1.Research progress of nano drug delivery system based on metal-polyphenol network for the diagnosis and treatment of inflammatory diseases
Meng-jie ZHAO ; Xia-li ZHU ; Yi-jing LI ; Zi-ang WANG ; Yun-long ZHAO ; Gao-jian WEI ; Yu CHEN ; Sheng-nan HUANG
Acta Pharmaceutica Sinica 2025;60(2):323-336
Inflammatory diseases (IDs) are a general term of diseases characterized by chronic inflammation as the primary pathogenetic mechanism, which seriously affect the quality of patient′s life and cause significant social and medical burden. Current drugs for IDs include nonsteroidal anti-inflammatory drugs, corticosteroids, immunomodulators, biologics, and antioxidants, but these drugs may cause gastrointestinal side effects, induce or worsen infections, and cause non-response or intolerance. Given the outstanding performance of metal polyphenol network (MPN) in the fields of drug delivery, biomedical imaging, and catalytic therapy, its application in the diagnosis and treatment of IDs has attracted much attention and significant progress has been made. In this paper, we first provide an overview of the types of IDs and their generating mechanisms, then sort out and summarize the different forms of MPN in recent years, and finally discuss in detail the characteristics of MPN and their latest research progress in the diagnosis and treatment of IDs. This research may provide useful references for scientific research and clinical practice in the related fields.
2.Direct Determination of 23 Kinds of Per-and Polyfluoroalkyl Substances in Crude Plant Extracts by Liquid Chromatography-Tandem Mass Spectrometry Coupled with Online Solid Phase Extraction
Nan SHEN ; Tong-Zhu HAN ; Can-Can SHENG ; Xiu-Ping HE ; Jun-Hui CHEN ; Chen-Guang LIU ; Xian-Guo LI
Chinese Journal of Analytical Chemistry 2024;52(2):286-295,后插1-后插5
A new method for simultaneous determination of 23 kinds of per-and polyfluoroalkyl substances(PFASs)(13 kinds of perfluoro carboxylic acids,4 kinds of perfluoro sulfonic acids,and 6 kinds of new substitutes)in plant leaf tissue by ultra-high performance liquid chromatography-tandem mass spectrometry(UHPLC-MS/MS)using automatic online solid phase extraction(SPE)to remove the matrix interference components in plant crude extracts was developed.The plant leaf samples were extracted twice with 1%formic acid-methanol solution,then evaporated to dry,redissolved with 70%methanol solution,and directly injected for analysis.After 23 kinds of target PFASs were purified automatically by online SPE with a WAX column,the six-way valve was switched to rinse PFASs onto an alkaline mobile phase system-compatible C18 analytical column.Then,the 23 kinds of target PFASs were separated within 16 min by gradient elution using a binary mobile phase system of methanol/water(Containing 0.4%ammonium hydroxide).Tandem mass spectrometry was performed in multiple reaction monitoring(MRM)mode for online detection of various PFASs,and quantification was carried out by internal standard method.The results of the method validation showed that satisfactory average recoveries of 23 kinds of PFASs in plant leaf samples(64.2%-125.5%),precision(relative standard deviations(RSDs)of 0.7%-12.8%),linearity(R2>0.990),and sensitivity(the detection limits(S/N=3)were in the range of 0.02-0.50 μg/kg)were achieved.Finally,this method was used to detect PFASs in the marine green tide algae(Enteromorpha prolifera)and several tree leaves,and a total of 6 kinds of PFASs were detected,in which PFBA was the main contaminant.Compared with the reported offline SPE methods,the proposed online SPE technique significantly simplified the sample pretreatment process and provided an automatic,simple,and environment-friendly method for the routine monitoring of legacy and emerging PFASs in plant tissues.
3.Dihydrotanshinone Enhances The Anticancer Effects of Sorafenib on Hepatocellular Carcinoma by Inhibiting Akt Signaling Pathway Activation
Wei WANG ; Sheng-Nan JIA ; Sun-Fu FAN ; Li-Shan XU
Progress in Biochemistry and Biophysics 2024;51(6):1445-1457
ObjectiveSorafenib is a first-line only drug approved for the treatment of advanced hepatocellular carcinoma (HCC). Resistance to sorafenib means that treatment outcomes are often unsatisfactory. Although the mechanism underlying sorafenib resistance remains unclear, resistance may occur through Akt signaling pathway activation in HCC. Dihydrotanshinone (DHT), a lipophilic component of traditional Chinese medicine Salvia miltiorrhiza Bunge, has multiple anti-tumor activities and inhibits Akt activation. The effect and mechanism of DHT combined with sorafenib on HCC have not been investigated. In this study, we investigate whether DHT potentiates the anti-cancer activities of sorafenib against HCC. MethodsIn this study, the effects of sorafenib and DHT on the viability, apoptosis and drug sensitivity of Huh7 and HepG2 cells were verified by Cell Counting Kit-8 (CCK-8) and flow cytometry. Akt, P-Akt, Caspase3, GSK-3β, P-GSK-3β, ribosomal protein S6 kinase (S6K), P-S6K, Cyclin D1, Bcl-xl, Bcl-2, and Bax expression levels were analyzed via Western blot. All data were statistically compared using one-way analysis of variance (ANOVA) and Dunnett test. Statistical analysis using SPSS 20.0 statistical software. ResultsDHT inhibit proliferation and promote apoptosis in HCC cells by reducing Akt activation. DHT inhibits the expression and activation of Akt downstream factors, including GSK-3β and S6K, which regulate the apoptotic response and are activated and upregulated by sorafenib treatment. Both sorafenib and DHT downregulate cyclin D1 expression and DHT upregulates Bax expression and downregulates Bcl-2 and Bcl-xl expression. However, sorafenib had little influence on Bcl-2 family protein expression. ConclusionDHT may enhance the proliferation inhibition and apoptosis induction of sorafenib in HCC cells by inhibiting the activation of Akt signaling pathway, thus enhancing the anticancer effect of sorafenib.
4.Icariin plus curcumol enhances autophagy through the mTOR pathway and promotes cathepsin B-mediated pyroptosis of prostate cancer cells
Xu-Yun Wang ; Wen-Jing Xu ; Bo-Nan Li ; Tian-Song Sun ; Wen Sheng
Asian Pacific Journal of Tropical Biomedicine 2024;14(2):55-64
Objective: To examine the effect of icariin plus curcumol on prostate cancer cells PC3 and elucidate the underlying mechanisms. Methods: We employed the Cell Counting Kit 8 assay and colony formation assay to assess cell viability and proliferation. Autophagy expression was analyzed using monodansylcadaverine staining. Immunofluorescence and Western blot analyses were used to evaluate protein expressions related to autophagy, pyroptosis, and the mTOR pathway. Cellular damage was examined using the lactate dehydrogenase assay. Moreover, cathepsin B and NLRP3 were detected by co-immunoprecipitation. Results: Icariin plus curcumol led to a decrease in PC3 cell proliferation and an enhancement of autophagy. The levels of LC3- Ⅱ/LC3-Ⅰ and beclin-1 were increased, while the levels of p62 and mTOR were decreased after treatment with icariin plus curcumol. These changes were reversed upon overexpression of mTOR. Furthermore, 3-methyladenine resulted in a decrease in inflammatory cytokines, pyroptosis-related protein levels, and lactate dehydrogenase concentration, compared to the icariin plus curcumol group. Inhibiting cathepsin B reversed the regulatory effects of icariin plus curcumol. Conclusions: Icariin plus curcumol demonstrates great potential as a therapeutic agent for castration-resistant prostate cancer by enhancing autophagy via the mTOR pathway and promoting pyroptosis mediated by cathepsin B. These findings provide valuable insights into the molecular mechanisms underlying the therapeutic potential of icariin and curcumol for prostate cancer treatment.
5.Effects of 40 Hz Rhythmic Stimulation on Alzheimer’s Disease and Cognitive Function
Na ZHAO ; Sheng HE ; Li-Nan SHI
Progress in Biochemistry and Biophysics 2024;51(10):2405-2417
Alzheimer’s disease (AD), characterized by cognitive decline and neurodegeneration, currently relies on pharmacological treatments that are limited in efficacy and often accompanied by side effects. As the number of AD patients increases, so does the economic burden on both the global healthcare system and families of patients, further worsening the quality of life for patients in their later years. Therefore, it is crucial to find new and more effective therapeutic approaches. This necessity has sparked a growing interest in non-invasive therapies, such as 40 Hz rhythmic stimulation, which aims to modulate brain activity to potentially reverse pathological changes and alleviate symptoms. This review provides an overview of the effects of 40 Hz stimulation on AD pathology and symptoms, its impact on cognitive functions in healthy individuals, the underlying mechanisms of action, and strategies to enhance the treatment’s compliance and effectiveness. Research has demonstrated that 40 Hz rhythmic stimulation, particularly through auditory and visual modalities, can influence core AD pathologies. In mouse models of AD, this stimulation has been shown to reduce amyloid-beta protein (Aβ) plaques and phosphorylated tau protein levels, hallmarks of AD pathology. These effects are thought to stem from enhanced waste clearance mechanisms, facilitated by the stimulation of the glymphatic system and the activation of microglia. Clinical applications in AD patients have shown promising results, with improvements noted in cognitive functions and behavioral symptoms. These findings suggest that 40 Hz rhythmic stimulation could offer a non-pharmacological option to mitigate the pathological progression and symptomatic expression of AD. In healthy individuals, the cognitive outcomes of 40 Hz stimulation appear more variable. Some studies indicate potential enhancements in memory and attention, proposing that 40 Hz stimulation may bolster cognitive resilience and processing efficiency in a non-diseased brain. However, these effects are not consistently replicated across studies, indicating that individual differences and specific stimulation parameters may significantly influence outcomes. The beneficial effects of 40 Hz rhythmic stimulation are believed to be primarily due to neural entrainment, where neural circuits synchronize their activity to the external frequency. This entrainment may restore the balance between excitatory and inhibitory neural activity, which is often disrupted in AD mice and AD patients. By reinforcing natural brain rhythms, 40 Hz stimulation may enhance neural connectivity and function, facilitating cognitive and memory processes that are deteriorated in AD. Neural entrainment at 40 Hz has been demonstrated to aid in restoring neural network function, enhancing the glymphatic system, improving cerebral blood flow, and providing neuroprotection. These mechanisms are thought to work synergistically to regulate brain activity, potentially leading to a reduction in lesions and an improvement in cognitive performance. To optimize the therapeutic benefits of 40 Hz stimulation, several factors need to be considered. Treatment protocols should be tailored to individual needs, accounting for variability in disease progression and personal health status. Enhancing patient compliance involves simplifying treatment regimens and using portable, user-friendly devices that can be easily incorporated into daily routines. Ongoing research should focus on refining stimulation parameters and delivery methods to maximize efficacy and minimize potential side effects. In conclusion, while 40 Hz rhythmic stimulation represents a promising avenue for treating AD and enhancing cognitive functions, further research is required to fully elucidate its mechanisms, refine its application, and ensure its practicality and efficacy in broad clinical and everyday settings.
6.Research progress of nanomedical drug delivery system based on aerobic glycolytic regulation for tumor therapy
Yi-jing LI ; Sheng-nan HUANG ; Zi-ang WANG ; Wei-wei ZHI ; Xia-li ZHU
Acta Pharmaceutica Sinica 2024;59(9):2509-2518
Tumor is one of the serious problems threatening human health. There are some limitations in the delivery of commonly used tumor therapy technologies, and the therapeutic effect is not satisfactory, so new anti-tumor strategies need to be developed. The process of tumor cells using glycolysis to produce energy under aerobic conditions is called aerobic glycolysis, which is closely related to tumor growth, proliferation and metastasis, and can provide a new target spot for tumor treatment. Nano drug delivery system has been widely used in targeted tumor therapy because of its advantages of targeted drug delivery, improved anti-tumor efficacy and reduced toxic side effects. Numerous studies have shown that more and more nano drug delivery systems regulates aerobic glycolytic metabolism by targeting to potential targets such as signaling factors or reaction products of aerobic glycolytic process in tumors, and therefore enhance the anti-tumor effect. This paper reviews the application of nano drug delivery system in regulating tumor aerobic glycolysis, and provides theoretical references for realizing efficient targeted tumor therapy.
7.A new furan α -butenolactones from Alisma orientale and their potential antifibrotic activities
Deng-hui ZHU ; Peng-li GUO ; Si-qi TAO ; Jing-ke ZHANG ; Meng-nan ZENG ; Xiao-ke ZHENG ; Wei-sheng FENG
Acta Pharmaceutica Sinica 2024;59(7):2058-2061
Four furan
8.Aptasensor for Detection of Small Molecules Based on Displacement Fluorescent Probe
Cheng YANG ; Sheng-Nan CUI ; Yue WANG ; Guo-Feng WANG ; Cheng-Ming LI ; Shuang-Chao GU ; Chang-Ying XUE
Chinese Journal of Analytical Chemistry 2024;52(5):674-684,中插10-中插13
By using thioflavin T(ThT)as displacement-based fluorescent probes,three kinds of aptasensors were constructed for rapid detection of three kinds of small molecules such as ochratoxin A(OTA),aflatoxin B1(AFB1)and adenosine.In the absence of target molecule,ThT bound with the aptamer to form an aptamer-ThT complex and exhibited a significant fluorescence response.Upon the addition of target molecule,because of the higher affinity between target and aptamer than that between ThT and the aptamer,ThT was displaced by the target molecule from the aptamer-ThT complex,resulting in weakened fluorescence signal.Based on this principle,the target molecule could be detected quantitatively.Further study through circular dichroism spectra showed that there was no significant change in the conformation of the aptamer after addition of ThT or target molecules.The stoichiometric ratios of ThT to OTAapt,AFB1apt and Adeapt measured through the method of equimolar continuous variation was 1∶1,1∶1 and 2∶1,respectively,and their dissociation constants were all larger than those between the target molecule and its aptamer.Therefore,the principle of this detection method was the displacement of fluorescent probe(ThT)in aptamer-ThT complex by target molecule,resulting in decrease of fluorescence intensity.Under optimal experimental conditions,the limits of detection(LODs)were 0.8 nmol/L for OTA,1.3 nmol/L for AFB1,and 0.10 μmol/L for adenosine,respectively.This method was label-free,simple to operate,with low cost,good selectivity and high sensitivity.The developed assay kit based on this method could be used for actual sample detection.
9.Therapeutic effect of Lingze Tablets on benign prostatic hyperplasia in rats:An exploration based on the VEGFA/TNF/IL-6 signaling pathway
Hua-Nan ZHANG ; Song SUN ; Jun-Long FENG ; Yi-Chen LIU ; Hai-Song LI ; Jin-Sheng WANG ; Bin WANG
National Journal of Andrology 2024;30(7):634-639
Objective:To explore the mechanism of Lingze Tablets(LZT)acting on BPH in rats based on the VEGFA/TNF/IL-6 signaling pathway.Methods:We equally randomized 30 SPF SD male rats into five groups,normal control,BPH model con-trol,low-dose LZT,medium-dose LZT and high-dose LZT,and established a BPH model in the latter four groups by induction with non-castrate testosterone propionate.After the modeling,we treated the rats in the normal and model groups by intragastrical adminis-tration of physiological saline,and those in the latter three groups with low-,medium-,and high-dose LZT respectively,all for 28 suc-cessive days.Then we collected the prostate tissue from the animals for observation of the changes in the prostatic indexes and histo-morphology,detected the expressions of the proteins related to the VEGFA/TNF/IL-6 signaling pathway,and compared the data ob-tained among different groups.Results:Compared with the normal controls,the rats in the model control group showed significant pros-tatic hyperplasia,markedly increased prostatic index([0.84±0.01]g,P<0.05),thickness of the prostatic epithelia and infiltra-tion of the luminal area,and dramatically up-regulated protein expressions of VEGFA(0.60±0.02,P<0.05),TNF(0.76±0.02,P<0.05)and IL-6(0.64±0.02,P<0.05).In comparison with the model controls,the rats in the low-,medium-and high-dose LZT groups exhibited significantly decreased prostatic indexes([0.76±0.02]g,[0.58±0.02]g and[0.52 0.01]g,all P<0.05),improved prostatic histomorphology,and down-regulated expressions of VEGFA(0.45±0.01,0.35±0.01 and 0.31±0.02,all P<0.05),TNF(0.45±0.01,0.33±0.01 and 0.27±0.01,all P<0.01)and IL-6(0.44±0.01,0.36±0.01 and 0.30±0.01,all P<0.01)in a dose-dependent manner.Conclusion:LZT produces therapeutic effect on BPH by negatively regulating the VEGFA/TNF/IL-6 signaling pathway,reducing the expression levels of VEGFA,TNF and IL-6 pro-teins,and regulating cell proliferation,apoptosis and inflammatory response.
10.Mechanisms of hypertension inducing erectile dysfunction via the cGMP/PKG signaling pathway:An investigation using transcriptomics and network pharmacology
Jun-Long FENG ; Hai-Song LI ; Song SUN ; Bin WANG ; Hua-Nan ZHANG ; Zi-Xiang GAO ; Peng-Ming MAO ; Long-Ji SUN ; Nian-Wen HUANG ; Ji-Sheng WANG
National Journal of Andrology 2024;30(9):771-781
Objective:To explore the mechanism of hypertension inducing erectile dysfunction(ED)using transcriptomics and network pharmacology.Methods:We randomly divided 12 male rats with spontaneous hypertension(SHT)into an L-arginine(LA)group(n=6)and an SHT model control(MC)group(n=6),took another 6 Wistar Kyoto male rats as normal controls(NC),and treated the animals in the LA group by intraperitoneal injection of LA at 400 mg/kg and those in the latter two groups with physio-logical saline,once a day,all for 7 days.Then we observed the blood pressure and penile erection of the rats,and determined the ex-pressions of the cGMP/PKG signaling pathway-related proteins and mRNAs in different groups using ELISA,Western blot and RT-qPCR.Results:Transcriptomics combined with network pharmacology showed that the cGMP/PKG signaling pathway played a key role in hypertension-induced ED.In vivo animal experiments revealed a significantly lower frequency of penile erections in the MC than in the NC group(1.33±0.52 vs 2.67±0.51,P<0.05).The protein expressions of eNOS,PKG and sGC were markedly de-creased in the model controls compared with those the normal controls(P<0.05),but remarkably upregulated in the LA group com-pared with those in the MC group(P<0.05).Conclusion:Hypertension decreases the expressions of eNOS,NO,sGC,cGMP and PKG proteins and the level of testosterone by inhibiting the cGMP/PKG signaling pathway,which consequently suppresses the relaxa-tion of the penile vascular smooth muscle and reduces erectile function.

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