Title of article :
Cell Membrane-Coated Biomaterials for Bone Cancer-Targeted Diagnosis and Therapy: A Critical Update on Osteosarcoma Applications
Author/Authors :
Lopes ، Joana REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra , Lopes ، Daniela REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra, University of Coimbra , Macário-Soares ، Ana REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra , Ferreira-Faria ، Inês REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra , Peixoto ، Diana REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra , Motallebi ، Mahzad Immunology Board for Transplantation And Cell-based Therapeutics (Immuno_TACT) - Universal Scientific Education and Research Network (USERN) , Mohammad ، Imran Shair Division of Chemical Biology and Medicinal Chemistry - Eshelman School of Pharmacy - University of North Carolina at Chapel Hill , Giram ، Prabhanjan S. Department of Pharmaceutical Sciences - University at Buffalo , Pires ، Patrícia C. REQUIMTE/LAQV, Group of Pharmaceutical Technology, Department of Pharmaceutical Technology - Faculty of Pharmacy - University of Coimbra , Raza ، Faisal School of Pharmacy - Shanghai Jiao Tong University
Abstract :
Cancer is a malignant disease of increasing concern on account of its high heterogeneity, high mortality and morbidity rates, as well as absence of targeted and effective therapeutic regimes. The recent introduction of biomimetic and nature-inspired principles in the development of nanosystems has significantly impacted cancer therapies and diagnosis. Biomembrane-surface engineered nanosystems are bioinspired nanoconstructions equipped with cell-mimicking features to improve in vivo interactions with surrounding biological environments and cells. These next-generation nanosized delivery systems can enhance therapeutic efficacy and safety of conventional cancer therapies by providing highly specific, targeted, and safer nanomedicines. Herein, we have discussed the unique features of cell membrane-coated biomimetic nanodevices (including superior biocompatibility, immune evasion and tissue-homing features) that allow for promising osteosarcoma-targeted diagnosis, therapy, and theranostics. We also summarized the recent advances on cell membrane- and hybrid cell membrane-coated nanosystems for both primary bone cancer and metastatic scenarios, especially prostate cancer-derived bone metastases. Future perspectives and challenges towards successful clinical translation are also highlighted.
Keywords :
Biomimetic coating , bone cancer , cell membrane , coated , nanosystem , hybrid cell membrane , coated , osteosarcoma , targeted medicine
Journal title :
Materials Chemistry Horizons
Journal title :
Materials Chemistry Horizons