic patients treated in a hos-pital from December 2022 to February 2023 were included as the experimental group and 4 volunteers as the control group.Blood samples of the two groups were collected and the mRNA and miRNA expression levels were detected by RNA-seq technique.Finally,the gene set GSE145554 in Gene Expression Omnibus was used for bioinformatics verification analysis.Results Compared with the control group,a total of 2 133 mRNA differences were detected in the experimental group,including 1 410 mRNA up-regulated and 723 mRNA down-regulated.There were 150 differential miRNAs,including 72 up-regulated miRNAs and 78 down-regula-ted miRNAs.Kyoto Encyclopedia of Genes and Genomes and Gene Ontology enrichment biological processes and signaling pathways mainly include mammalian target of rapamycin(mTOR)signaling pathway,phos-phatidylinositide 3-kinases(PI3K)-serine/threonine-protein kinase(AKT)signaling pathway,necroptosis,and protein processing in the endoplasmic reticulum endoplasmic reticulum signaling pathways etc.Conclusion PI3K-AKT,mTOR,necroptosis and protein processing in endoplasmic reticulum signaling pathways are in-volved in the occurrence and development of schizophrenia,and provide a new research direction for the pre-vention,diagnosis and treatment of schizophrenia.
5.Penehyclidine hydrochloride regulates angiopoietin 2/vascular endothelial cadherin (Ang2/VE-cadherin) pathway to alleviate LPS induced lung injury in rats.
Fengyong YANG ; Dongdong FANG ; Binghan ZHANG ; Yanjie SUN ; Haifeng LIU ; Yongjie QI ; Guangchen WEI
Chinese Journal of Cellular and Molecular Immunology 2023;39(8):708-713
Objective To explore the effect and mechanism of penehyclidine hydrochloride (PHCD) on vascular endothelial injury in septic rats. Methods Fifty male SD rats were randomly divided into control group, lipopolysaccharide (LPS) induced sepsis group (model group), low dose PHCD (0.3 mg/kg) group, medium dose PHCD (1.0 mg/kg) group and high dose PHCD (3.0 mg/kg) groups, ten mice for each group. Normal saline was injected into the tail vein of the control group, and 10 mg/kg lipopolysaccharide (LPS) was injected into the tail vein of the rats in other groups to prepare the sepsis rat models. After the models were successfully established, low, medium and high doses (0.3, 1.0, 3.0 mg/kg) of PHCD solution were injected into the tail vein of the rats of corresponding groups. Wet/dry mass ratio (W/D) of lung tissue of rats in each group was measured, and ELISA was used to assay interleukin-1β (IL-1β), tumor necrosis factor-α (TNF-α), IL-6 content and rat plasma angiopoietin 2 (Ang2) content in bronchoalveolar lavage fluid (BALF). HE staining was used to observe the pathological changes of lung tissues. Immunohistochemical staining was used to observe the expression of Ang2 in the right lung tissues. Western blot analysis was performed to detect Ang2 and vascular endothelial cadherin (VE-cadherin) protein in lung tissues. Results Compared with the control group, the W/D ratio of the lung tissues of rats in the model group and the contents of IL-1β, IL-6 and TNF-α in BALF were significantly increased; the lung tissues showed obvious pathological damage, with up-regulation of Ang2 expression and down-regulation of VE-Cadherin expression. Compared with the model group, the W/D ratio of the lung tissues of rats in three PHCD treatment groups and the contents of IL-1β, IL-6 and TNF-α in BALF were significantly reduced; the pathological damage of lung tissue was significantly reduced, with down-regulation of Ang2 expression and up-regulation of VE-cadherin expression. Conclusion PHCD can reduce LPS-induced lung inflammation in rats with sepsis by regulating the Ang2/VE-Cadherin pathway, thereby improving vascular endothelial injury.
Rats
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Mice
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Animals
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Male
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Lipopolysaccharides/metabolism*
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Tumor Necrosis Factor-alpha/metabolism*
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Angiopoietin-2/pharmacology*
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Interleukin-6/metabolism*
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Rats, Sprague-Dawley
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Lung
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Acute Lung Injury/metabolism*
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Sepsis/metabolism*
6.CRP is an important factor affecting the timing of surgical drainage of ureteral calculi with upper urinary tract infection
Fangzhou LI ; Qiang LIU ; Dongdong XIAO ; Zhebin DU ; Hanqing XUAN ; Qi CHEN ; Lianhua ZHANG
Journal of Modern Urology 2023;28(5):417-420
【Objective】 To explore the timing of surgical drainage for ureteral calculi with upper urinary tract infection. 【Methods】 Clinical data of 117 cases of ureteral calculi with upper urinary tract infection treated in our hospital during Jan.2018 and Jan.2020 were retrospectively analyzed. According to different treatment methods, the patients were divided into surgical drainage group and non-surgical drainage group. The patients’ age, gender, side of calculi, peak body temperature, time of onset, white blood cell (WBC) count, C-reactive protein (CRP) and other clinical indicators were compared between the two groups. The cutoff value of surgical drainage was determined with receiver operator characteristic (ROC) curve. 【Results】 The patients’ age, peak body temperature, WBC count and CRP level were the influencing factors of surgical drainage (P<0.05). Regression analysis showed that CRP (P<0.001), age (P=0.003) and WBC count (P=0.014) were independent risk factors for surgical drainage. The area under the ROC curve (AUC) of CRP, age, and WBC count were 0.923, 0.601, and 0.796, respectively. The cutoff value of CRP was 29.87 mg/L (sensitivity 79.4%, specificity 90.0%). Logistic regression model showed CRP was a significant clinical predictor. 【Conclusion】 Ureteral calculi with upper urinary tract infection need to be diagnosed and treated in time. Positive anti-infection should be performed during emergency treatment, and surgical drainage could be selected according to the value of CRP.
7.Role of TRPV4 in dexmedetomidine-induced improvement in cognitive function in mice with mechanical ventilator-caused brain injury
Min QU ; Wenbo SUN ; Zhongyan YAO ; Xiuqing ZHANG ; Huiwu ZHANG ; Lei CHEN ; Zilong QI ; Dongdong HUANG ; Ping HUANG
Chinese Journal of Anesthesiology 2023;43(2):186-191
Objective:To evaluate the role of transient receptor potential vanillic acid 4 (TRPV4) in dexmedetomidine-induced improvement in cognitive function in mice with mechanical ventilator-caused brain injury.Methods:Ninety clean-grade healthy male C57BL6 mice, weighing 20-25 g, aged 8-12 weeks, were divided into 5 groups ( n=18 each) using a random number table method: control group (group C), mechanical ventilation group (group V), HC-067047 group (group H), dexmedetomidine group (group D), and dexmedetomidine+ GSK1016790A group (group DG). In group C, the animals breathed air spontaneously for 6 h without mechanical ventilation. In group V, the animals were mechanically ventilated for 6 h. In group H, TRPV4 blocker HC-067047 10 mmol was injected into the cerebral ventricle at 3 and 6 h of mechanical ventilation. In D and DG groups, dexmedetomidine 50 μg/kg was intraperitoneally injected at 30 min before mechanical ventilation. In group DG, TRPV4 agonist GSK1016790A 5 μmol was injected into the cerebral ventricle at 60 min before mechanical ventilation. Morris water maze test was performed on 6 mice in each group at 1 day before mechanical ventilation and 3 and 7 days after mechanical ventilation. Six mice in each group were randomly selected and sacrificed at 1 day after mechanical ventilation, and the brain tissue was taken for determination of the neuronal apoptosis in hippocampal CA1 area by TUNEL method, and the apoptosis index was calculated. Six mice in each group were randomly selected and sacrificed at 1 day after mechanical ventilation, and the hippocampal tissues were taken for determination of the expression of TRPV4, serine-threonine protein kinase (Akt), phosphorylated Akt (p-Akt), Bcl-2, Bax and caspase-3 by Western blot. Results:Compared with group C, the escape latency was significantly prolonged and the number of crossing the original platform was reduced at 3 and 7 days after mechanical ventilation, the expression of TRPV4 and caspase-3 was up-regulated, the ratio of Bcl-2/Bax was decreased, and the apoptosis index of neurons was increased in group V and group DG ( P<0.05). Compared with group V, the escape latency was significantly shortened and the number of crossing the original platform was increased at 3 and 7 days after mechanical ventilation, the expression of TRPV4 and caspase-3 was down-regulated, the expression of p-Akt was up-regulated, the ratio of Bcl-2/Bax was increased, and the apoptosis index of neurons was decreased in group D and group H ( P<0.05). Compared with group D, the escape latency was significantly prolonged at 3 and 7 days after mechanical ventilation, the number of crossing the original platform was reduced, the expression of TRPV4 and caspase-3 was up-regulated, the expression of p-Akt was down-regulated, the ratio of Bcl-2/Bax was decreased, and the apoptosis index of neurons was increased in group DG ( P<0.05). Conclusions:TRPV 4 is involved in dexmedetomidine-induced improvement in cognitive function, which is related to up-regulation of p-Akt expression and inhibition of apoptosis in hippocampal neurons in mice with mechanical ventilation-caused brain injury.
8.A case study on caring of a post-operational patient with valvular heart disease and prolonged weaning due to tracheomalacia
Jiamin JIN ; Chao YU ; Chunhua GAO ; Zhiyang QI ; Li ZHOU ; Dongdong CUI
Chinese Journal of Nursing 2023;58(23):2852-2855
To summarize the nursing experience of a post-operational patient with valvular heart disease and prolonged weaning due to tracheomalacia.Key points of nursing include real-time monitoring of bleeding and coagulation,dynamic implementation of anticoagulation programs;strengthening airway management,early warning and treatment of airway collapse;multi-dimensional joint diagnosis and treatment to speed up the rehabilitation process;real-time assessment,sequential management of sedation,analgesia and nutrition programs.After 27 days of careful treatment and nursing,the patient was weaned from a ventilator successfully and transferred to another department,and was discharged after 5 days.
9.Allosteric inhibition reveals SHP2-mediated tumor immunosuppression in colon cancer by single-cell transcriptomics.
Jian GAO ; Zhigui WU ; Mingxia ZHAO ; Rui ZHANG ; Manru LI ; Dongdong SUN ; Haibo CHENG ; Xianjia QI ; Yuxian SHEN ; Qiang XU ; Hongqi CHEN ; Dijun CHEN ; Yang SUN
Acta Pharmaceutica Sinica B 2022;12(1):149-166
Colorectal cancer (CRC), a malignant tumor worldwide consists of microsatellite instability (MSI) and stable (MSS) phenotypes. Although SHP2 is a hopeful target for cancer therapy, its relationship with innate immunosuppression remains elusive. To address that, single-cell RNA sequencing was performed to explore the role of SHP2 in all cell types of tumor microenvironment (TME) from murine MC38 xenografts. Intratumoral cells were found to be functionally heterogeneous and responded significantly to SHP099, a SHP2 allosteric inhibitor. The malignant evolution of tumor cells was remarkably arrested by SHP099. Mechanistically, STING-TBK1-IRF3-mediated type I interferon signaling was highly activated by SHP099 in infiltrated myeloid cells. Notably, CRC patients with MSS phenotype exhibited greater macrophage infiltration and more potent SHP2 phosphorylation in CD68+ macrophages than MSI-high phenotypes, suggesting the potential role of macrophagic SHP2 in TME. Collectively, our data reveals a mechanism of innate immunosuppression mediated by SHP2, suggesting that SHP2 is a promising target for colon cancer immunotherapy.
10.Effect of NAIF1 on IFIT Family Proteins in Gastric Cancer
Qiao ZHANG ; Changzhi HUANG ; Jianjiang ZHU ; Yan LI ; Mei ZHAO ; Kexin LI ; Dongdong LI ; Hong QI ; Shengkai HUANG
Cancer Research on Prevention and Treatment 2022;49(2):90-94
Objective To investigate the effect of NAIF1 in gastric cancer cell lines MKN45. Methods We constructed pLVX-Tight-Flag-NAIF1-puro plasmid with Tet-on system. DOX was added to induce NAIF1 expression in MKN45 cells. The cells were collected at 0, 6, 12 and 24 hours after DOX addition for gene expression microarray detection and biological analysis of differentially expressed genes. qRT-PCR and Western blot were used to verify the changes in mRNA and protein levels of the selected target differential genes. Results The biological analysis of gene microarray hybridization results showed that IFIT1, IFIT2 and IFIT3 expression significantly increased at 24h, qRT-PCR also showed this change, and Western blot further verified the change in protein level. However, IFIT5 showed no significant change in mRNA and gene expression. Conclusion Over-expression of NAIF1 in gastric cancer cells can promote the expression of some immune system-related IFIT family proteins.

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