Plant exosomes fused with engineered mesenchymal stem cell‐derived nanovesicles for synergistic therapy of autoimmune skin disorders
Растительные экзосомы, слитые с нанопузырьками, полученными из инженерно модифицированных мезенхимальных стволовых клеток, для синергетической терапии аутоиммунных заболеваний кожи
2023-10-01
SCID: 54.1/ff8gnaj9
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CCR6–CCL20 chemotaxisautoimmune skin diseasesfusion nanovesiclesmesenchymal stem cell-derived nanovesiclesplant-derived exosome-like nanovesicles
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Abstract (AI)
Existing therapeutics for autoimmune diseases remain problematic due to low efficacy, severe side effects, and difficulties to reach target tissues. Herein, we design multifunctional fusion nanovesicles that can target lesions for the treatment of autoimmune skin diseases. The grapefruit-derived exosome-like nanovesicles (GEVs) with anti-inflammatory and antioxidant effects are first encapsulated with CX5461, an immunosuppressant with anti-proliferative properties to form GEV@CX5461. In order to enhance therapeutic efficiency and safety, GEV@CX5461 are then fused with CCR6+ nanovesicles derived from membranes of engineered gingiva-derived mesenchymal stem cells (GMSCs). The resulting FV@CX5461 not only maintain the bioactivity of GEVs, CX5461, and GMSC membranes but also home to inflamed tissues rich in chemokine CCL20 through the chemotaxis function of CCR6 on FVs. Moreover, FV@CX5461 reduce the secretion of inflammatory factors, calm down Th17 cell activation, and induce Treg cell infiltration. Finally, impressive therapeutic efficiency in both psoriasis and atopic dermatitis disease models is demonstrated using FV@CX5461 to reshape the unbalanced immune microenvironment. A nanotherapeutic drug delivery strategy is developed using fusion nanovesicles derived from plant and animal cells with high clinical potential.
Key Findings
1
CCR6 on the fusion vesicles enables chemotactic homing to inflamed tissues enriched in the CCL20 chemokine.
2
Engineered fusion nanovesicles combine grapefruit-derived exosome-like vesicles, CX5461, and CCR6-positive gingival MSC membranes for autoimmune skin therapy.
3
FV@CX5461 preserves the bioactivities of grapefruit vesicles, CX5461, and gingival MSC membranes while improving targeted delivery.
4
FV@CX5461 suppresses inflammatory factor secretion, reduces Th17 activation, and promotes Treg infiltration to rebalance the immune microenvironment.
5
The fusion nanovesicles show strong therapeutic efficacy in both psoriasis and atopic dermatitis models.
Research Object
CCR6+ fusion nanovesicles (FV@CX5461) composed of grapefruit-derived exosome-like nanovesicles loaded with CX5461 and membranes of engineered gingiva-derived mesenchymal stem cells, evaluated in autoimmune skin disease models
Research Subject
Targeted synergistic immunomodulatory therapy: lesion homing, suppression of inflammatory factors and Th17 activation, induction of Treg infiltration, and therapeutic efficacy in psoriasis and atopic dermatitis
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2023-10-01
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