Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic devices consisting of a NP core coated with membrane derived from natural cells such as erythrocytes, white blood cells, cancer cells, stem cells, platelets or bacterial cells. These biomimetic NPs have gained a lot of attention recently owing to their cell surface mimetic features and tailored nanomaterial characteristics. They have shown strong potential in diagnostic and therapeutic applications including those in drug delivery, immune modulation, vaccination and detoxification. Herein we review the various types of cell membrane coated NPs reported in the literature and the unique strengths of these biomimetic NPs with an emphasis on how ...
Nanoparticles designed for diagnosing and treating different diseases have impacted the scientific r...
Abstract Synthetic nanoparticles with surface bioconjugation are promising platforms for targeted th...
Nanoparticles have demonstrated unique advantages in enhancing immunotherapy potency and have drawn ...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
The advent of nanoparticle-based delivery systems has made a significant impact on clinical patient ...
Taking inspiration from nature, the biomimetic concept has been integrated into drug delivery system...
Nanoparticle drug delivery has revolutionized the way we think of disease treatment over the last de...
Biomimetic functionalization of nanoparticles through camouflaging with cellular membranes has emerg...
Nanotechnology is a cutting edge scientific area that is fundamentally changing the way we design an...
In physiological systems, nanoparticles (NPs) disguised within cell membranes constitute unique biom...
Phototherapy including photothermal therapy (PTT) and photodynamic therapy (PDT) employs phototherap...
Targeted therapy approaches have become the core of modern translational science and as an intriguin...
Poly(lactic-co-glycolic acid) (PLGA) nanoparticles (NPs) are commonly used for drug delivery because...
Cell membrane cloaking technique is bioinspired nanotechnology that takes advantage of naturally der...
Nanoparticles designed for diagnosing and treating different diseases have impacted the scientific r...
Abstract Synthetic nanoparticles with surface bioconjugation are promising platforms for targeted th...
Nanoparticles have demonstrated unique advantages in enhancing immunotherapy potency and have drawn ...
Cell membrane coated nanoparticles (NPs) is a biomimetic strategy developed to engineer therapeutic ...
The advent of nanomedicine has had a tremendous impact on patient outcomes in the clinic. At the nan...
The advent of nanoparticle-based delivery systems has made a significant impact on clinical patient ...
Taking inspiration from nature, the biomimetic concept has been integrated into drug delivery system...
Nanoparticle drug delivery has revolutionized the way we think of disease treatment over the last de...
Biomimetic functionalization of nanoparticles through camouflaging with cellular membranes has emerg...
Nanotechnology is a cutting edge scientific area that is fundamentally changing the way we design an...
In physiological systems, nanoparticles (NPs) disguised within cell membranes constitute unique biom...
Phototherapy including photothermal therapy (PTT) and photodynamic therapy (PDT) employs phototherap...
Targeted therapy approaches have become the core of modern translational science and as an intriguin...
Poly(lactic-co-glycolic acid) (PLGA) nanoparticles (NPs) are commonly used for drug delivery because...
Cell membrane cloaking technique is bioinspired nanotechnology that takes advantage of naturally der...
Nanoparticles designed for diagnosing and treating different diseases have impacted the scientific r...
Abstract Synthetic nanoparticles with surface bioconjugation are promising platforms for targeted th...
Nanoparticles have demonstrated unique advantages in enhancing immunotherapy potency and have drawn ...