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1.
Acta Pharmaceutica Sinica B ; (6): 907-923, 2022.
Article in English | WPRIM | ID: wpr-929334

ABSTRACT

Although several artificial nanotherapeutics have been approved for practical treatment of metastatic breast cancer, their inefficient therapeutic outcomes, serious adverse effects, and high cost of mass production remain crucial challenges. Herein, we developed an alternative strategy to specifically trigger apoptosis of breast tumors and inhibit their lung metastasis by using natural nanovehicles from tea flowers (TFENs). These nanovehicles had desirable particle sizes (131 nm), exosome-like morphology, and negative zeta potentials. Furthermore, TFENs were found to contain large amounts of polyphenols, flavonoids, functional proteins, and lipids. Cell experiments revealed that TFENs showed strong cytotoxicities against cancer cells due to the stimulation of reactive oxygen species (ROS) amplification. The increased intracellular ROS amounts could not only trigger mitochondrial damage, but also arrest cell cycle, resulting in the in vitro anti-proliferation, anti-migration, and anti-invasion activities against breast cancer cells. Further mice investigations demonstrated that TFENs after intravenous (i.v.) injection or oral administration could accumulate in breast tumors and lung metastatic sites, inhibit the growth and metastasis of breast cancer, and modulate gut microbiota. This study brings new insights to the green production of natural exosome-like nanoplatform for the inhibition of breast cancer and its lung metastasis via i.v. and oral routes.

2.
Acta Pharmaceutica Sinica B ; (6): 2300-2314, 2022.
Article in English | WPRIM | ID: wpr-929401

ABSTRACT

Ferroptosis is a form of regulated cell death, characterized by excessive membrane lipid peroxidation in an iron- and ROS-dependent manner. Celastrol, a natural bioactive triterpenoid extracted from Tripterygium wilfordii, shows effective anti-fibrotic and anti-inflammatory activities in multiple hepatic diseases. However, the exact molecular mechanisms of action and the direct protein targets of celastrol in the treatment of liver fibrosis remain largely elusive. Here, we discover that celastrol exerts anti-fibrotic effects via promoting the production of reactive oxygen species (ROS) and inducing ferroptosis in activated hepatic stellate cells (HSCs). By using activity-based protein profiling (ABPP) in combination with bio-orthogonal click chemistry reaction and cellular thermal shift assay (CETSA), we show that celastrol directly binds to peroxiredoxins (PRDXs), including PRDX1, PRDX2, PRDX4 and PRDX6, through the active cysteine sites, and inhibits their anti-oxidant activities. Celastrol also targets to heme oxygenase 1 (HO-1) and upregulates its expression in activated-HSCs. Knockdown of PRDX1, PRDX2, PRDX4, PRDX6 or HO-1 in HSCs, to varying extent, elevated cellular ROS levels and induced ferroptosis. Taken together, our findings reveal the direct protein targets and molecular mechanisms via which celastrol ameliorates hepatic fibrosis, thus supporting the further development of celastrol as a promising therapeutic agent for liver fibrosis.

3.
Acta Pharmaceutica Sinica B ; (6): 2004-2015, 2021.
Article in English | WPRIM | ID: wpr-888848

ABSTRACT

Hepatocellular carcinoma (HCC) has been known as the second common leading cancer worldwide, as it responds poorly to both chemotherapy and medication. Triptolide (TP), a diterpenoid triepoxide, is a promising treatment agent for its effective anticancer effect on multiple cancers including HCC. However, its clinical application has been limited owing to its severe systemic toxicities, low solubility, and fast elimination in the body. Therefore, to overcome the above obstacles, photo-activatable liposomes (LP) integrated with both photosensitizer Ce6 and chemotherapeutic drug TP (TP/Ce6-LP) was designed in the pursuit of controlled drug release and synergetic photodynamic therapy in HCC therapy. The TP encapsulated in liposomes accumulated to the tumor site due to the enhanced permeability and retention (EPR) effect. Under laser irradiation, the photosensitizer Ce6 generated reactive oxygen species (ROS) and further oxidized the unsaturated phospholipids. In this way, the liposomes were destroyed to release TP. TP/Ce6-LP with NIR laser irradiation (TP/Ce6-LP+L) showed the best anti-tumor effect both

4.
Acta Pharmaceutica Sinica B ; (6): 3636-3647, 2021.
Article in English | WPRIM | ID: wpr-922430

ABSTRACT

Pure drug-assembled nanomedicines (PDANs) are currently under intensive investigation as promising nanoplatforms for cancer therapy. However, poor colloidal stability and less tumor-homing ability remain critical unresolved problems that impede their clinical translation. Herein, we report a core-matched nanoassembly of pyropheophorbide a (PPa) for photodynamic therapy (PDT). Pure PPa molecules are found to self-assemble into nanoparticles (NPs), and an amphiphilic PEG polymer (PPa-PEG

5.
Acta Pharmaceutica Sinica B ; (6): 3150-3164, 2021.
Article in English | WPRIM | ID: wpr-922785

ABSTRACT

The three-dimensional (3D) conformation of chromatin is integral to the precise regulation of gene expression. The 3D genome and genomic variations in non-alcoholic fatty liver disease (NAFLD) are largely unknown, despite their key roles in cellular function and physiological processes. High-throughput chromosome conformation capture (Hi-C), Nanopore sequencing, and RNA-sequencing (RNA-seq) assays were performed on the liver of normal and NAFLD mice. A high-resolution 3D chromatin interaction map was generated to examine different 3D genome hierarchies including A/B compartments, topologically associated domains (TADs), and chromatin loops by Hi-C, and whole genome sequencing identifying structural variations (SVs) and copy number variations (CNVs) by Nanopore sequencing. We identified variations in thousands of regions across the genome with respect to 3D chromatin organization and genomic rearrangements, between normal and NAFLD mice, and revealed gene dysregulation frequently accompanied by these variations. Candidate target genes were identified in NAFLD, impacted by genetic rearrangements and spatial organization disruption. Our data provide a high-resolution 3D genome interaction resource for NAFLD investigations, revealed the relationship among genetic rearrangements, spatial organization disruption, and gene regulation, and identified candidate genes associated with these variations implicated in the pathogenesis of NAFLD. The newly findings offer insights into novel mechanisms of NAFLD pathogenesis and can provide a new conceptual framework for NAFLD therapy.

6.
Acta Pharmaceutica Sinica B ; (6): 3244-3261, 2021.
Article in English | WPRIM | ID: wpr-922791

ABSTRACT

Major challenges for cancer treatment are how to effectively eliminate primary tumor and sufficiently induce immunogenic cell death (ICD) to provoke a robust immune response for metastasis control. Here, a self-assembled cascade bioreactor was developed to improve cancer treatment with enhanced tumor penetration and synergistic therapy of starvation, chemodynamic (CDT) and photothermal therapy. Ultrasmall FeS-GOx nanodots were synthesized with glucose oxidase (GOx) as template and induced by paclitaxel (PTX) to form self-assembling FeS-GOx@PTX (FGP)

7.
Acta Pharmaceutica Sinica B ; (6): 127-142, 2021.
Article in English | WPRIM | ID: wpr-881129

ABSTRACT

Diabetic nephropathy (DN) is considered the primary causes of end-stage renal disease (ESRD) and is related to abnormal glycolipid metabolism, hemodynamic abnormalities, oxidative stress and chronic inflammation. Antagonism of vascular endothelial growth factor B (VEGF-B) could efficiently ameliorate DN by reducing renal lipotoxicity. However, this pharmacological strategy is far from satisfactory, as it ignores numerous pathogenic factors, including anomalous reactive oxygen species (ROS) generation and inflammatory responses. We found that the upregulation of VEGF-B and downregulation of interleukin-22 (IL-22) among DN patients were significantly associated with the progression of DN. Thus, we hypothesized that a combination of a VEGF-B antibody and IL-22 could protect against DN not only by regulating glycolipid metabolism but also by reducing the accumulation of inflammation and ROS. To meet these challenges, a novel anti-VEGFB/IL22 fusion protein was developed, and its therapeutic effects on DN were further studied. We found that the anti-VEGFB/IL22 fusion protein reduced renal lipid accumulation by inhibiting the expression of fatty acid transport proteins and ameliorated inflammatory responses

8.
Article | IMSEAR | ID: sea-214692

ABSTRACT

Dengue fever has become a major public health concern during the last few years with an alarming increase in the incidence in 2017. The state of Kerala was one among the top of the list in India reported to have severe dengue infection. The two main districts in Kerala with high prevalence were Thiruvananthapuram and Palakkad, of which latter is the main referring area to our institution. This study was conducted to evaluate the clinical and demographic profile of children affected with dengue fever and determine the predictors of severity.METHODSThis is a hospital based prospective study done at the Department of Paediatrics, Government Medical College, Trissur, during the Monsoon season in 2017. Children diagnosed to have Dengue fever and confirmed by NS1 Ag test or IgM Elisa were included. Children were classified into 3 clinical groups and compared. Comparison was also made in 2 groups as dengue with warning signs and severe dengue as per WHO 2015 clinical guidelines, to find out the predictors of severity. Qualitative data was analysed and expressed in proportions and quantitative data in mean and standard deviation. Chi-square (χ2) test was used to evaluate the association between qualitative variables and ANOVA for quantitative variables. p value less than 0.05 was considered significant. SPSS 16.0 software was used for statistical analysis.RESULTSA total of 235 children were included. 77 children (32.9%) had mild dengue fever, 106 (45.29%) had DWS and 52 (22.22%) were having DSS). Mean age was 6.61± 3.497 years. 19 cases (8.2 %) were Infants below 1 year of age. Majority of children had normal nutritional status. Myalgia, tiredness, vomiting, diarrhoea, abdominal pain, flushing, bleeding, oedema, hypotension, were found to be the common clinical manifestations. Thrombocytopenia, elevated serum hepatic enzymes both SGOT and SGPT, abnormal renal function tests, low sodium, hypoalbuminemia, hypoglycaemia, abnormal radiological findings were found to be the predictors of severity. We had many cases of expanded dengue syndrome including 3 cases of Hemophagocytic lymphohistiocytosis (HLH). The mortality was 0.6%.CONCLUSIONSDengue fever can affect children irrespective of their age or nutritional status. Older children and male sex were found to be more affected. There are definite clinical and lab parameters which can predict the severity in Dengue fever. Though severe illness is associated with high morbidity early diagnosis and timely appropriate clinical management, correction of dehydration along with proper referral system can save the children. The mortality can be reduced to zero even in patients having expanded dengue syndrome and Dengue shock syndrome. None of the comorbidities had affected the outcome.

9.
Acta Pharmaceutica Sinica B ; (6): 2171-2182, 2020.
Article in English | WPRIM | ID: wpr-881104

ABSTRACT

Primary bile acids were reported to augment secretion of chemokine (C‒X‒C motif) ligand 16 (CXCL16) from liver sinusoidal endothelial cells (LSECs) and trigger natural killer T (NKT) cell-based immunotherapy for liver cancer. However, abundant expression of receptors for primary bile acids across the gastrointestinal tract overwhelms the possibility of using agonists against these receptors for liver cancer control. Taking advantage of the intrinsic property of LSECs in capturing circulating nanoparticles in the circulation, we proposed a strategy using nanoemulsion-loaded obeticholic acid (OCA), a clinically approved selective farnesoid X receptor (FXR) agonist, for precisely manipulating LSECs for triggering NKT cell-mediated liver cancer immunotherapy. The OCA-nanoemulsion (OCA-NE) was prepared

10.
Acta Pharmaceutica Sinica B ; (6): 745-757, 2019.
Article in English | WPRIM | ID: wpr-774946

ABSTRACT

Non-alcoholic steatohepatitis (NASH) is a chronic metabolic syndrome and the CFLAR-JNK pathway can reverse the process of NASH. Although silibinin is used for the treatment of NASH in clinical, its effect on CFLAR-JNK pathway in NASH remains unclear. This study aimed to investigate the effect of silibinin on CFLAR-JNK pathway in NASH models both and . The study was performed using male C57BL/6 mice fed with methionine- choline-deficient diet and simultaneously treated with silibinin for 6 weeks. The study was performed by using mouse NCTC-1469 cells which were respectively pretreated with oleic acid plus palmitic acid, and adenovirus-down for 24 h, then treated with silibinin for 24 h. After the drug treatment, the key indicators involved in CFLAR-JNK pathway including hepatic injury, lipid metabolism and oxidative stress were determined. Silibinin significantly activated CFLAR and inhibited the phosphorylation of JNK, up-regulated the mRNA expression of and , reduced the activities of serum ALT and AST and the contents of hepatic TG, TC and MDA, increased the expression of NRF2 and the activities of CAT, GSH-Px and HO-1, and decreased the activities and expression of CYP2E1 and CYP4A . These effects were confirmed by the experiments. Silibinin prevented NASH by regulating CFLAR-JNK pathway, and thereby on one hand promoting the -oxidation and efflux of fatty acids in liver to relieve lipid accumulation, and on the other hand inducing antioxidase activity (CAT, GSH-Px and HO-1) and inhibiting pro-oxidase activity (CYP2E1 and CYP4A) to relieve oxidative stress.

11.
Acta Pharmaceutica Sinica B ; (6): 526-536, 2019.
Article in English | WPRIM | ID: wpr-774969

ABSTRACT

Obeticholic acid (OCA), the first FXR-targeting drug, has been claimed effective in the therapy of liver fibrosis. However, recent clinical trials indicated that OCA might not be effective against liver fibrosis, possibly due to the lower dosage to reduce the incidence of the side-effect of pruritus. Here we propose a combinatory therapeutic strategy of OCA and apoptosis inhibitor for combating against liver fibrosis. CCl-injured mice, d-galactosamine/LPS (GalN/LPS)-treated mice and cycloheximide/TNF (CHX/TNF)-treated HepG2 cells were employed to assess the effects of OCA, or together with IDN-6556, an apoptosis inhibitor. OCA treatment significantly inhibited hepatic stellate cell (HSC) activation/proliferation and prevented fibrosis. Elevated bile acid (BA) levels and hepatocyte apoptosis triggered the activation and proliferation of HSCs. OCA treatment reduced BA levels but could not inhibit hepatocellular apoptosis. An enhanced anti-fibrotic effect was observed when OCA was co-administrated with IDN-6556. Our study demonstrated that OCA inhibits HSCs activation/proliferation partially by regulating BA homeostasis and thereby inhibiting activation of HSCs. The findings in this study suggest that combined use of apoptosis inhibitor and OCA at lower dosage represents a novel therapeutic strategy for liver fibrosis.

12.
Acta Pharmaceutica Sinica B ; (6): 583-592, 2017.
Article in English | WPRIM | ID: wpr-256719

ABSTRACT

Alcohol abuse leads to alcoholic liver disease and no effective therapy is currently available. Wuzhi Tablet (WZ), a preparation of extract fromthat is a traditional hepato-protective herb, exerted a significant protective effect against acetaminophen-induced liver injury in our recent studies, but whether WZ can alleviate alcohol-induced toxicity remains unclear. This study aimed to investigate the contribution of WZ to alcohol-induced liver injury by using chronic-binge and acute models of alcohol feeding. The activities of ALT and AST in serum were assessed as well as the level of GSH and the activity of SOD in the liver. The expression of CYP2E1 and proteins in the NRF2-ARE signaling pathway including NRF2, GCLC, GCLM, HO-1 were measured, and the effect of WZ on NRF2 transcriptional activity was determined. We found that both models resulted in liver steatosis accompanied by increased transaminase activities, but that liver injury was significantly attenuated by WZ. WZ administration also inhibited CYP2E1 expression induced by alcohol, and elevated the level of GSH and the activity of SOD in the liver. Moreover, the NRF2-ARE signaling pathway was activated by WZ and the target genes were all upregulated. Furthermore, WZ significantly activated NRF2 transcriptional activity. Collectively, our study demonstrates that WZ protected against alcohol-induced liver injury by reducing oxidative stress and improving antioxidant defense, possibly by activating the NRF2-ARE pathway.

13.
Acta Pharmaceutica Sinica B ; (6): 311-318, 2017.
Article in English | WPRIM | ID: wpr-256753

ABSTRACT

Although oxymatrine (OMT) has been shown to directly inhibit the replication of hepatitis B virus (HBV), limited research has been done with this drug. In the present study, the antiviral effect of OMT was investigated in an immunocompetent mouse model of chronic HBV infection. The infection was achieved by tail vein injection of a large volume of DNA solution. OMT (2.2, 6.7 and 20 mg/kg) was administered by daily intraperitoneal injection for 6 weeks. The efficacy of OMT was evaluated by the levels of HBV DNA, hepatitis B surface antigen (HBsAg), hepatitis B e antigen (HBeAg) and hepatitis B core antigen (HBcAg). The immunoregulatory activity of OMT was evaluated by serum ELISA and flow cytometry. Results shows that OMT at 20 mg/kg inhibited HBV replication, and it was more efficient than entecavir (ETV) in the elimination of serum HBsAg and intrahepatic HBcAg. In addition, OMT accelerated the production of interferon-(IFN-) in a dose-dependent manner in CD4T cells. Our findings demonstrate the beneficial effects of OMT on the enhancement of immunological function and in the control of HBV antigens. The findings suggest this drug to be a good antiviral therapeutic candidate for the treatment of HBV infection.

14.
Article in English | WPRIM | ID: wpr-631096

ABSTRACT

Background This study is a multi-centre, open-label, randomised controlled trial that will compare the impact of selective internal radiation therapy (SIRT) using SIR-Spheres® yttrium-90 microspheres versus sorafenib on overall survival in patients with locally advanced hepatocellular carcinoma (HCC). A definitive RCT comparing the 2 most promising therapies in locally-advanced HCC will impact on outcomes in a large number of patients and change clinical practice. This will also pave the way for future trials in combined modality therapies in HCC. Methods The study is structured so that patients with locally advanced HCC, who satisfy the study eligibility criteria, will be randomised to receive either: Treatment Arm A: Oral Sorafenib therapy at a dose of 400 mg b.i.d until disease progression, no further response, complete regression or unacceptable toxicity or Treatment Arm B: A single administration of SIR-Spheres into the liver targeted at HCC in the liver by the trans-arterial route. Results Twenty patients treated with 90Y-RE and nineteen patients received Sorafenib at our institution from 14 March 2011, and 30 June 2016 were included. Data from 39 consecutive patients were analyzed. The majority of patients were Child Pugh class B(90%), Barcelona Clinic liver Cancer(BCLC) stage C(58.5%) and Okuda class I (89.5%). Approximately 71% patients diagnosed in IIIa stage and 70% of patients had HBV infection. In the analysis for best response, three of 20 patients in the SIRT group (15%) achieved a partial response 7 of 19 patients (46%) had stable disease, whereas in Sorafenib group, two of 19 patients in the SIRT group (12%) achieved a partial response 9 of 19 patients (39%) had stable disease. Conclusion This study shows the potential efficacy of SIR-Spheres and sorafenib. In summary, selective internal radiation therapy (SIRT) using SIR-Spheres is a promising treatment for well selected patients with unresectable HCC. Sorafenib is effective for the patients with locally advanced HCC without portal vein thrombosis (PVT).

15.
Acta Pharmaceutica Sinica B ; (6): 194-200, 2015.
Article in English | WPRIM | ID: wpr-329675

ABSTRACT

Kallistatin, which protects organs and cells against inflammation, fibrosis and oxidative stress, is mainly synthesized and secreted in liver. However, its relationship to human liver disease remains unclear. The purpose of this study was to explore the relationship between serum kallistatin and clinical evidence of both cirrhosis and hepatocellular carcinoma (HCC), and to determine if serum kallistatin levels could be used as a diagnostic indicator of hepatic health status, especially human liver cirrhosis (LC). Our cohort consisted of 115 patients with clinically proven liver fibrosis (LF), LC, or HCC by liver biopsies, and 31 healthy controls (CON). Serum kallistatin levels were quantified by ELISA. Results of the present study demonstrated that irrespective of the underlying etiology, serum kallistatin levels were significantly lower in the LF/LC group when compared with the CON group. A decrease in serum kallistatin levels appeared to reflect the extent of cirrhosis, with the lowest levels associated with higher grades of cirrhosis. Patients with LC had a noticeable correlation between serum kallistatin levels and other serum biochemical indicators. The area under the curve (AUC) for LC, viral liver cirrhosis (VLC) and alcoholic liver cirrhosis (ALC) was 0.845, 0.757 and 0.931, respectively. In conclusion, our findings demonstrated that kallistatin, a plasma protein produced by the liver, can be a useful and reliable diagnostic indicator of hepatic health status, especially for LC.

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