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https://www.ncbi.nlm.nih.gov/pubmed/19242402
The next generation of drug-delivery microdevices. Elman NM(1), Patta Y, Scott AW, Masi B, Ho Duc HL, Cima MJ. Author information: (1)Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA. [email protected]: NM Elman, Y Patta, AW Scott, B Masi, HL Ho Duc, MJ Cima
https://ascpt.onlinelibrary.wiley.com/doi/pdf/10.1038/clpt.2009.4
The Next Generation of Drug‐Delivery Microdevices. NM Elman. Corresponding Author. E-mail address: [email protected]. ... (MEMS) and miniaturization technologies have enabled the creation of biomedical microdevices intended for use in the treatment of various chronic and acute illnesses. The ability to create very precisely defined micrometer ...Author: NM Elman, Y Patta, AW Scott, B Masi, HL Ho Duc, MJ Cima
https://www.researchgate.net/publication/24039726_The_Next_Generation_of_Drug-Delivery_Microdevices
Drug delivery microdevices based on MEMS (Micro-Electro-Mechanical-Systems) represent the next generation of active implantable drug delivery systems. MEMS …
https://www.the-scientist.com/daily-news/next-generation-biocompatible-microdevices-32233
Jan 06, 2017 · Next Generation: Biocompatible Microdevices A new fabrication strategy enables scientists to manufacture fully biocompatible, implantable medical devices.
https://curtiscoulter.com/next-generation-drug-delivery/
Jul 03, 2019 · Big Picture Outlook. According to markets & Markets, the drug delivery technology market is expected to reach USD $1,669.4 Billion by 2020 from USD $1,179.2 Billion in 2016, growing at a CAGR of 7.2% during the forecast period.
http://www.eurekaselect.com/71695
Drug delivery microdevices based on MEMS (Micro-Electro-Mechanical-Systems) represent the next generation of active implantable drug delivery systems. MEMS technology has enabled the scaling down of current delivery modalities to the micrometer and millimeter size.Author: Elman Nm, Upadhyay Um
https://www.sciencedirect.com/science/article/pii/S1742706118307700
Briefly, despite the great challenges and difficulties in practically using exosomes, this endogenous vesicle has shown a great potential in the biomedical field and would be the next generation of nanomaterials for advanced drug delivery and therapy.Author: Wen Liao, Wen Liao, Yu Du, Chenghao Zhang, Fangwei Pan, Yang Yao, Ting Zhang, Qiang Peng
https://www.nature.com/articles/nrd.2016.268
Mar 17, 2017 · The limited success of first-generation ADCs (developed in the early 2000s) informed strategies to bring second-generation ADCs to the market, which have higher levels of cytotoxic drug conjugation, lower levels of naked antibodies and more-stable linkers between the drug and the antibody.Author: Alain Beck, Liliane Goetsch, Charles Dumontet, Charles Dumontet, Nathalie Corvaïa
New Generation Devices (NGD) understands the importance of choice—the last thing you or your patient needs is to be limited, either by cost or by the devices themselves. ... Type-1 collagen-based implant that supports the four phases of healing and make it an effective matrix for localized drug delivery…
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4334339/
Feb 12, 2015 · Pulmonary drug delivery is an attractive route of administration for diverse entities including micro and macromolecules such as vaccines, DNA, cytokines, antibodies, and hormones.16 Therefore, it is essential that the hardware technology of inhalers meets the needs of the pulmonary delivery of such diverse molecules. Devices should be ...Author: Mariam Ibrahim, Rahul Verma, Lucila Garcia-Contreras
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