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417 result(s) for "Fu, Li-Na"
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Effects of accelerated rehabilitation surgical care on the surgical site wound infection and postoperative complications in patients of lung cancer: A meta‐analysis
To comprehensively evaluate the effect of accelerated rehabilitation surgical care on perioperative wound infections and complications in patients undergoing lung cancer surgery. A comprehensive computerised search for randomised controlled trials (RCTs) of accelerated rehabilitative surgical care applied to patients undergoing lung cancer surgery was conducted using the Web of Science, PubMed, Cochrane Library, Embase, Wanfang and China National Knowledge Infrastructure databases from inception to September 2023. The literature was screened and evaluated by two investigators, and data were extracted from the final included literature. Stata software (version 17.0) was used for data analysis. Overall, 21 RCTs involving 2187 patients were included, including 1093 cases in the accelerated rehabilitation surgical care group and 1094 cases in the conventional care group. The analyses revealed that patients with lung cancer surgery who implemented accelerated rehabilitation surgical care were significantly less likely to develop postoperative wound infections (odds ratio [OR] = 0.29, 95% confidence interval [CI]: 0.17–0.49, p < 0.001) and postoperative complications (OR = 0.26, 95% CI: 0.20–0.34, p < 0.001) and shortened the hospital length of stay (standardised mean differences [SMD] = −1.93, 95% CI: −2.32 to −1.53, and p < 0.001) compared with conventional care. The effect of accelerated rehabilitation surgical care intervention in the perioperative period of lung cancer surgery patients is remarkable, as it can effectively reduce the incidence of wound infection and complications, shorten hospitalisation time and promote patient recovery.
Astragaloside IV Improves High-Fat Diet–Induced Hepatic Steatosis in Nonalcoholic Fatty Liver Disease Rats by Regulating Inflammatory Factors Level via TLR4/NF-κB Signaling Pathway
Objective : Astragaloside IV (AS-IV) is the primary bioactive component purified from Astragalus membranaceus which is one of the traditional Chinese medicines. Research studies found that AS-IV has significant pharmacological effects on focal cerebral ischemia/reperfusion, cardiovascular disease, pulmonary disease, liver cirrhosis, and diabetic nephropathy, but little is known about the effects of AS-IV on nonalcoholic fatty liver disease (NAFLD). In this study, we investigated whether AS-IV has beneficial effects on NAFLD in rats and its potential mechanisms. Methods : Male SD rats were fed with high-fat diet (HFD) for 12 weeks to establish NAFLD rat model, and then, the rats were divided into five groups. The control group rats were fed with normal diet for 12 weeks and then were given normal saline (1.0 ml kg −1 day −1 ) by intragastric administration for 4 weeks. The model group rats were fed with HFD for 12 weeks and then were given normal saline (1.0 ml kg −1 day −1 ) by intragastric administration for 4 weeks. The AS-IV-L, AS-IV-M, and AS-IV-H groups were treated with 20, 40, and 80 mg kg −1 day −1 of AS-IV by intragastric administration for 4 weeks and given HFD diet. Then, we detected serum transaminase (ALT, AST), blood lipid (TG, TC), inflammatory cytokines (IL-6, IL-8 and TNF-α), liver histology(NAFLD activity score), TLR4/MyD88 signaling pathway in liver tissue. Results : We found AS-IV significantly reduced serum levels of AST, ALT, TG, TNF-α, IL-6, and IL-8 in NAFLD rats and downregulate the expression of TLR4 mRNA, MyD88 mRNA, NF-κB mRNA, and proteins in liver tissue. Moreover, AS-IV could significantly reduce the NAFLD activity score of NAFLD rat liver. Conclusion : In this study, we demonstrated that AS-IV have a protective effect on NAFLD by inhibiting TNF-α, IL-6 and IL-8 levels and down-regulating TLR4, MyD88 and NF-κB expression in rat liver tissues.
Bronchopulmonary foregut malformation with severe hemoptysis in advanced age: a case report and literature review
Bronchopulmonary foregut malformation (BPFM) is a rare developmental malformation disease due to embryonic defects, with an even rarer occurrence in adults. We report a diagnosed case in an adult patient, and notably, this is the first reported case of such advanced age. Additionally, she experienced coughing up approximately 1 liter of blood and partial lung tissue, accompanied by respiratory failure and shock. Following treatment with transcatheter arterial embolization, her condition improved, and she has remained stable during follow-up. We present a case report and conducted a systematic review on this particular case.
Digital Gene Expression Analysis of Corky Split Vein Caused by Boron Deficiency in ‘Newhall’ Navel Orange (Citrus sinensis Osbeck) for Selecting Differentially Expressed Genes Related to Vascular Hypertrophy
Corky split vein caused by boron (B) deficiency in 'Newhall' Navel Orange was studied in the present research. The boron-deficient citrus exhibited a symptom of corky split vein in mature leaves. Morphologic and anatomical surveys at four representative phases of corky split veins showed that the symptom was the result of vascular hypertrophy. Digital gene expression (DGE) analysis was performed based on the Illumina HiSeq™ 2000 platform, which was applied to analyze the gene expression profilings of corky split veins at four morphologic phases. Over 5.3 million clean reads per library were successfully mapped to the reference database and more than 22897 mapped genes per library were simultaneously obtained. Analysis of the differentially expressed genes (DEGs) revealed that the expressions of genes associated with cytokinin signal transduction, cell division, vascular development, lignin biosynthesis and photosynthesis in corky split veins were all affected. The expressions of WOL and ARR12 involved in the cytokinin signal transduction pathway were up-regulated at 1(st) phase of corky split vein development. Furthermore, the expressions of some cell cycle genes, CYCs and CDKB, and vascular development genes, WOX4 and VND7, were up-regulated at the following 2(nd) and 3(rd) phases. These findings indicated that the cytokinin signal transduction pathway may play a role in initiating symptom observed in our study.
MicroRNA-744 inhibits tumor cell proliferation and invasion of gastric cancer via targeting brain-derived neurotrophic factor
Gastric cancer is the fourth most common malignancy and the third leading cause of cancer‑associated deaths worldwide. It has previously been demonstrated that microRNAs (miRNAs) are actively involved in the pathogenesis of gastric cancer. Therefore, miRNAs have been proposed as promising therapeutic targets in gastric cancer patients. MiR‑744 is aberrantly expressed in different types of human cancer. However, the expression pattern and biological roles of miR‑744 in gastric cancer remain unknown. The present study demonstrated that miR‑744 expression was low in gastric cancer tissues and cell lines. Low expression levels of miR‑744 was significantly correlated with lymph node metastasis, invasive depth and TNM staging in gastric cancer patients. The restoration of miR‑744 expression inhibited cell proliferation and invasion in vitro. Bioinformatic prediction, luciferase reporter assay, reverse transcription‑quantitative polymerase chain reaction and western blot analysis verified that brain‑derived neurotrophic factor (BDNF) is a direct target of miR‑744 in gastric cancer cells. Furthermore, BDNF was upregulated in gastric cancer tissues and inversely correlated with miR‑744 expression. Furthermore, enforced BDNF expression reversed the tumor‑suppressing effects of miR‑744 on the proliferation and invasion of gastric cancer cells, indicating that BDNF is a functional mediator of miR‑744 in gastric cancer. The present study suggests that miR‑744 is a potential prognostic biomarker and treatment target in gastric cancer patients.
Physiological and transcriptional analysis reveals pathways involved in iron deficiency chlorosis in fragrant citrus
Iron (Fe) deficiency chlorosis is a yield-limiting problem in citrus production regions with calcareous soils. Physiological and transcriptional analyses of fragrant citrus ( Citrus junos Sieb. ex Tanaka) leaves from Fe-sufficient (IS) and Fe-deficient (ID) plants were investigated in this study. The physiological results showed that Fe, potassium, and nitrogen levels decreased by 12, 15, and 41% in ID leaves, respectively. However, zinc and copper levels increased by 49 and 35% in ID leaves, respectively. The chlorophyll (Chl) content, photosynthesis rate, stomatal conductance, and transpiration rate in ID leaves decreased by 55, 33, 38, and 42%, respectively, compared with IS leaves. Moreover, transcriptional profiling analysis showed that genes associated with Chl metabolism, photosynthesis, and nitrogen metabolism were dramatically downregulated by Fe deficiency. The expression of glutamyl-tRNA reductase 1, chlorophyll(ide) b reductase, and geranylgeranyl diphosphate reductase in ID leaves was 0.26–0.37 times that in IS leaves. The expression levels of 16 photosynthesis-related genes were severely downregulated by Fe deficiency. In addition, the transcription levels of nitrate transporter, nitrate reductase, and ferredoxin-nitrite reductase genes in ID leaves were 0.38–0.45 times those in IS leaves. Taken together, these results indicated that the block of Chl biosynthesis, the reduction of photosynthesis, and the repression of nitrogen absorption resulted in the chlorosis symptoms observed in fragrant citrus leaves.
Effects of telmisartan on improving leptin resistance and inhibiting hepatic fibrosis in rats with non-alcoholic fatty liver disease
The present study aimed to investigate the impacts of telmisartan (TEL) on hepatic fibrosis, serum leptin, leptin protein in liver tissue and its mRNA expression level in rats with non-alcoholic fatty liver disease (NAFLD). Male Sprague Dawley rats were randomly divided into the control (N), model (M), polyene phosphatidylcholine (P) and TEL (T) groups. Group M and the intervention groups were given a high-fat diet for 12 weeks to induce NAFLD, followed by 4 weeks of intragastric administration of normal saline (1.0 ml/kg/day), polyene phosphatidylcholine (PPC; 123.1 mg/kg/day) and TEL (8 mg/kg/day). The liver tissue was then assessed for the NAFLD activity score and fibrosis score (FS), and serum biochemistry and leptin levels were determined. Additionally, leptin protein expression levels were examined by western blotting and the expression of leptin mRNA was investigated by reverse transcription-polymerase chain reaction. TEL significantly improved FS in rats (P<0.01) and was more effective than PPC. TEL significantly reduced the expression of serum leptin, as well as the expression levels of leptin protein and its mRNA in liver tissue (P<0.01); however, the effects of PPC were not significant (P>0.05). TEL reduced serum leptin, leptin protein and its mRNA in the liver tissue of NAFLD rats, and improved the pathological indicators of liver fibrosis.
Insights into high temperature pretreatment on cellulase processing of bamboo
Bamboo processing was performed with commercial cellulase. The properties of cellulase and the effect of high temperature pretreatment on cellulase hydrolysis of bamboo were investigated. Results indicated that cellulase hydrolysis performed fast and dramatically within 30 minutes, and then gradually reached its balance. It was found that pretreatment played an active role in cellulase processing, which enhanced the saccharification of bamboo and benefited high-molecular-weight lignin degradation and removal. Additionally, a better performance of bamboo processing was achieved under the cellulase concentration of 15IU in total reaction system of 100 ml at 50?C, pH 4.8, together with the high temperature pretreatment of 120?C for 15 minutes. nema
An Optimized and Feasible Preparation Technique for the Industrial Production of Hydrogel Patches
For hydrogel patches, the laboratory tests could not fully reveal the existing problems of full scale of industrial production, and there are few studies about the preparation technique for the industrial manufacturing process of hydrogel patches. So, the purpose of this work was to elucidate the effects of mainly technological operation and its parameters on the performance of hydrogel patches at the industrial-scale production. The results revealed the following: (1) the aqueous phase was obtained by polyvinylpyrrolidone (PVP) along with tartaric acid dissolved in purified water, then feeding this into a vacuum mixer as a whole in one batch, thus extended the crosslinking reaction time of hydrogel paste (matrix) and allowed the operation of coating/cutting-off to be carried out easily, and there was no permeation of backing layer; (2) the gel strength of the hydrogel patches increased with the increase of working temperature, however, once the temperature exceeded 35 ± 2 °C, the hydrogel paste would lose water severely and the resultant physical crosslinking structure which has lower gel/cohesive strength would easily bring gelatinization/residues during application; (3) the relative humidity (RH) of the standing-workshop was dynamically controlled (namely at 35 ± 2 °C, keeping the RH at 55 ± 5% for 4 days, then 65 ± 5% for 2 days), which would make patches with satisfactory characteristics such as better flexibility, higher adhesive force, smooth flat matrix surface, and without gelatinization/residues and warped edge during the using process; (4) the aging of the packaged hydrogel patches was very sensitive to storage temperature, higher temperature, higher gel strength and lower adhesiveness. The storage temperature of 10 ± 2 °C could effectively prevent matrix aging and adhesion losing, which would also facilitate the expiration date of patches extended obviously. In conclusion, this work provides an optimized and feasible preparation technique for the industrial production of the hydrogel patches and establishes the hydrogel patches as a novel carrier for transdermal drug delivery.
RETRACTED: Effects of accelerated rehabilitation surgical care on the surgical site wound infection and postoperative complications in patients of lung cancer: A meta‐analysis
To comprehensively evaluate the effect of accelerated rehabilitation surgical care on perioperative wound infections and complications in patients undergoing lung cancer surgery. A comprehensive computerised search for randomised controlled trials (RCTs) of accelerated rehabilitative surgical care applied to patients undergoing lung cancer surgery was conducted using the Web of Science, PubMed, Cochrane Library, Embase, Wanfang and China National Knowledge Infrastructure databases from inception to September 2023. The literature was screened and evaluated by two investigators, and data were extracted from the final included literature. Stata software (version 17.0) was used for data analysis. Overall, 21 RCTs involving 2187 patients were included, including 1093 cases in the accelerated rehabilitation surgical care group and 1094 cases in the conventional care group. The analyses revealed that patients with lung cancer surgery who implemented accelerated rehabilitation surgical care were significantly less likely to develop postoperative wound infections (odds ratio [OR] = 0.29, 95% confidence interval [CI]: 0.17–0.49, p  < 0.001) and postoperative complications (OR = 0.26, 95% CI: 0.20–0.34, p  < 0.001) and shortened the hospital length of stay (standardised mean differences [SMD] = −1.93, 95% CI: −2.32 to −1.53, and p  < 0.001) compared with conventional care. The effect of accelerated rehabilitation surgical care intervention in the perioperative period of lung cancer surgery patients is remarkable, as it can effectively reduce the incidence of wound infection and complications, shorten hospitalisation time and promote patient recovery.