Enhanced anticancer efficacy of primed natural killer cells via coacervate-mediated exogenous interleukin-15 delivery

  • Jeong, Sehwan
  • Kim, Young Guk
  • Kim, Sungjun
  • Kim, Kyobum
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초록

Effective exogenous delivery of interleukin (IL)-15 to natural killer (NK) cells with subsequent anticancer efficacy could be a promising immune cell-based cancer immunotherapy. For the protection of encapsulated cargo IL-15 while maintaining its bioactivity under physiological conditions, we utilized a coacervate (Coa) consisting of a cationic methoxy polyethylene glycol-poly(ethylene arginyl aspartate diglyceride) (mPEG-PEAD) polymer, anionic counterpart heparin, and cargo IL-15. mPEGylation into the backbone cation effectively preserved the colloidal stability of Coa in harsh environments and enhanced the protection of cargo IL-15 than normal Coa without mPEGylation. Proliferation and anticancer efficacy of primed NK cells through co-culture with multiple cancer cell lines were enhanced in the mPEG-Coa group due to the maintained bioactivity of cargo IL-15 during the ex vivo expansion of NK cells. These facilitated functions of NK cells were also supported by the increased expression of mRNAs related to anticancer effects of NK cells, including cytotoxic granules, death ligands, anti-apoptotic proteins, and activation receptors. In summary, our Coa-mediated exogenous IL-15 delivery could be an effective ex vivo priming technique for NK cells with sustained immune activation that can effectively facilitate its usage for cancer immunotherapy.

키워드

Folic AcidGamma InterferonGlyceraldehyde 3 Phosphate DehydrogenaseGranzyme BHeparinHeparin LyaseInositolPerforinProteinase InhibitorSybr GreenTrypan BlueTrypsinAspartic AcidCoenzyme AMacrogolApoptosis Regulatory ProteinsAspartic AcidCoenzyme ADiglyceridesEthylenesHeparinInterleukin-15Monomethoxypolyethylene GlycolPolyethylene GlycolsCell CultureCellsChemical ActivationDiseasesEthyleneSolsCancer ImmunotherapyCationicsCell-basedCoacervateImmune CellsInterleukin 15Methoxypolyethylene GlycolNatural Killer CellsPhysiological ConditionPoly(ethylenes)BioactivityCationFolic AcidGamma InterferonGlyceraldehyde 3 Phosphate DehydrogenaseGranzyme BHeparinHeparin LyaseInositolInterleukin 15Messenger RnaMethoxy Polyethylene GlycolNatural Killer Cell Receptor Nkg2aNatural Killer Cell Receptor Nkg2dPerforinPoly(ethylene Arginyl Aspartate Diglyceride)PolycationProteinase InhibitorSybr GreenTrypan BlueTrypsinTumor Necrosis Factor Related Apoptosis Inducing LigandUnclassified DrugApoptosis Regulatory ProteinAspartic AcidCoenzyme ADiacylglycerolEthylene DerivativeMacrogolMonomethoxypolyethylene GlycolAntineoplastic ActivityArticleBiological ActivityCancer Cell LineCell ExpansionCell MaturationCell ProliferationCell SurvivalCoacervationCocultureColloidConjugationControlled StudyEx Vivo StudyGene ExpressionJak-stat SignalingMia Paca-2 Cell LineNatural Killer CellUpregulationMetabolismApoptosis Regulatory ProteinsAspartic AcidCoenzyme ADiglyceridesEthylenesHeparinInterleukin-15Killer Cells, NaturalPolyethylene GlycolsNK CELLSDUAL DELIVERYGROWTH-FACTORSTEM-CELLSIL-15EXPRESSIONRECEPTORSAPOPTOSISIMMUNOTHERAPYPROLIFERATION
제목
Enhanced anticancer efficacy of primed natural killer cells via coacervate-mediated exogenous interleukin-15 delivery
저자
Jeong, SehwanKim, Young GukKim, SungjunKim, Kyobum
DOI
10.1039/d2bm00876a
발행일
2022-10
유형
Article
저널명
Biomaterials Science
10
20
페이지
5968 ~ 5979