欢迎登录材料期刊网

材料期刊网

高级检索

新型疫苗的飞速发展对佐剂或递送体系的研究提出了巨大的挑战.针对传统佐剂在细胞免疫应答方面不足的问题,选取生物相容性好的高分子材料为主要基质,设计并制备出一系列尺寸均一且具有不同颗粒性质(粒径、电荷或表面基团)的纳微米颗粒佐剂.研究表明,新型颗粒佐剂表现出良好的增加抗原内化、促进抗原提呈和T淋巴细胞增殖等优势,有望满足重要传染性疾病甚至恶性肿瘤的防治需求.此外,针对目前仍无有效黏膜免疫佐剂的难题,以具有生物粘附性的壳聚糖为基质,开发了温度敏感性凝胶作为疫苗佐剂.该凝胶佐剂不仅可以使鼻黏膜制剂有效铺展和停留,还可以借助材料本身特性增加抗原渗透性并活化T细胞,从而诱导高效的免疫应答,拓展了传统以注射为主的免疫递送方式.上述基于纳微米颗粒和凝胶佐剂的疫苗传递体系的系统性研究,为新型疫苗传递系统的开发提供了有意义的探索.

参考文献

[1] Coffman RL;Sher A;Seder RA .Vaccine adjuvants: putting innate immunity to work.[J].Immunity,2010(4):492-503.
[2] Petrovsky N;Aguilar JC .Vaccine adjuvants: Current state and future trends.[J].Immunology and Cell Biology,2004(5):488-496.
[3] Singh M;Chakrapani A;O'Hagan D .Nanoparticles and microparticles as vaccine-delivery systems.[J].Expert review of vaccines,2007(5):797-808.
[4] Oyewumi MO;Kumar A;Cui Z .Nano-microparticles as immune adjuvants: correlating particle sizes and the resultant immune responses.[J].Expert review of vaccines,2010(9):1095-1107.
[5] 微球材料尺寸和结构控制的过程工程[J].化工学报,2014(07):2574-2587.
[6] Ma G .Microencapsulation of Protein Drugs for Drug Delivery:Strategy,Preparation,and Applications[J].Journal of Controlled Release,2014,193(9):324-340.
[7] Yue H;Wei W;Yue Z;Lv P;Wang L;Ma G;Su Z .Particle size affects the cellular response in macrophages.[J].European journal of pharmaceutical sciences,2010(5):650-657.
[8] Samir Mitragotri;Joerg Lahann .Physical approaches to biomaterial design[J].Nature materials,2009(1):15-23.
[9] Zhan-Guo Yue;Wei Wei;Pi-Ping Lv .Surface Charge Affects Cellular Uptake and Intracellular Trafficking of Chitosan-Based Nanoparticles[J].Biomacromolecules,2011(7):2440-2446.
[10] Yuan Liu;Ying Yin;Lianyan Wang .Surface hydrophobicity of microparticles modulates adjuvanticity[J].Journal of Materials Chemistry, B. materials for biology and medicine,2013(32):3888-3896.
[11] Wang YQ;Wu J;Fan QZ et al.Novel Vaccine Delivery System Induces Robust Humoral and Cellular Immune Responses Based on Multiple Mechanisms[J].Advanced Healthcare Materials,2014,3(5):670-681.
[12] Yuan Liu;Ying Yin;Lianyan Wang .Engineering Biomaterial-Associated Complement Activation to Improve Vaccine Efficacy[J].Biomacromolecules,2013(9):3321-3328.
[13] Yue,H.;Wei,W.;Fan,B.;Yue,Z.;Wang,L.;Ma,G.;Su,Z. .The orchestration of cellular and humoral responses is facilitated by divergent intracellular antigen trafficking in nanoparticle-based therapeutic vaccine[J].Pharmacological research: The official journal of The Italian Pharmacological Society,2012(2):189-197.
[14] Chen X;Liu Y;Wang L et al.Enhanced Humoral and Cell-Mediated Immune Responses Generated by Cationic Polymer-Coated PLA Microspheres with Adsorbed HBsAg[J].Molecular Pharmaceutics,2014,11(6):1772-1784.
[15] Liu,S.-Y.;Wei,W.;Yue,H.;Ni,D.-Z.;Yue,Z.-G.;Wang,S.;Fu,Q.;Wang,Y.-Q.;Ma,G.-H.;Su,Z.-G. .Nanoparticles-based multi-adjuvant whole cell tumor vaccine for cancer immunotherapy[J].Biomaterials,2013(33):8291-8300.
[16] Yue,H.;Wei,W.;Yue,Z.;Wang,B.;Luo,N.;Gao,Y.;Ma,D.;Ma,G.;Su,Z. .The role of the lateral dimension of graphene oxide in the regulation of cellular responses[J].Biomaterials,2012(16):4013-4021.
[17] Zhang,W.;Wang,L.;Liu,Y.;Chen,X.;Liu,Q.;Jia,J.;Yang,T.;Qiu,S.;Ma,G. .Immune responses to vaccines involving a combined antigen-nanoparticle mixture and nanoparticle-encapsulated antigen formulation[J].Biomaterials,2014(23):6086-6097.
[18] Zhang,W.;Wang,L.;Liu,Y.;Chen,X.;Li,J.;Yang,T.;An,W.;Ma,X.;Pan,R.;Ma,G. .Comparison of PLA microparticles and alum as adjuvants for H5N1 influenza split vaccine: Adjuvanticity evaluation and preliminary action mode analysis[J].Pharmaceutical research,2014(4):1015-1031.
[19] Wu J;Wei W;Wang LY;Su ZG;Ma GH .A thermosensitive hydrogel based on quaternized chitosan and poly(ethylene glycol) for nasal drug delivery system.[J].Biomaterials,2007(13):2220-2232.
[20] Wu,Y.;Wu,S.;Hou,L.;Wei,W.;Zhou,M.;Su,Z.;Wu,J.;Chen,W.;Ma,G. .Novel thermal-sensitive hydrogel enhances both humoral and cell-mediated immune responses by intranasal vaccine delivery[J].European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V,2012(3):486-497.
[21] Wu,Y.;Wei,W.;Zhou,M.;Wang,Y.;Wu,J.;Ma,G.;Su,Z. .Thermal-sensitive hydrogel as adjuvant-free vaccine delivery system for H5N1 intranasal immunization[J].Biomaterials,2012(7):2351-2360.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%