1.Effect of polymer nanoparticles on atherosclerotic lesions and the associated mechanisms: a review.
Hang ZOU ; Yan LONG ; Yuzhen REN ; Tieying YIN
Chinese Journal of Biotechnology 2023;39(4):1390-1402
		                        		
		                        			
		                        			Polymer nanoparticles generally refer to hydrophobic polymers-based nanoparticles, which have been extensively studied in the nanomedicine field due to their good biocompatibility, efficient long-circulation characteristics, and superior metabolic discharge patterns over other nanoparticles. Existing studies have proved that polymer nanoparticles possess unique advantages in the diagnosis and treatment of cardiovascular diseases, and have been transformed from basic researches to clinical applications, especially in the diagnosis and treatment of atherosclerosis (AS). However, the inflammatory reaction induced by polymer nanoparticles would induce the formation of foam cells and autophagy of macrophages. In addition, the variations in the mechanical microenvironment of cardiovascular diseases may cause the enrichment of polymer nanoparticles. These could possibly promote the occurrence and development of AS. Herein, this review summarized the recent application of polymer nanoparticles in the diagnosis and treatment of AS, as well as the relationship between polymer nanoparticles and AS and the associated mechanism, with the aim to facilitate the development of novel nanodrugs for the treatment of AS.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Polymers/chemistry*
		                        			;
		                        		
		                        			Cardiovascular Diseases
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Drug Delivery Systems
		                        			;
		                        		
		                        			Atherosclerosis/pathology*
		                        			
		                        		
		                        	
2.Preparation, properties and antibacterial applications of medical nano-metals and their oxides: a review.
Jiasheng ZUO ; Ying QIN ; Zuzhen ZHAO ; Lu XING ; Tian LIU ; Song WANG ; Weiqiang LIU
Chinese Journal of Biotechnology 2023;39(4):1462-1476
		                        		
		                        			
		                        			Antibiotics are playing an increasingly important role in clinical antibacterial applications. However, their abuse has also brought toxic and side effects, drug-resistant pathogens, decreased immunity and other problems. New antibacterial schemes in clinic are urgently needed. In recent years, nano-metals and their oxides have attracted wide attention due to their broad-spectrum antibacterial activity. Nano-silver, nano-copper, nano-zinc and their oxides are gradually applied in biomedical field. In this study, the classification and basic properties of nano-metallic materials such as conductivity, superplasticity, catalysis, and antibacterial activities were firstly introduced. Secondly, the common preparation techniques, including physical, chemical and biological methods, were summarized. Subsequently, four main antibacterial mechanisms, such as cell membrane, oxidative stress, DNA destruction and cell respiration reduction, were summarized. Finally, the effect of size, shape, concentration and surface chemical characteristics of nano-metals and their oxides on antibacterial effectiveness and the research status of biological safety such as cytotoxicity, genotoxicity and reproductive toxicity were reviewed. At present, although nano-metals and their oxides have been applied in medical antibacterial, cancer treatment and other clinical fields, some issues such as the development of green preparation technology, the understanding of antibacterial mechanism, the improvement of biosafety, and the expansion of application fields, require further exploration.
		                        		
		                        		
		                        		
		                        			Oxides/chemistry*
		                        			;
		                        		
		                        			Metal Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Anti-Bacterial Agents/chemistry*
		                        			;
		                        		
		                        			Zinc
		                        			;
		                        		
		                        			Copper
		                        			
		                        		
		                        	
3.Effects of Platycodonis Radix-Curcumae Rhizoma on oral nanoparticle uptake and in vitro inhibition against breast cancer metastasis.
Jiang-Pei SHI ; Rong-Guang ZHANG ; Xiao-Yan GU ; Ying-Wei SUN ; Nian-Ping FENG ; Ying LIU
China Journal of Chinese Materia Medica 2023;48(9):2419-2425
		                        		
		                        			
		                        			This study combined the herbal pair Platycodonis Radix-Curcumae Rhizoma(PR-CR) possessing an inhibitory effect on tumor cell proliferation and metastasis with the active component of traditional Chinese medicine(TCM) silibinin-loaded nanoparticles(NPs) with a regulatory effect on tumor microenvironment based on the joint effect on tumor cells and tumor microenvironment to inhi-bit cell metastasis. The effects of PR-CR on the cellular uptake of NPs and in vitro inhibition against breast cancer proliferation and metastasis were investigated to provide an experimental basis for improving nanoparticle absorption and enhancing therapeutic effects. Silibinin-loaded lipid-polymer nanoparticles(LPNs) were prepared by the nanoprecipitation method and characterized by transmission electron microscopy. The NPs were spherical or quasi-spherical in shape with obvious core-shell structure. The mean particle size was 107.4 nm, Zeta potential was-27.53 mV. The cellular uptake assay was performed by in vitro Caco-2/E12 coculture cell model and confocal laser scanning microscopy(CLSM), and the results indicated that PR-CR could promote the uptake of NPs. Further, in situ intestinal absorption assay by the CLSM vertical scanning approach showed that PR-CR could promote the absorption of NPs in the enterocytes of mice. The inhibitory effect of NPs on the proliferation and migration of 4T1 cells was analyzed using 4T1 breast cancer cells and co-cultured 4T1/WML2 cells, respectively. The results of the CCK8 assay showed that PR-CR-containing NPs could enhance the inhibition against the proliferation of 4T1 breast cancer cells. The wound healing assay indicated that PR-CR-containing NPs enhanced the inhibition against the migration of 4T1 breast cancer cells. This study enriches the research on oral absorption of TCM NPs and also provides a new idea for utilizing the advantages of TCM to inhibit breast cancer metastasis.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			Mice
		                        			;
		                        		
		                        			Animals
		                        			;
		                        		
		                        			Female
		                        			;
		                        		
		                        			Silybin/therapeutic use*
		                        			;
		                        		
		                        			Caco-2 Cells
		                        			;
		                        		
		                        			Polymers/chemistry*
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Cell Line, Tumor
		                        			;
		                        		
		                        			Breast Neoplasms/pathology*
		                        			;
		                        		
		                        			Tumor Microenvironment
		                        			
		                        		
		                        	
4.Progress in the Application of Magnetic Nanoparticles in Forensic Trace Analysis.
Zhong-Ping CHENG ; Yan-Fei LIU ; Xing-Min XU ; Yao-Nan MO
Journal of Forensic Medicine 2023;39(2):168-175
		                        		
		                        			
		                        			Given the complexity of biological samples and the trace nature of target materials in forensic trace analysis, a simple and effective method is needed to obtain sufficient target materials from complex substrates. Magnetic nanoparticles (MNPs) have shown a wide range of application value in many research fields, such as biomedicine, drug delivery and separation, due to their unique superparamagnetic properties, stable physical and chemical properties, biocompatibility, small size, high specific surface area and other characteristics. To apply MNPs in the pretreatment of forensic materials, maximize the extraction rate of the target materials, and minimize interference factors to meet the requirements of trace analysis of the target materials, this paper reviews the application of MNPs in the fields of forensic toxicological analysis, environmental forensic science, trace evidence analysis and criminal investigation in recent years, and provides research ideas for the application of MNPs in forensic trace analysis.
		                        		
		                        		
		                        		
		                        			Magnetite Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Forensic Medicine
		                        			;
		                        		
		                        			Forensic Sciences
		                        			;
		                        		
		                        			Forensic Toxicology
		                        			
		                        		
		                        	
5.Application of organic nanocarriers for intraocular drug delivery.
Wanwan CHANG ; Jingjing SHEN ; Zhuang LIU ; Qian CHEN
Journal of Zhejiang University. Medical sciences 2023;52(3):259-266
		                        		
		                        			
		                        			The application of intraocular drug delivery is usually limited due to special anatomical and physiological barriers, and the elimination mechanisms in the eye. Organic nano-drug delivery carriers exhibit excellent adhesion, permeability, targeted modification and controlled release abilities to overcome the obstacles and improve the efficiency of drug delivery and bioavailability. Solid lipid nanoparticles can entrap the active components in the lipid structure to improve the stability of drugs and reduce the production cost. Liposomes can transport hydrophobic or hydrophilic molecules, including small molecules, proteins and nucleic acids. Compared with linear macromolecules, dendrimers have a regular structure and well-defined molecular mass and size, which can precisely control the molecular shape and functional groups. Degradable polymer materials endow nano-delivery systems a variety of size, potential, morphology and other characteristics, which enable controlled release of drugs and are easy to modify with a variety of ligands and functional molecules. Organic biomimetic nanocarriers are highly optimized through evolution of natural particles, showing better biocompatibility and lower toxicity. In this article, we summarize the advantages of organic nanocarriers in overcoming multiple barriers and improving the bioavailability of drugs, and highlight the latest research progresses on the application of organic nanocarriers for treatment of ocular diseases.
		                        		
		                        		
		                        		
		                        			Drug Carriers
		                        			;
		                        		
		                        			Delayed-Action Preparations
		                        			;
		                        		
		                        			Drug Delivery Systems
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			
		                        		
		                        	
6.Research progress on the nucleoside/nucleotide-loaded nanomedicines.
Zheng ZHOU ; Haifang LIU ; Mingzhou YE
Journal of Zhejiang University. Medical sciences 2023;52(3):279-284
		                        		
		                        			
		                        			Nucleoside drugs play an essential role in treating major diseases such as tumor and viral infections, and have been widely applied in clinics. However, the effectiveness and application of nucleoside drugs are significantly limited by their intrinsic properties such as low bioavailability, lack of targeting ability, and inability to enter the cells. Nanocarriers can improve the physiological properties of nucleoside drugs by improving drug delivery efficiency and availability, maintaining drug efficacy and system stability, adjusting the binding ability of the carrier and drug molecules, as well as modifying specific molecules to achieve active targeting. Starting from the design strategy of nucleoside drug nanodelivery systems, the design and therapeutic effect of these nanomedicines are described in this review, and the future development directions of nucleoside/nucleotide-loaded nanomedicines are also discussed.
		                        		
		                        		
		                        		
		                        			Nanomedicine
		                        			;
		                        		
		                        			Nucleosides/chemistry*
		                        			;
		                        		
		                        			Nucleotides
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Drug Delivery Systems
		                        			;
		                        		
		                        			Drug Carriers
		                        			
		                        		
		                        	
7.Advances in anti-invasive fungal drug delivery systems.
Zhongyi MA ; Xinyu WANG ; Chong LI
Journal of Zhejiang University. Medical sciences 2023;52(3):318-327
		                        		
		                        			
		                        			Currently, the first-line drugs for invasive fungal infections (IFI), such as amphotericin B, fluconazole and itraconazole, have drawbacks including poor water solubility, low bioavailability, and severe side effects. Using drug delivery systems is a promising strategy to improve the efficacy and safety of traditional antifungal therapy. Synthetic and biomimetic carriers have greatly facilitated the development of targeted delivery systems for antifungal drugs. Synthetic carrier drug delivery systems, such as liposomes, nanoparticles, polymer micelles, and microspheres, can improve the physicochemical properties of antifungal drugs, prolong their circulation time, enhance targeting capabilities, and reduce toxic side effects. Cell membrane biomimetic drug delivery systems, such as macrophage or red blood cell membrane-coated drug delivery systems, retain the membrane structure of somatic cells and confer various biological functions and specific targeting abilities to the loaded antifungal drugs, exhibiting better biocompatibility and lower toxicity. This article reviews the development of antifungal drug delivery systems and their application in the treatment of IFI, and also discusses the prospects of novel biomimetic carriers in antifungal drug delivery.
		                        		
		                        		
		                        		
		                        			Antifungal Agents/therapeutic use*
		                        			;
		                        		
		                        			Drug Delivery Systems
		                        			;
		                        		
		                        			Amphotericin B/therapeutic use*
		                        			;
		                        		
		                        			Liposomes/chemistry*
		                        			;
		                        		
		                        			Nanoparticles
		                        			;
		                        		
		                        			Drug Carriers
		                        			
		                        		
		                        	
8.Research progress on the preparation and application of flavonoid nanocrystals.
Yiting TIAN ; Zhiqun SHI ; Huiping MA
Journal of Zhejiang University. Medical sciences 2023;52(3):338-348
		                        		
		                        			
		                        			Flavonoids have been reported to possess significant pharmacological activities,such as antioxidant, anti-inflammatory and anticancer effects. However, the low solubility and low bioavailability limits their clinical application. Nanocrystal technology can solve the delivery problems of flavonoids by reducing particle size, increasing the solubility of insoluble drugs and improving their bioavailability. This article summaries nanosuspension preparation methods and the stabilizers for flavonoid nanocrystals, and reviews the drug delivery routes including oral, Injection and transdermal of flavonoid nanocrystals, to provide information for further research on nanocrystal delivery system of flavonoids.
		                        		
		                        		
		                        		
		                        			Flavonoids/pharmacology*
		                        			;
		                        		
		                        			Pharmaceutical Preparations/chemistry*
		                        			;
		                        		
		                        			Biological Availability
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Anti-Inflammatory Agents
		                        			;
		                        		
		                        			Particle Size
		                        			
		                        		
		                        	
9.Mechanism of Der f 1/IGF-1 nanoparticle promoting the production of regulatory T cell.
Longpeng MA ; Xiangqian LUO ; Lihua MO ; Jialiang FAN ; Dabo LIU
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2023;37(4):272-277
		                        		
		                        			
		                        			Objective:To prepare PLGA nanoparticles loaded with Der f 1/IGF-1(Der f 1/IGF-1 NPs) and investigate their role in promoting the formation of Treg cells. Methods:NPs coated with Der f 1/IGF-1 were prepared by double emulsion method and their physicochemical properties and cumulative release rate in vitro were analyzed. After pretreatment, BMDC was divided into Saline group, Blank NPs group, Der f 1/IGF-1 group and Der f 1/IGF-1 NPs group. Determination of the expression of IL-10 and TGF-β in BMDC by ELISA. The number of Treg cells was detected by flow cytometry. Results:The results showed that Der f 1/IGF-1 NPs were spherical structures, with good dispersion, particle size less than 200 nm, negative charge and stable slow-release effect of Zeta potential. After BMDC pretreatment, the expression levels of TGF-β and IL-10 in BMDC cells in the Der f 1/IGF-1 NPs group were significantly increased compared with the Blank NPs group, and the difference was statistically significant(P<0.001). After co-culture with CD4+ T cells, the proportion of Treg cells produced in the Der f 1/IGF-1 NPs group was significantly increased, and the difference was statistically significant(P<0.001). Conclusion:Der f 1/IGF-1 NPs can induce Treg cell generation in vitro. This study provides a new and more effective method for the reconstruction of immune tolerance dysfunction.
		                        		
		                        		
		                        		
		                        			Humans
		                        			;
		                        		
		                        			T-Lymphocytes, Regulatory/metabolism*
		                        			;
		                        		
		                        			Interleukin-10/metabolism*
		                        			;
		                        		
		                        			Insulin-Like Growth Factor I
		                        			;
		                        		
		                        			Transforming Growth Factor beta
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Particle Size
		                        			;
		                        		
		                        			Drug Carriers/chemistry*
		                        			
		                        		
		                        	
10.The toxicity of ZnO and CuO nanoparticles on biological wastewater treatment and its detoxification: a review.
Yuran YANG ; Can ZHANG ; Zhenlun LI
Chinese Journal of Biotechnology 2023;39(3):1026-1039
		                        		
		                        			
		                        			The wide use of ZnO and CuO nanoparticles in research, medicine, industry, and other fields has raised concerns about their biosafety. It is therefore unavoidable to be discharged into the sewage treatment system. Due to the unique physical and chemical properties of ZnO NPs and CuO NPs, it may be toxic to the members of the microbial community and their growth and metabolism, which in turn affects the stable operation of sewage nitrogen removal. This study summarizes the toxicity mechanism of two typical metal oxide nanoparticles (ZnO NPs and CuO NPs) to nitrogen removal microorganisms in sewage treatment systems. Furthermore, the factors affecting the cytotoxicity of metal oxide nanoparticles (MONPs) are summarized. This review aims to provide a theoretical basis and support for the future mitigating and emergent treatment of the adverse effects of nanoparticles on sewage treatment systems.
		                        		
		                        		
		                        		
		                        			Wastewater/toxicity*
		                        			;
		                        		
		                        			Sewage/chemistry*
		                        			;
		                        		
		                        			Zinc Oxide/chemistry*
		                        			;
		                        		
		                        			Waste Disposal, Fluid
		                        			;
		                        		
		                        			Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Metal Nanoparticles/chemistry*
		                        			;
		                        		
		                        			Nitrogen/metabolism*
		                        			;
		                        		
		                        			Water Purification
		                        			
		                        		
		                        	
            
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