1.Effects of intranasal administration of tripterygium glycoside-bearing liposomes on behavioral cognitive impairment of mice induced by central nervous system inflammation.
Min YAN ; Lan ZHANG ; Lu-Lu ZHANG ; Zhen-Qiang ZHANG ; Hua-Hui ZENG ; Xiang-Xiang WU
China Journal of Chinese Materia Medica 2023;48(9):2426-2434
Tripterygium glycosides liposome(TPGL) were prepared by thin film-dispersion method, which were optimized accor-ding to their morphological structures, average particle size and encapsulation rate. The measured particle size was(137.39±2.28) nm, and the encapsulation rate was 88.33%±1.82%. The mouse model of central nervous system inflammation was established by stereotaxic injection of lipopolysaccharide(LPS). TPGL and tripterygium glycosides(TPG) were administered intranasally for 21 days. The effects of intranasal administration of TPG and TPGL on behavioral cognitive impairment of mice due to LPS-induced central ner-vous system inflammation were estimated by animal behavioral tests, hematoxylin-eosin(HE) staining of hippocampus, real-time quantitative polymerase chain reaction(RT-qPCR) and immunofluorescence. Compared with TPG, TPGL caused less damage to the nasal mucosa, olfactory bulb, liver and kidney of mice administered intranasally. The behavioral performance of treated mice was significantly improved in water maze, Y maze and nesting experiment. Neuronal cell damage was reduced, and the expression levels of inflammation and apoptosis related genes [tumor necrosis factor-α(TNF-α), interleukin-1β(IL-1β), BCL2-associated X(Bax), etc.] and glial activation markers [ionized calcium binding adaptor molecule 1(IBA1) and glial fibrillary acidic protein(GFAP)] were decreased. These results indicated that liposome technique combined with nasal delivery alleviated the toxic side effects of TPG, and also significantly ameliorated the cognitive impairment of mice induced by central nervous system inflammation.
Mice
;
Animals
;
Tripterygium
;
Liposomes
;
Glycosides/therapeutic use*
;
Administration, Intranasal
;
Lipopolysaccharides
;
Central Nervous System
;
Cognitive Dysfunction/drug therapy*
;
Inflammation/metabolism*
;
Tumor Necrosis Factor-alpha/metabolism*
;
Cardiac Glycosides
2.Ginsenoside Rg_3 based liposomes target delivery of dihydroartemisinin and paclitaxel for treatment of triple-negative breast cancer.
Hua LIU ; Yi LIU ; Na LI ; Guo-Qin ZHANG ; Meng WANG
China Journal of Chinese Materia Medica 2023;48(13):3472-3484
Ginsenoside Rg_3, an active component of traditional Chinese medicine(TCM), was used as the substitute for cholesterol as the membrane material to prepare the ginsenoside Rg_3-based liposomes loaded with dihydroartemisinin and paclitaxel. The effect of the prepared drug-loading liposomes on triple-negative breast cancer in vitro was evaluated. Liposomes were prepared with the thin film hydration method, and the preparation process was optimized by single factor experiments. The physicochemical properties(e.g., particle size, Zeta potential, and stability) of the liposomes were characterized. The release behaviors of drugs in different media(pH 5.0 and pH 7.4) were evaluated. The antitumor activities of the liposomes were determined by CCK-8 on MDA-MB-231 and 4T1 cells. The cell scratch test was carried out to evaluate the effect of the liposomes on the migration of MDA-MB-231 and 4T1 cells. Further, the targeting ability of liposomes and the mechanism of lysosome escape were investigated. Finally, H9c2 cells were used to evaluate the potential cardiotoxicity of the preparation. The liposomes prepared were spheroid, with uniform particle size distribution, the ave-rage particle size of(107.81±0.01) nm, and the Zeta potential of(2.78±0.66) mV. The encapsulation efficiency of dihydroartemisinin and paclitaxel was 57.76%±1.38% and 99.66%±0.07%, respectively, and the total drug loading was 4.46%±0.71%. The accumulated release of dihydroartemisinin and paclitaxel from the liposomes at pH 5.0 was better than that at pH 7.4, and the liposomes could be stored at low temperature for seven days with good stability. Twenty-four hours after administration, the inhibition rates of the ginsenoside Rg_3-based liposomes loaded with dihydroartemisinin(70 μmol·L~(-1)) and paclitaxel on MDA-MB-231 and 4T1 cells were higher than those of the positive control(adriamycin) and free drugs(P<0.01). Compared with free drugs, liposomes inhibited the migration of MDA-MB-231 and 4T1 cells(P<0.05). Liposomes demonstrated active targeting and lysosome escape. In particular, liposomes showed lower toxicity to H9c2 cells than free drugs(P<0.05), which indicated that the preparation had the potential to reduce cardiotoxicity. The findings prove that ginsenoside Rg_3 characterized by the combination of drug and excipient is an ideal substitute for lipids in liposomes and promoted the development of innovative TCM drugs for treating cancer.
Humans
;
Paclitaxel/pharmacology*
;
Liposomes/chemistry*
;
Ginsenosides/therapeutic use*
;
Triple Negative Breast Neoplasms/drug therapy*
;
Cardiotoxicity/drug therapy*
;
Cell Line, Tumor
3.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
4.A real-world study on the efficacy and safety analysis of paclitaxel liposome in advanced breast cancer.
Chun Xiao SUN ; Shu Sen WANG ; Jian Bin LI ; Yong Sheng WANG ; Qu Chang OUYANG ; Jin YANG ; Hai Bo WANG ; Xiao Jia WANG ; Wen Yan CHEN ; Peng YUAN ; Min YAN ; Ze Fei JIANG ; Yong Mei YIN
Chinese Journal of Oncology 2023;45(1):88-94
Objective: To explore the application and efficacy of paclitaxel liposome in the treatment of advanced breast cancer among Chinese population in the real world. Methods: The clinical characteristics of patients with advanced breast cancer who received paclitaxel liposome as salvage treatment from January 1, 2016 to August 31, 2019 in 11 hospitals were collected and retrospectively analyzed. The primary outcome was progression free survival (PFS), and the secondary outcome included objective response rate (ORR) and safety. The survival curve was drawn by Kaplan-Meier analysis and the Cox regression model were used for the multivariate analysis. Results: Among 647 patients with advanced breast cancer who received paclitaxel liposome, the first-line treatment accounted for 43.3% (280/647), the second-line treatment accounted for 27.7% (179/647), and the third-line and above treatment accounted for 29.1% (188/647). The median dose of first-line and second-line treatment was 260 mg per cycle, and 240 mg in third line and above treatment. The median period of paclitaxel liposome alone and combined chemotherapy or targeted therapy is 4 cycles and 6 cycles, respectively. In the whole group, 167 patients (25.8%) were treated with paclitaxel liposome combined with capecitabine±trastuzumab (TX±H), 123 patients (19.0%) were treated with paclitaxel liposome alone (T), and 119 patients (18.4%) were treated with paclitaxel liposome combined with platinum ± trastuzumab (TP±H), 108 patients (16.7%) were treated with paclitaxel liposome combined with trastuzumab ± pertuzumab (TH±P). The median PFS of first-line and second-line patients (5.5 and 5.5 months, respectively) were longer than that of patients treated with third line and above (4.9 months, P<0.05); The ORR of the first line, second line, third line and above patients were 46.7%, 36.8% and 28.2%, respectively. Multivariate analysis showed that event-free survival (EFS) and the number of treatment lines were independent prognostic factors for PFS. The common adverse events were myelosuppression, gastrointestinal reactions, hand foot syndrome and abnormal liver function. Conclusion: Paclitaxel liposomes is widely used and has promising efficacy in multi-subtype advanced breast cancer.
Humans
;
Female
;
Breast Neoplasms/chemically induced*
;
Paclitaxel/adverse effects*
;
Liposomes/therapeutic use*
;
Retrospective Studies
;
Treatment Outcome
;
Trastuzumab/therapeutic use*
;
Capecitabine/therapeutic use*
;
Antineoplastic Combined Chemotherapy Protocols/adverse effects*
5.Progresses on active targeting liposome drug delivery systems for tumor therapy.
Manyu ZHANG ; Chenxi LOU ; Aoneng CAO
Journal of Biomedical Engineering 2022;39(3):633-638
Liposome is an ideal drug carrier with many advantages such as excellent biocompatibility, non-immunogenicity, and easy functionalization, and has been used for the clinical treatment of many diseases including tumors. For the treatment of tumors, liposome has some passive targeting capability, but the passive targeting effect alone is very limited in improving the drug enrichment in tumor tissues, and active targeting is an effective strategy to improve the drug enrichment. Therefore, active targeting liposome drug-carriers have been extensively studied for decades. In this paper, we review the research progresses on active targeting liposome drug-carriers based on the specific binding of the carriers to the surface of tumor cells, and summarize the opportunities, challenges and future prospects in this field.
Drug Carriers/therapeutic use*
;
Drug Delivery Systems
;
Humans
;
Liposomes/therapeutic use*
;
Neoplasms/drug therapy*
6.Doxorubicin Hydrochloride Liposome-Based CHOP Regimen in the Initial Treatment of Elderly Patients with Diffuse Large B-Cell Lymphoma: A Retrospective Study.
Xiang-Dong WANG ; Bo GUO ; Bing ZHAI ; Bo YANG ; Hui FAN ; Xue-Chun LU ; Su-Xia LI ; Hong-Li ZHU
Journal of Experimental Hematology 2021;29(4):1136-1140
OBJECTIVE:
To evaluate the efficacy and safety of CHOP regimen based on doxorubicin hydrochloride liposome in the initial treatment of elderly patients with diffuse large B-cell lymphoma (DLBCL).
METHODS:
Thirty-one patients with DLBCL treated from January 1, 2012 to December 31, 2019 were analyzed retrospectively, their median age was 83 (71-95) years old, and all of them were in Ⅲ-Ⅳ stage, including 17 cases who had international prognostic index (IPI) ≥ 3. The patients were treated with R-CHOP and CHOP regimens based on doxorubicin hydrochloride liposome. The efficacy and safety were evaluated during and after treatment.
RESULTS:
A total of 219 chemotherapy cycles and 7 median cycles were performed in 31 patients. The overall response (OR) rate and complete remission (CR) rate was 80.7% (25/31) and 61.3% (19/31), respectively, as well as 2 cases (6.5%) stable, 4 cases (12.9%) progressive. The main toxicities were as follows: the incidence of grade Ⅲ -Ⅳ neutropenia was 29% (9/31); two patients (6.5%) developed degree Ⅰ-Ⅱ cardiac events, which were characterized by new degree Ⅰ atrioventricular block; there were no cardiac events requiring emergency treatment and discontinuation of chemotherapy. The 1-year, 2-year and 3-year overall survival rate was 83.9%, 77.4% and 61.3%, respectively. The 1-year, 2-year and 3-year progression-free survival rate was 77.4%, 64.5% and 61.3%, respectively.
CONCLUSION
The chemotherapy regimen based on doxorubicin hydrochloride liposome has better efficacy and higher cardiac safety for elderly patients with DLBCL.
Aged
;
Aged, 80 and over
;
Antineoplastic Combined Chemotherapy Protocols
;
Cyclophosphamide/therapeutic use*
;
Doxorubicin/therapeutic use*
;
Humans
;
Liposomes/therapeutic use*
;
Lymphoma, Large B-Cell, Diffuse/drug therapy*
;
Prednisolone
;
Prednisone/therapeutic use*
;
Retrospective Studies
;
Rituximab/therapeutic use*
;
Vincristine/therapeutic use*
7.Formulation and Efficacy of Liposome-encapsulated Afatinib for Therapy of Non-small Cell Lung Cancer.
Xiaoyan LV ; Junjing YIN ; Xiucheng YANG ; Sha LIU ; Kaoxiang SUN
Chinese Journal of Lung Cancer 2018;21(9):663-669
BACKGROUND:
Afatinib, a second-generation irreversible epidermal growth factor inhibitor receptor for the development of non-small cell lung cancer and secondary drug resistance, has low bioavailability and adverse reactions due to current oral administration. The aim of this study was to prepare a novel drug delivery system, afatinib liposome, and to establish a method for the determination of encapsulation efficiency.
METHODS:
Four different preparation methods were used to prepare afatinib liposomes, and the optimal preparation process was determined by comparing the encapsulation efficiency and particle size.
RESULTS:
It has been verified that sephadex microcolumn centrifugation can be used to purify afatinib liposomes, and UV spectrophotometry can be employed to determine the entrapment efficiency of liposomes. Among different preparation methods, the encapsulation efficiency of afatinib liposomes prepared by ammonium sulfate gradient method was 90.73% and the average particle size was 108.6 nm.
CONCLUSIONS
Ammonium sulfate gradient method can be successfully applied to prepare afatinib liposomes that performed higher encapsulation efficiency and smaller particle size. The UV spectrophotometry employed to determine the liposome encapsulation efficiency was easy operation and with high accuracy.
Afatinib
;
Capsules
;
Carcinoma, Non-Small-Cell Lung
;
drug therapy
;
Drug Compounding
;
methods
;
Liposomes
;
Lung Neoplasms
;
drug therapy
;
Quinazolines
;
administration & dosage
;
chemistry
;
therapeutic use
8.The antibacterial effect of fatty acids on Helicobacter pylori infection.
The Korean Journal of Internal Medicine 2016;31(1):30-35
Eradication of Helicobacter pylori is recommended for the management of various gastric diseases, including peptic ulcers and mucosa-associated lymphoid tissue lymphoma. Because of the increasing prevalence of antibiotic resistance, the eradication rates of antibiotic-based therapies have decreased. Therefore, alternative treatments should be considered. The antibacterial properties of fatty acids (FAs) have been investigated in various organisms, including H. pylori. Some FAs, particularly polyunsaturated FAs, have been shown to have bactericidal activity against H. pylori in vitro; however, their antibacterial effects in vivo remain controversial. Poor solubility and delivery of FAs may be important reasons for this discrepancy. Recently, a series of studies demonstrated the antibacterial effects of a liposomal formulation of linolenic acid against H. pylori, both in vitro and in vivo. Further research is needed to improve the bioavailability of FAs and apply them in clinical use.
Animals
;
Anti-Bacterial Agents/administration & dosage/*therapeutic use
;
Drug Delivery Systems
;
Fatty Acids/administration & dosage/*therapeutic use
;
Helicobacter Infections/diagnosis/*drug therapy/microbiology
;
Helicobacter pylori/*drug effects/pathogenicity
;
Humans
;
Liposomes
;
Treatment Outcome
9.Efficacy and safety analysis of paclitaxel liposome and docetaxel for the neoadjuvant chemotherapy of breast cancer.
Wei SU ; Sheng ZHANG ; Chunyan LI ; Xiaomeng HAO ; Jin ZHANG ; Email: ZHANGJIN@TJMUCH.COM.
Chinese Journal of Oncology 2015;37(5):379-382
OBJECTIVEThe aim of this study was to analyze the efficacy and safety of paclitaxel liposomal and docetaxel for neoadjuvant chemotherapy of breast cancer.
METHODSWe retrospectively analyzed the clinical data of 188 operable patients with breast cancer who received neoadjuvant chemotherapy. According to the treatment regimens, they were divided into the group of paclitaxel liposome (86 patients) and group of docetaxel (102 patients) treatment. All the patients received a combination therapy with epirubicin and cyclophosphamide, i.e. neoadjuvant chemotherapy with three drugs, 21 days as a cycle, and a total of 6 cycles. Surgery was carried out three weeks after the end of chemotherapy, and the chemotherapy efficacy and adverse reaction of both groups were evaluated.
RESULTSPathological complete response (pCR) rate in the paclitaxel liposome group and docetaxel group was 10.5% and 9.8%, respectively, the objective response rate (ORR) was 80.2% and 79.4%, respectively, and the disease control rate (DCR) was 95.3% and 93.1%, respectively, showing a non-significant difference in therapy efficacy between the two groups (P > 0.05). Safety analysis indicated that all the occurrence rates of skin and nail toxic reaction, body fluid retention, oral mucositis, allergic reaction (such as facial blushing, chest distress, palpitation, dyspnea. etc.), and grade III-IV leukopenia and neutropenia in the paclitaxel liposome group were significantly lower than that of the docetaxel group (all P < 0.05).
CONCLUSIONSCompared with docetaxel, paclitaxel liposome has the same anti-tumor efficacy, but causes fewer and milder adverse reactions with a higher safety in the neoadjuvant chemotherapy for breast cancer.
Antineoplastic Combined Chemotherapy Protocols ; therapeutic use ; Breast Neoplasms ; drug therapy ; Cyclophosphamide ; therapeutic use ; Epirubicin ; therapeutic use ; Female ; Humans ; Liposomes ; Neoadjuvant Therapy ; Neutropenia ; Paclitaxel ; therapeutic use ; Remission Induction ; Taxoids ; therapeutic use
10.The inhibiting role of recombinant plasmid PGCsi-AQP1 on laryngeal carcinoma in vivo.
Guimei GUAN ; Dongdong ZHU ; Zhen DONG ; Jichao SHA
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2015;29(21):1886-1893
OBJECTIVE:
To construct a kind of recombinant plasmid PGCsi-AQP1 delivery with DOPC and explore the inhibit effect of laryngeal carcinoma by RNAi targeting AQP1 in vivo.
METHOD:
Male BALB/c mice, 6 weeks of age transplanted with laryngeal carcinoma cell line Hep-2, four groups were divided randomly: Tail vein injection group (TVIG), Carcinoma around injection group (CAIG), negative control group (NCG) and blank control group (BCG). The recombinant plasmid PGCsi-AQP1 delivery with DOPC were inject into tail vein or surrounding tumor. HE pathological slides and tumor size were observed and inhibitory rate was figured up. The level of AQP1 protein expression and high microvessel density were detected by Immunohistochemical staining (IHC).
RESULT:
We constructed BALB/c mice models of laryngeal carcinoma successfully (1) HE staining: cell putrescence, nuclear pyknosis and apoptotic bodies were more in the tumor tissues of experimental groups than two control groups. (2) The total volumes of tumor in experimental group were both smaller than in two control groups (P < 0.01). The inhibition rate of TVIG and CAIG were 52.4% and 53.5% respectively and there was no significant difference (P > 0.05). (3) IHC: the AQP1 positive cells and microvessel density in TVIG and CAIG were both less than in two control groups (P < 0.01).
CONCLUSION
Neutral lipsomes DOPC could help carriaging the recombinant plasmid PGCsi-AQP1 to tumor and then play an inhibit role in laryngeal carcinoma tissue by RNAi targeting AQP1 in vivo.
Animals
;
Aquaporin 1
;
therapeutic use
;
Cell Line, Tumor
;
Laryngeal Neoplasms
;
therapy
;
Liposomes
;
Male
;
Mice
;
Mice, Inbred BALB C
;
Neoplasm Transplantation
;
Plasmids
;
RNA Interference
;
RNA, Small Interfering
;
Random Allocation
;
Transfection

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