The lymphatic system has an important defensive role in the human body. The metastasis of most tumors initially spreads through the surrounding lymphatic tissue and eventually forms lymphatic metastatic tumors; the tu...The lymphatic system has an important defensive role in the human body. The metastasis of most tumors initially spreads through the surrounding lymphatic tissue and eventually forms lymphatic metastatic tumors; the tumor cells may even transfer to other organs to form other types of tumors. Clinically, lymphatic metastatic tumors develop rapidly. Given the limitations of surgical resection and the low effectiveness of radiotherapy and chemotherapy, the treatment of lymphatic metastatic tumors remains a great challenge. Lymph node metastasis may lead to the further spread of tumors and may be predictive of the endpoint event. Under these circumstances, novel and effective lymphatic targeted drug delivery systems have been explored to improve the specificity of anticancer drugs to tumor cells in lymph nodes. In this review, we summarize the principles of lymphatic targeted drug delivery and discuss recent advances in the development of lymphatic targeted carriers.展开更多
In order to enhance the targeted delivery of anticancer drugs by polymeric micelles, folic acid(FA), the ligand of folate receptor(FR) over-expressed in the most cancer cells, modified p H-sensitive polymeric micelles...In order to enhance the targeted delivery of anticancer drugs by polymeric micelles, folic acid(FA), the ligand of folate receptor(FR) over-expressed in the most cancer cells, modified p H-sensitive polymeric micelles were designed and fabricated to encapsulate doxorubicin(DOX) by combination of p H-sensitive amphiphilic polymer poly(2-ethyl-2-oxazoline)-poly(D,L-lactide) with FA-conjugated poly(2-ethyl-2-oxazoline)-poly(D,L-lactide). The prepared micelles were characterized to have about 36 nm in diameter with narrow distribution, well-defined spherical shape observed under TEM and p H-responsive drug release behavior. Moreover, the tumor targeting ability of the FA-modified p H-sensitive polymeric micelles was demonstrated by the cellular uptake, in vitro cytotoxicity to FR-positive KB cells and in vivo real time near-infrared fluorescence imaging in KB tumor-bearing nude mice. The efficient drug delivery by the micelles was ascribed to the synergistic effects of FR-mediated targeting and p H-triggered drug release. In conclusion, the designed FR-targeted p H-sensitive polymeric micelles might be of great potential in tumor targeted delivery of water-insoluble anticancer drugs.展开更多
Macroglia is a crucial macrophage only existing in the central nervous system.During the development of glioma,it can be activated as M2 anti-inflammatory type to promote glioma growth.Interferon-γ(IFN-γ)is an impor...Macroglia is a crucial macrophage only existing in the central nervous system.During the development of glioma,it can be activated as M2 anti-inflammatory type to promote glioma growth.Interferon-γ(IFN-γ)is an important immunomodulator in glioma microenvironment,which can also activate macroglia as M1 pro-inflammatory type to enhance anti-tumor immune response and lead to inhibition of glioma growth.Therefore,we utilized IFN-γto make macroglia maintain M1 phenotype,so that prospectively achieving anti-tumor immunity for glioma therapy.We prepared interferon-γ-liposomes(IFN-Lp)to protect IFN-γfrom elimination.IFN-Lp was proved to have strong capability to be phagocytosed and accumulate in macroglia(BV2 cells)to achieve long-term effect.In addition,IFN-Lp could allow BV2 cells to maintain M1 phenotype,showing no impact on its cell viability.These findings will offer new opportunities to achieve enhanced immunotherapy of glioma.展开更多
基金supported by the Specialized Research Fund for the Doctoral Program of Higher Education (No. 20110071130011)the National Science and Technology Major Project (No. 2012ZX09304004)
文摘The lymphatic system has an important defensive role in the human body. The metastasis of most tumors initially spreads through the surrounding lymphatic tissue and eventually forms lymphatic metastatic tumors; the tumor cells may even transfer to other organs to form other types of tumors. Clinically, lymphatic metastatic tumors develop rapidly. Given the limitations of surgical resection and the low effectiveness of radiotherapy and chemotherapy, the treatment of lymphatic metastatic tumors remains a great challenge. Lymph node metastasis may lead to the further spread of tumors and may be predictive of the endpoint event. Under these circumstances, novel and effective lymphatic targeted drug delivery systems have been explored to improve the specificity of anticancer drugs to tumor cells in lymph nodes. In this review, we summarize the principles of lymphatic targeted drug delivery and discuss recent advances in the development of lymphatic targeted carriers.
基金National Natural Science Foundation of China(Grant No.81673366)。
文摘In order to enhance the targeted delivery of anticancer drugs by polymeric micelles, folic acid(FA), the ligand of folate receptor(FR) over-expressed in the most cancer cells, modified p H-sensitive polymeric micelles were designed and fabricated to encapsulate doxorubicin(DOX) by combination of p H-sensitive amphiphilic polymer poly(2-ethyl-2-oxazoline)-poly(D,L-lactide) with FA-conjugated poly(2-ethyl-2-oxazoline)-poly(D,L-lactide). The prepared micelles were characterized to have about 36 nm in diameter with narrow distribution, well-defined spherical shape observed under TEM and p H-responsive drug release behavior. Moreover, the tumor targeting ability of the FA-modified p H-sensitive polymeric micelles was demonstrated by the cellular uptake, in vitro cytotoxicity to FR-positive KB cells and in vivo real time near-infrared fluorescence imaging in KB tumor-bearing nude mice. The efficient drug delivery by the micelles was ascribed to the synergistic effects of FR-mediated targeting and p H-triggered drug release. In conclusion, the designed FR-targeted p H-sensitive polymeric micelles might be of great potential in tumor targeted delivery of water-insoluble anticancer drugs.
基金National Nature Science Foundation of China(Grant No.81673365 and 81473156)
文摘Macroglia is a crucial macrophage only existing in the central nervous system.During the development of glioma,it can be activated as M2 anti-inflammatory type to promote glioma growth.Interferon-γ(IFN-γ)is an important immunomodulator in glioma microenvironment,which can also activate macroglia as M1 pro-inflammatory type to enhance anti-tumor immune response and lead to inhibition of glioma growth.Therefore,we utilized IFN-γto make macroglia maintain M1 phenotype,so that prospectively achieving anti-tumor immunity for glioma therapy.We prepared interferon-γ-liposomes(IFN-Lp)to protect IFN-γfrom elimination.IFN-Lp was proved to have strong capability to be phagocytosed and accumulate in macroglia(BV2 cells)to achieve long-term effect.In addition,IFN-Lp could allow BV2 cells to maintain M1 phenotype,showing no impact on its cell viability.These findings will offer new opportunities to achieve enhanced immunotherapy of glioma.