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The Multirole of Liposomes in Therapy and Prevention of infectious Diseases

期刊

FRONTIERS IN IMMUNOLOGY
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2018.00155

关键词

liposome; infectious disease; therapy; immunotherapy; drug; vaccine; adjuvant; immunomodulation

资金

  1. Horizon Programme of European Commission, grant EMI-TB
  2. Eliciting Mucosal Immunity against Tuberculosis [643558]
  3. TBVACA
  4. Advancing novel and promising TB vaccine candidates from discovery to preclinical and early clinical development [643381]
  5. Italian Foundation for Cystic Fibrosis [14/2017]
  6. Italian Foundation for multiple sclerosis [2016/R/22]
  7. Ministero della Salute Italiana, Ricerca Finalizzata grant: Nanotechnology for the multiplex diagnosis of infectious diseases [PE-2011-02346849]

向作者/读者索取更多资源

Liposomes are closed bilayer structures spontaneously formed by hydrated phospholipids that are widely used as efficient delivery systems for drugs or antigens, due to their capability to encapsulate bioactive hydrophilic, amphipathic, and lipophilic molecules into inner water phase or within lipid leaflets. The efficacy of liposomes as drug or antigen carriers has been improved in the last years to ameliorate pharmacokinetics and capacity to release their cargo in selected target organs or cells. Moreover, different formulations and variations in liposome composition have been often proposed to include immunostimulatory molecules, ligands for specific receptors, or stimuli responsive compounds. Intriguingly, independent research has unveiled the capacity of several phospholipids to play critical roles as intracellular messengers in modulating both innate and adaptive immune responses through various mechanisms, including (i) activation of different antimicrobial enzymatic pathways, (ii) driving the fusion-fission events between endosomes with direct consequences to phagosome maturation and/or to antigen presentation pathway, and (iii) modulation of the inflammatory response. These features can be exploited by including selected bioactive phospholipids in the bilayer scaffold of liposomes. This would represent an important step forward since drug or antigen carrying liposomes could be engineered to simultaneously activate different signal transduction pathways and target specific cells or tissues to induce antigen-specific T and/or B cell response. This lipid-based host-directed strategy can provide a focused antimicrobial innate and adaptive immune response against specific pathogens and offer a novel prophylactic or therapeutic option against chronic, recurrent, or drug-resistant infections.

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