306
Views
31
CrossRef citations to date
0
Altmetric
Reviews

Recent Advances in Liposome‐Based Nanoparticles for Antigen Delivery

&
Pages 329-344 | Received 08 Dec 2006, Accepted 23 Feb 2007, Published online: 02 Aug 2007

References

  • Allison , A. G. and Gregoriadis , G. 1974 . Liposomes as immunological adjuvants . Nature , 252 : 252
  • Uemura , A. , Watarai , S. , Iwasaki , T. and Kodama , H. 2005 . Induction of immune responses against glycosphingolipid antigens: comparison of antibody responses in mice immunized with antigen associated with liposomes prepared from various phospholipids . J. Vet. Med. Sci. , 67 : 1197 – 1201 .
  • Gao , X. and Huang , L. 1996 . Potentiation of cationic liposome‐mediated gene delivery by polycations . Biochemistry , 35 : 1027 – 1036 .
  • Li , S. , Rizzo , M. A. , Bhattacharya , S. and Huang , L. 1998 . Characterization of cationic lipid‐protamine‐DNA (LPD) complexes for intravenous gene delivery . Gene Ther. , 5 : 930 – 937 .
  • Dileo , J. , Banerjee , R. , Whitmore , M. , Nayak , J. V. , Falo , L. D. Jr. and Huang , L. 2003 . Lipid‐protamine‐DNA‐mediated antigen delivery to antigen‐presenting cells results in enhanced anti‐tumor immune responses . Mol. Ther. , 7 : 640 – 648 .
  • Li , B. , Li , S. , Tan , Y. , Stolz , D. B. , Watkins , S. C. , Block , L. H. and Huang , L. 2000 . Lyophilization of cationic lipid‐protamine‐DNA (LPD) complexes . J. Pharm. Sci. , 89 : 355 – 364 .
  • Whitmore , M. , Li , S. and Huang , L. 1999 . LPD lipopolyplex initiates a potent cytokine response and inhibits tumor growth . Gene Ther. , 6 : 1867 – 1875 .
  • Whitmore , M. M. , Li , S. , Falo , L. Jr. and Huang , L. 2001 . Systemic administration of LPD prepared with CpG oligonucleotides inhibits the growth of established pulmonary metastases by stimulating innate and acquired antitumor immune responses . Cancer Immunol. Immunother. , 50 : 503 – 514 .
  • Cui , Z. and Huang , L. 2005 . Liposome‐polycation‐DNA (LPD) particle as a carrier and adjuvant for protein‐based vaccines: therapeutic effect against cervical cancer . Cancer Immunol. Immunother. , 54 : 1180 – 1190 .
  • Medzhitov , R. , Preston‐Hurlburt , P. and Janeway , C. A. Jr. 1997 . A human homologue of the Drosophila Toll protein signals activation of adaptive immunity . Nature. , 388 : 394 – 397 .
  • Rock , F. L. , Hardiman , G. , Timans , J. C. , Kastelein , R. A. and Bazan , J. F. 1998 . A family of human receptors structurally related to Drosophila Toll . Proc. Natl. Acad. Sci. U.S.A. , 95 : 588 – 593 .
  • Akira , S. , Uematsu , S. and Takeuchi , O. 2006 . Pathogen recognition and innate immunity . Cell. , 124 : 783 – 801 .
  • Jiang , Z. H. , Bach , M. V. , Budzynski , W. A. , Krantz , M. J. , Koganty , R. R. and Longenecker , B. M. 2002 . Lipid A structures containing novel lipid moieties: synthesis and adjuvant properties . Bioorg. Med. Chem. Lett. , 12 : 2193 – 2196 .
  • O'Neill , L. A. 2006 . How Toll‐like receptors signal: what we know and what we don't know . Curr. Opin. Immunol. , 18 : 3 – 9 .
  • Hoebe , K. , Janssen , E. M. , Kim , S. O. , Alexopoulou , L. , Flavell , R. A. , Han , J. and Beutler , B. 2003 . Upregulation of costimulatory molecules induced by lipopolysaccharide and double‐stranded RNA occurs by Trif‐dependent and Trif‐independent pathways . Nat. Immunol. , 4 : 1223 – 1229 .
  • Yamamoto , M. , Sato , S. , Hemmi , H. , Hoshino , K. , Kaisho , T. , Sanjo , H. , Takeuchi , O. , Sugiyama , M. , Okabe , M. , Takeda , K. and Akira , S. 2003 . Role of adaptor TRIF in the MyD88‐independent toll‐like receptor signaling pathway . Science , 301 : 640 – 643 .
  • Krieg , A. M. 2002 . CpG motifs in bacterial DNA and their immune effects . Annu. Rev. Immunol. , 20 : 709 – 760 .
  • Li , S. , Wu , S. P. , Whitmore , M. , Loeffert , E. J. , Wang , L. , Watkins , S. C. , Pitt , B. R. and Huang , L. 1999 . Effect of immune response on gene transfer to the lung via systemic administration of cationic lipidic vectors . Am. J. Physiol. , 276 : L796 – 804 .
  • Hornung , V. , Guenthner‐Biller , M. , Bourquin , C. , Ablasser , A. , Schlee , M. , Uematsu , S. , Noronha , A. , Manoharan , M. , Akira , S. , de Fougerolles , A. , Endres , S. and Hartmann , G. 2005 . Sequence‐specific potent induction of IFN‐alpha by short interfering RNA in plasmacytoid dendritic cells through TLR7 . Nat. Med. , 11 : 263 – 270 .
  • Cui , Z. , Han , S. J. , Vangasseri , D. P. and Huang , L. 2005 . Immunostimulation mechanism of LPD nanoparticle as a vaccine carrier . Mol. Pharm. , 2 : 22 – 28 .
  • Vangasseri , D. P. , Cui , Z. , Chen , W. , Hokey , D. A. , Falo , L. D. and Huang , L. 2006 . Immunostimulation of dendritic cells by cationic liposomes . Mol. Membrane Biol. , 23 : 1 – 11 .
  • Harnett , W. , Deehan , M. R. , Houston , K. M. and Harnett , M. M. 1999 . Immunomodulatory properties of a phosphorylcholine‐containing secreted filarial glycoprotein . Parasite Immunol. , 21 : 601 – 608 .
  • Allaoui‐Attarki , K. , Pecquet , S. , Fattal , E. , Trolle , S. , Chachaty , E. , Couvreur , P. and Andremont , A. 1997 . Protective immunity against Salmonella typhimurium elicited in mice by oral vaccination with phosphorylcholine encapsulated in poly(DL‐lactide‐co‐glycolide) microspheres . Infect. Immun. , 65 : 853 – 857 .
  • Bakker‐Woudenberg , I. A. 2002 . Long‐circulating sterically stabilized liposomes as carriers of agents for treatment of infection or for imaging infectious foci . Int. J. Antimicrob. Agents , 19 : 299 – 311 .
  • Yan , X. , Scherphof , G. L. and Kamps , J. A. 2005 . Liposome opsonization . J. Liposome Res. , 15 : 109 – 139 .
  • Oussoren , C. and Storm , G. 2001 . Liposomes to target the lymphatics by subcutaneous administration . Adv. Drug Deliv. Rev. , 50 : 143 – 156 .
  • Abra , R. M. and Hunt , C. A. 1981 . Liposome disposition in vivo. III. Dose and vesicle‐size effects . Biochim. Biophys. Acta. , 666 : 493 – 503 .
  • Litzinger , D. C. , Buiting , A. M. , van Rooijen , N. and Huang , L. 1994 . Effect of liposome size on the circulation time and intraorgan distribution of amphipathic poly(ethylene glycol)‐containing liposomes . Biochim. Biophys. Acta. , 1190 : 99 – 107 .
  • Moghimi , S. M. 2006 . The effect of methoxy‐PEG chain length and molecular architecture on lymph node targeting of immuno‐PEG liposomes . Biomaterials , 27 : 136 – 144 .
  • van Broekhoven , C. L. , Parish , C. R. , Demangel , C. , Britton , W. J. and Altin , J. G. 2004 . Targeting dendritic cells with antigen‐containing liposomes: a highly effective procedure for induction of antitumor immunity and for tumor immunotherapy . Cancer Res. , 64 : 4357 – 4365 .
  • Mauk , M. R. , Gamble , R. C. and Baldeschwieler , J. D. 1980 . Targeting of lipid vesicles: specificity of carbohydrate receptor analogues for leukocytes in mice . Proc. Natl. Acad. Sci. U.S.A. , 77 : 4430 – 4434 .
  • Cui , Z. , Han , S. J. and Huang , L. 2004 . Coating of mannan on LPD particles containing HPV E7 peptide significantly enhances immunity against HPV‐positive tumor . Pharm. Res. , 21 : 1018 – 1025 .
  • Mandal , M. , Kawamura , K. S. , Wherry , E. J. , Ahmed , R. and Lee , K. D. 2004 . Cytosolic delivery of viral nucleoprotein by listeriolysin O‐liposome induces enhanced specific cytotoxic T lymphocyte response and protective immunity . Mol. Pharm. , 1 : 2 – 8 .
  • Lee , K. D. , Oh , Y. K. , Portnoy , D. A. and Swanson , J. A. 1996 . Delivery of macromolecules into cytosol using liposomes containing hemolysin from Listeria monocytogenes . J. Biol. Chem. , 271 : 7249 – 7252 .
  • Stier , E. M. , Mandal , M. and Lee , K. D. 2005 . Differential cytosolic delivery and presentation of antigen by listeriolysin O‐liposomes to macrophages and dendritic cells . Mol. Pharm. , 2 : 74 – 82 .
  • Mastrobattista , E. , Crommelin , D. J. , Wilschut , J. and Storm , G. 2002 . Targeted liposomes for delivery of protein‐based drugs into the cytoplasm of tumor cells . J. Liposome Res. , 12 : 57 – 65 .
  • Mastrobattista , E. , Koning , G. A. , van Bloois , L. , Filipe , A. C. , Jiskoot , W. and Storm , G. 2002 . Functional characterization of an endosome‐disruptive peptide and its application in cytosolic delivery of immunoliposome‐entrapped proteins . J. Biol. Chem. , 277 : 27135 – 27143 .
  • Schutze‐Redelmeier , M. P. , Gournier , H. , Garcia‐Pons , F. , Moussa , M. , Joliot , A. H. , Volovitch , M. , Prochiantz , A. and Lemonnier , F. A. 1996 . Introduction of exogenous antigens into the MHC class I processing and presentation pathway by Drosophila antennapedia homeodomain primes cytotoxic T cells in vivo . J. Immunol. , 157 : 650 – 655 .
  • Chikh , G. G. , Kong , S. , Bally , M. B. , Meunier , J. C. and Schutze‐Redelmeier , M. P. 2001 . Efficient delivery of Antennapedia homeodomain fused to CTL epitope with liposomes into dendritic cells results in the activation of CD8+ T cells . J. Immunol. , 167 : 6462 – 6470 .
  • Owais , M. and Gupta , C. M. 2000 . Liposome‐mediated cytosolic delivery of macromolecules and its possible use in vaccine development . Eur. J. Biochem. , 267 : 3946 – 3956 .
  • Kloetzel , P. M. 2001 . Antigen processing by the proteasome . Nat. Rev. Mol. Cell Biol. , 2 : 179 – 187 .
  • Weissman , A. M. 2001 . Themes and variations on ubiquitylation . Nat. Rev. Mol. Cell Biol. , 2 : 169 – 178 .
  • Chung , C. H. and Baek , S. H. 1999 . Deubiquitinating enzymes: their diversity and emerging roles . Biochem. Biophys. Res. Commun. , 266 : 633 – 640 .
  • Rodriguez , F. , An , L. L. , Harkins , S. , Zhang , J. , Yokoyama , M. , Widera , G. , Fuller , J. T. , Kincaid , C. , Campbell , I. L. and Whitton , J. L. 1998 . DNA immunization with minigenes: low frequency of memory cytotoxic T lymphocytes and inefficient antiviral protection are rectified by ubiquitination . J. Virol. , 72 : 5174 – 5181 .
  • Sakamoto , K. M. , Kim , K. B. , Kumagai , A. , Mercurio , F. , Crews , C. M. and Deshaies , R. J. 2001 . Protacs: chimeric molecules that target proteins to the Skp1‐Cullin‐F box complex for ubiquitination and degradation . Proc. Natl. Acad. Sci. U.S.A. , 98 : 8554 – 8559 .
  • Whitehouse , A. S. , Khal , J. and Tisdale , M. J. 2003 . Induction of protein catabolism in myotubes by 15(S)‐hydroxyeicosatetraenoic acid through increased expression of the ubiquitin‐proteasome pathway . Br. J. Cancer , 89 : 737 – 745 .
  • Gomes‐Marcondes , M. C. and Tisdale , M. J. 2002 . Induction of protein catabolism and the ubiquitin‐proteasome pathway by mild oxidative stress . Cancer Lett. , 180 : 69 – 74 .
  • Castilleja , A. , Ward , N. E. , O'Brian , C. A. , Swearingen , B. , Swan , E. , Gillogly , M. A. , Murray , J. L. , Kudelka , A. P. , Gershenson , D. M. and Ioannides , C. G. 2001 . Accelerated HER‐2 degradation enhances ovarian tumor recognition by CTL. Implications for tumor immunogenicity . Mol. Cell. Biochem. , 217 : 21 – 33 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.