Publication | Closed Access
Cell Membrane Capsules for Encapsulation of Chemotherapeutic and Cancer Cell Targeting <i>in Vivo</i>
89
Citations
34
References
2015
Year
NanotherapeuticsEngineeringBiomedical EngineeringTumor BiologyNanomedicineMedicinal ChemistryAnti-cancer AgentSystemic AdministrationRadiation OncologyCell-based Drug DeliveryDrug EncapsulationTumor GrowthTumor TargetingPharmacologyCell BiologyTumor MicroenvironmentDrug TargetingPolymer-drug ConjugateDrug Delivery SystemsNano-drug DeliveryCell Membrane CapsulesMedicine
Systemic administration of chemotherapeutic agents can cause indiscriminate drug distribution and severe toxicity. Until now, encapsulation and targeting of drugs have typically relied on synthetic vehicles, which cannot minimize the clearance by the renal system and may also increase the risk of chemical side effects. Cell membrane capsules (CMCs) provide a generic and far more natural approach to the challenges of drug encapsulation and delivery in vivo. Here aptamer AS1411, which can recognize and bind overexpressed nucleolin on a cancer cell membrane, was chemically conjugated onto CMCs. As a result, AS1411 modified CMCs showed enhanced ingestion in certain cancer cells in vitro and accumulation in mouse cancer xenografts in vivo. Chemotherapeutics and contrast agents with therapeutically significant concentrations can be packaged into CMCs by reversible permeating their plasma membranes. The systematic administration of cancer targeting CMCs loaded with doxorubicin hydrochloride can significantly inhibit tumor growth in mouse xenografts, with significantly reduced toxicity compared to free drug. These findings suggest that cancer targeting CMCs may have considerable benefits in drug delivery and cancer treatment.
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