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Microfluidic squeezing for intracellular antigen loading in polyclonal B-cells as cellular vaccines.
Szeto, Gregory Lee; Van Egeren, Debra; Worku, Hermoon; Sharei, Armon; Alejandro, Brian; Park, Clara; Frew, Kirubel; Brefo, Mavis; Mao, Shirley; Heimann, Megan; Langer, Robert; Jensen, Klavs; Irvine, Darrell J.
Afiliación
  • Szeto GL; 1] Department of Materials Science &Engineering, MIT [2] Department of Biological Engineering, MIT [3] David. H. Koch Institute for Integrative Cancer Research, MIT [4] The Ragon Institute of Harvard, MIT, and MGH.
  • Van Egeren D; Department of Biological Engineering, MIT.
  • Worku H; Department of Biology, MIT.
  • Sharei A; 1] David. H. Koch Institute for Integrative Cancer Research, MIT [2] Department of Chemical Engineering, MIT [3] The Ragon Institute of Harvard, MIT, and MGH.
  • Alejandro B; Department of Chemical Engineering, MIT.
  • Park C; Department of Biological Engineering, MIT.
  • Frew K; The Ragon Institute of Harvard, MIT, and MGH.
  • Brefo M; Department of Materials Science &Engineering, MIT.
  • Mao S; Department of Chemical Engineering, MIT.
  • Heimann M; David. H. Koch Institute for Integrative Cancer Research, MIT.
  • Langer R; 1] David. H. Koch Institute for Integrative Cancer Research, MIT [2] Department of Chemical Engineering, MIT.
  • Jensen K; Department of Chemical Engineering, MIT.
  • Irvine DJ; 1] Department of Materials Science &Engineering, MIT [2] Department of Biological Engineering, MIT [3] David. H. Koch Institute for Integrative Cancer Research, MIT [4] The Ragon Institute of Harvard, MIT, and MGH [5] Howard Hughes Medical Institute.
Sci Rep ; 5: 10276, 2015 May 22.
Article en En | MEDLINE | ID: mdl-25999171
ABSTRACT
B-cells are promising candidate autologous antigen-presenting cells (APCs) to prime antigen-specific T-cells both in vitro and in vivo. However to date, a significant barrier to utilizing B-cells as APCs is their low capacity for non-specific antigen uptake compared to "professional" APCs such as dendritic cells. Here we utilize a microfluidic device that employs many parallel channels to pass single cells through narrow constrictions in high throughput. This microscale "cell squeezing" process creates transient pores in the plasma membrane, enabling intracellular delivery of whole proteins from the surrounding medium into B-cells via mechano-poration. We demonstrate that both resting and activated B-cells process and present antigens delivered via mechano-poration exclusively to antigen-specific CD8(+)T-cells, and not CD4(+)T-cells. Squeezed B-cells primed and expanded large numbers of effector CD8(+)T-cells in vitro that produced effector cytokines critical to cytolytic function, including granzyme B and interferon-γ. Finally, antigen-loaded B-cells were also able to prime antigen-specific CD8(+)T-cells in vivo when adoptively transferred into mice. Altogether, these data demonstrate crucial proof-of-concept for mechano-poration as an enabling technology for B-cell antigen loading, priming of antigen-specific CD8(+)T-cells, and decoupling of antigen uptake from B-cell activation.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Vacunas / Linfocitos B / Antígenos Límite: Animals Idioma: En Revista: Sci Rep Año: 2015 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Vacunas / Linfocitos B / Antígenos Límite: Animals Idioma: En Revista: Sci Rep Año: 2015 Tipo del documento: Article
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