Red blood cells (RBC) are actually exploited as innovative drug delivery systems with unconventional and convenient properties. Because of a long in vivo survival and a non-random removal from circulation, RBC can be loaded with drugs and/or contrasting agents without affecting these properties and maintaining the original immune competence. However, native or drug-loaded RBC, can be modified decorating the membrane with peptides, antibodies or small chemical entities so favoring the targeting of the processed RBC to specific cells or organs. Convenient modifications have been exploited to induce immune tolerance or immunogenicity, to deliver antibodies capable of targeting other cells, and to deliver a number of constructs that can recogni...
Herein we describe the development of the Red Blood Cell coated nanoparticle, RBC-NP. Purified natur...
Introduction: Transport systems based on autologous red blood cells for targeted drug delivery can b...
Duringtheirpassagethroughthecirculation,redbloodcells(RBCs)encounterseverephysiologicalconditionscon...
Red blood cells (RBC) are actually exploited as innovative drug delivery systems with unconventional...
Engineered red blood cells (RBCs) appear to be a promising method for therapeutic drug and protein d...
Red blood cells (RBCs) have been extensively studied as a potential biotherapeutic delivery system f...
Background: RBC membrane derived nanoparticles (NPs) represent an emerging platform with prolonged c...
Recently optimized technologies that permit the reversible opening of nanopores across the red bloo...
Red blood cells (RBCs) constitute a unique drug delivery system as a biologic or hybrid carrier capa...
Therapeutic enzymes are currently used in the treatment of several diseases. In most cases, the bene...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018Cat...
Erythrocytes, also known as Red Blood Cells (RBC), are typically used in transfusion medicine to rep...
We developed modified RBCs to serve as carriers for systemic delivery of a wide array of payloads. T...
Therapeutic enzymes are currently used in the treatment of several diseases. In most cases, the bene...
Application of erythrocytes, the most abundant cells of the human body with desirable physiologic an...
Herein we describe the development of the Red Blood Cell coated nanoparticle, RBC-NP. Purified natur...
Introduction: Transport systems based on autologous red blood cells for targeted drug delivery can b...
Duringtheirpassagethroughthecirculation,redbloodcells(RBCs)encounterseverephysiologicalconditionscon...
Red blood cells (RBC) are actually exploited as innovative drug delivery systems with unconventional...
Engineered red blood cells (RBCs) appear to be a promising method for therapeutic drug and protein d...
Red blood cells (RBCs) have been extensively studied as a potential biotherapeutic delivery system f...
Background: RBC membrane derived nanoparticles (NPs) represent an emerging platform with prolonged c...
Recently optimized technologies that permit the reversible opening of nanopores across the red bloo...
Red blood cells (RBCs) constitute a unique drug delivery system as a biologic or hybrid carrier capa...
Therapeutic enzymes are currently used in the treatment of several diseases. In most cases, the bene...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018Cat...
Erythrocytes, also known as Red Blood Cells (RBC), are typically used in transfusion medicine to rep...
We developed modified RBCs to serve as carriers for systemic delivery of a wide array of payloads. T...
Therapeutic enzymes are currently used in the treatment of several diseases. In most cases, the bene...
Application of erythrocytes, the most abundant cells of the human body with desirable physiologic an...
Herein we describe the development of the Red Blood Cell coated nanoparticle, RBC-NP. Purified natur...
Introduction: Transport systems based on autologous red blood cells for targeted drug delivery can b...
Duringtheirpassagethroughthecirculation,redbloodcells(RBCs)encounterseverephysiologicalconditionscon...