Mimicking Red Blood Cells For Drug Delivery

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Mimicking red blood cells to improve drug delivery ...

    https://blogs.scientificamerican.com/observations/mimicking-red-blood-cells-to-improve-drug-delivery/
    Dec 14, 2009 · Mimicking red blood cells to improve drug delivery Biomedical breakthroughs rarely outdo nature itself—despite our ever-increasing knowledge of …

Mimicking red blood cells for drug delivery.

    https://www.ncbi.nlm.nih.gov/pubmed/21695832
    Mimicking red blood cells for drug delivery. Kim JS(1), Kang M, Bagyinszky E, Thanavel R, An SA. Author information: (1)Nanoentek, Inc., 235-2 Ace Highend Tower, Seoul, Republic of Korea. [email protected]: Kim Js, Kang M, Bagyinszky E, Thanavel R, An Sa

Red blood cell-mimicking synthetic biomaterial particles

    https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2799852/
    Dec 22, 2009 · Biomaterials provide a technological platform for launching biomedical applications in drug delivery, medical imaging, and regenerative medicine (1, 2). Several biomaterials including polymeric nanoparticles and liposomes have been developed for applications in drug delivery, some of which are already available in the market (3 –5).Author: Nishit Doshi, Alisar S. Zahr, Srijanani Bhaskar, Joerg Lahann, Samir Mitragotri

Drug Delivery via Red Blood Cells Medical Automation ...

    https://www.medicalautomation.org/2020/04/drug-delivery-via-red-blood-cells/
    Functionalized red blood cells for drug delivery “[R]esearchers at McMaster University in Canada have developed a way of emptying red blood cells, filling them with drugs, attaching a homing mechanism, and sending them out to find specific targets.

Red blood cell-mimicking synthetic biomaterial particles

    http://www.pnas.org/content/pnas/106/51/21495.full.pdf
    drug delivery, they fail to match the sophistication exhibited by innate biological entities. In particular, red blood cells (RBCs), the most ubiquitous cell type in the human blood, constitute highly specialized entities with unique shape, size, mechanical flexibility, and material composition, all of which are optimized for extraor-

Efficient RNA drug delivery using red blood cell ...

    https://www.nature.com/articles/s41467-018-04791-8
    Jun 15, 2018 · RNA delivery for disease treatment often has low uptake efficiencies and cytotoxicity. Here the authors produce extracellular vesicles from red blood cells for in vivo cargo delivery.Author: Waqas Muhammad Usman, Tin Chanh Pham, Yuk Yan Kwok, Luyen Tien Vu, Victor Ma, Boya Peng, Yuen San Ch...

Drug delivery and innovative pharmaceutical development in ...

    https://www.degruyter.com/view/j/revce.2015.31.issue-5/revce-2015-0010/revce-2015-0010.xml
    Oct 01, 2015 · Drug delivery and innovative pharmaceutical development in mimicking the red blood cell membrane “Biosteel”: an exciting product from nature that …Author: Sumaira Naeem, Lik Voon Kiew, Chung Lip Yong, Yin Teo Yin, Misni Bin Misran

Drug delivery and innovative pharmaceutical development in ...

    https://www.researchgate.net/publication/281613582_Drug_delivery_and_innovative_pharmaceutical_development_in_mimicking_the_red_blood_cell_membrane
    A special attention is devoted to the RBC mimics from polymers, red cell membrane ghosts, and the red cell membrane enclosing polymeric cores as potential drug carriers.

Red blood cell–derived nanoerythrosome for antigen ...

    https://advances.sciencemag.org/content/5/10/eaaw6870.full
    Oct 01, 2019 · Because of their inherent biocompatibility, the red blood cells (RBCs) have been widely studied for drug delivery (28, 29). Notably, senescent or damaged RBCs …Author: Xiao Han, Shufang Shen, Qin Fan, Guojun Chen, Edikan Archibong, Gianpietro Dotti, Zhuang Liu, Zhen G...

Red blood cell membrane-camouflaged nanoparticles: a novel ...

    https://www.sciencedirect.com/science/article/pii/S2211383518307202
    Erythrocytes (red blood cells, RBCs) are the most abundant circulating cells in the blood and have been widely used in drug delivery systems (DDS) because of their features of biocompatibility, biodegradability, and long circulating half-life.Author: Qing Xia, Yongtai Zhang, Zhe Li, Xuefeng Hou, Nianping Feng

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