Publications by authors named "Lina Jiao"

At the end of 2019, SARS-CoV-2 emerged and rapidly spread, having a profound negative impact on human health and socioeconomic conditions. In response to this unprecedented global health crisis, significant advancements were made in the mRNA vaccine technology. In this study, we have compared the difference between two SARS-CoV-2 receptor-binding domain (RBD) mRNA-Lipid nanoparticle (LNP) vaccines prepared from two different ionizable cationic lipids: ALC-0315 and MC3.

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Functional modification of drugs can significantly improve their efficacy and safety, thus enabling targeted therapy. Functional modifications based on polysaccharides can alter their molecular structure, and effectively enhance their functional properties and biological activities. Herein, we designed and synthesized cationic Laminarin (CLam) modified with polyethyleneimine (PEI) and explored its application as a vaccine adjuvant.

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The Swine Influenza Virus (SIV) is a major respiratory pathogen in swine, causing acute, febrile, and highly transmissible infections. This virus is widespread globally and poses significant risks to human health and social development. Traditional prevention strategies for SIV rely on the use of inactivated vaccines combined with Alum adjuvants.

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From January to April 2020, the COVID-19 pandemic affected eastern China, leading medical students to adopt home protection measures that significantly altered their physical activity and lifestyle habits. This study aimed to assess the prevalence of musculoskeletal pain (MSP) among medical students during home protection and to analyze the influence of demographic factors, physical exercise habits during normal school life, home protection data on MSP. This research provides a foundation for developing interventions to reduce MSP among medical students.

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Article Synopsis
  • - The study developed a novel delivery system called Lov-PPE, which uses cationic nanoparticles to stabilize a Pickering emulsion loaded with the immunoadjuvant lovastatin, addressing issues like poor solubility and instability.
  • - Lov-PPE showed favorable physicochemical properties, such as optimal particle size and high adsorption efficiency, and significantly enhanced the immune response by promoting antibody production and activating T cells.
  • - Safety assessments showed that Lov-PPE is safe, suggesting that it could be a promising new strategy for improving vaccine formulations and their effectiveness.
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Pembrolizumab and other immunotherapies have become central in treating metastatic colon cancer, particularly effective in patients with mismatch repair deficiencies. We report a case involving a man who initially underwent radical surgery for sigmoid colon cancer on April 27, 2011, followed by hepatic tumor resection on September 21, 2017. Post-surgery, he received eight cycles of adjuvant chemotherapy with the CAPEOX regimen and was regularly monitored through CT and MRI scans.

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Micro- and nanoparticles delivery systems have been widely studied as vaccine adjuvants to enhance immunogenicity and sustain long-term immune responses. Polygonatum sibiricum polysaccharide (PSP) has been widely studied as an immunoregulator in improving immune responses. In this study, we synthesized and characterized cationic modified calcium carbonate (CaCO) microparticles loaded with PSP (PEI-PSP-CaCO, CTAB-PSP-CaCO), studied the immune responses elicited by PEI-PSP-CaCO and CTAB-PSP-CaCO carrying ovalbumin (OVA).

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Article Synopsis
  • * This study reveals that regulating antigen degradation in dendritic cells and slowing their transport enhances T-cell and B-cell immune responses, leading to better long-lasting immunity.
  • * The approach outperforms traditional adjuvants like Aluminium (Alum) by increasing antigen retention at the injection site and boosting immune cell responses, paving the way for more effective next-generation vaccines.
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  • Adjuvants are crucial for vaccines to trigger strong immune responses, and this study introduces a self-assembling nanovaccine that combines adjuvant properties into its delivery method.
  • The nanovaccine, made of cationic Lentinan and ovalbumin, effectively enhances the maturation of immune cells and generates a robust immune response targeting lymph nodes, by activating various signaling pathways.
  • Vaccination with this nanovaccine not only boosts immune cell activity but also successfully inhibits the growth of specific cancer cells, showing its potential as a new strategy in cancer immunotherapy.
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Article Synopsis
  • The immune system protects the body from pathogens, but can be weakened by various factors, leading to issues with vaccination effectiveness and increased disease susceptibility.
  • Lentinan (LNT) has been shown to enhance immune function, as demonstrated in a study where it improved antibody levels and stimulated T-lymphocyte activity in immunosuppressed mice.
  • The study suggests that LNT could be a valuable tool in reversing immunosuppression and enhancing the effectiveness of vaccinations.
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Background: Enucleation, a surgical procedure, is commonly used to treat large jaw cysts, unicystic ameloblastomas and keratocysts. However, it remains unclear to what extent the jaw bone regenerates after enucleation. We aimed to evaluate the percentage and the survival analysis of jaw bone regeneration, in terms of cavity volume residual (CVR), in patients who underwent enucleation of large jaw cysts, unicystic ameloblastomas and keratocysts.

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Hydrogel has been proven to have the ability to deliver antigens continuously to achieve slow vaccine delivery, which makes it a promising candidate for an adjuvant delivery platform. Meanwhile, graphene oxide (GO) has garnered significant attention due to its good biosafety, excellent surface area and easy modification. However, GO exists as weak colloidal particles and poses challenges in self-assembling into a hydrogel structure.

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Article Synopsis
  • Researchers combined astragalus polysaccharides and simvastatin to create a more effective compound emulsion adjuvant, optimizing concentrations based on immune response in mice.
  • The optimal formulation led to stronger and more stable immune responses compared to traditional adjuvants, with notable increases in IgG expression and Th1-polarized responses, suggesting a promising direction for future adjuvant development.
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Pickering emulsion has great potential as a vaccine adjuvant due to its unique advantages such as its high antigen loading efficiency, great stability, etc. Among several adjuvants on the market, aluminum adjuvant (Alum) is the most widely used at present. However, problems such as the inability to effectively induce cellular immunity and the poor effect on subunit vaccines limit the application of Alum.

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  • Chinese yam polysaccharides (CYP) have great immune-boosting potential, but their low bioavailability hinders clinical use.
  • The study developed a PLGA-stabilized Pickering emulsion adjuvant system (CYP-PPAS) for a vaccine against Porcine circovirus 2, demonstrating enhanced antigen loading and uptake by immune cells.
  • CYP-PPAS effectively promoted immune responses in mice, leading to better maturation of dendritic cells, higher antibody production, and stronger cytotoxic lymphocyte activity compared to other groups, suggesting it could be an innovative approach for creating effective adjuvants against infections.
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In many clinical studies, prebiotics have been used as adjuvant therapy for inflammatory bowel disease (IBD). Phellinus igniarius polysaccharide (PIP) possesses great anti-inflammatory and prebiotic activities. Herein, we developed an orally deliverable PIP-loaded chitosan-modified PLGA nanomedicine (CS-PIPP) to investigate its anti-inflammatory effect in vitro and in vivo.

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The Chinese yam polysaccharides PLGA nanoparticles were applied as stabilizers in this study to prepare O/W Pickering emulsion. The optimized preparation conditions were PLGA concentration of 5 mg/mL, ultrasonic power of 50 %, and ultrasonic time of 2 min. The CYP-PPAS emulsion exhibits a raspberry-like morphology with a large number of nanoparticles surrounding the oil droplets.

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Lentinan (LNT), a β-1,3-linked-d-glucan with β-1,6 glucose branches, is the main bioactive component extracted from Lentinus edodes. As a carbohydrate polymer, it has attracted increasingly attention because of immune enhancement effect. Pickering emulsion has been widely used in biomedicine due to its great stability, high loading capacity, and appreciable biocompatibility.

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polysaccharide (RMP), one of the most important active components of , has been attracting increasing interest because of its potent bioactive properties, including anti-inflammatory, antitumor, and antidiabetic effects. Despite the great therapeutic potential of RMP, its inherent properties of low bioavailability and brief biological half-life have limited its applications to the clinic. Thus, RMP was packaged by poly(lactic--glycolic acid) (PLGA) nanoparticles to develop a novel anti-inflammatory nanomedicine (PLGA-RMP) in this study.

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In this study, ramulus mori polysaccharide (RMP) was encapsulated into Poly (lactic-co-glycolicacid) (PLGA) to form PLGA-RMP (PR). The aim of study is to investigate anti-inflammatory effects of PR. The particle size of PR nanoparticles was approximately 205.

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The purpose of the study was to establish a comprehensive differential gene profile for lung cancer patients treated with cisplatin compared with control patients without any chemotherapy drug treatment. The RNA sequencing data and miRNA sequencing data of 108 lung cancer patients treated with cisplatin only and 232 lung cancer patients treated without any chemotherapeutic drugs, were analyzed using differential expression, protein-protein interaction, and immune cell infiltration ratio analysis. Compared with control patients, the cisplatin-treated patients demonstrated 336 differentially expressed genes, which included 48 upregulated genes and 288 downregulated genes.

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BACKGROUND This work aimed to screen key biomarkers related to sepsis progression by bioinformatics analyses. MATERIAL AND METHODS The microarray datasets of blood and neutrophils from patients with sepsis or septic shock were downloaded from Gene Expression Omnibus database. Then, differentially expressed genes (DEGs) from 4 groups (sepsis versus normal blood samples; septic shock versus normal blood samples; sepsis neutrophils versus normal controls and septic shock neutrophils versus controls) were respectively identified followed by functional analyses.

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In this work, the molecular modeling method was performed to study adsorption interaction between PAMAM molecules of different generations and silicic acid molecules, and the inhibition effect on silica scale were discussed. The results show that adsorption energies of PAMAM molecule of generation 1.0 with amine-terminated groups are stronger than those of generation 1.

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Through the experiment simulated sand columns, the biodegradation characteristics of diesel in sand layers (including fine sand, medium sand and coarse sand) with different depths and moisture contents were studied. The results show that the depth and moisture content of medium are important factors in affecting the efficiency of diesel degradation. In the same medium conditions, the higher moisture content of the medium, the higher biological activity, and biological degradation efficiency of diesel are observed.

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