Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery
Patient drug regime compliance is a major issue; sustained release implants could address this. Here, the authors report on a phase inverted in situ forming implant of PLGA for the sustained release of antiretroviral drugs and optimize and demonstrate the release of 6 different drugs over a period o...
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Nature Portfolio
2019
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oai:doaj.org-article:8bc4a989ec17413397ece8fc45f936862021-12-02T15:36:21ZUltra-long-acting tunable biodegradable and removable controlled release implants for drug delivery10.1038/s41467-019-12141-52041-1723https://doaj.org/article/8bc4a989ec17413397ece8fc45f936862019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12141-5https://doaj.org/toc/2041-1723Patient drug regime compliance is a major issue; sustained release implants could address this. Here, the authors report on a phase inverted in situ forming implant of PLGA for the sustained release of antiretroviral drugs and optimize and demonstrate the release of 6 different drugs over a period of up to a year.S. Rahima BenhabbourMartina KovarovaClinton JonesDaijha J. CopelandRoopali ShrivastavaMichael D. SwansonCraig SykesPhong T. HoMackenzie L. CottrellAnush SridharanSamantha M. FixOrrin ThayerJulie M. LongDaria J. HazudaPaul A. DaytonRussell J. MumperAngela D. M. KashubaJ. Victor GarciaNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019) |
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DOAJ |
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Science Q |
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Science Q S. Rahima Benhabbour Martina Kovarova Clinton Jones Daijha J. Copeland Roopali Shrivastava Michael D. Swanson Craig Sykes Phong T. Ho Mackenzie L. Cottrell Anush Sridharan Samantha M. Fix Orrin Thayer Julie M. Long Daria J. Hazuda Paul A. Dayton Russell J. Mumper Angela D. M. Kashuba J. Victor Garcia Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
description |
Patient drug regime compliance is a major issue; sustained release implants could address this. Here, the authors report on a phase inverted in situ forming implant of PLGA for the sustained release of antiretroviral drugs and optimize and demonstrate the release of 6 different drugs over a period of up to a year. |
format |
article |
author |
S. Rahima Benhabbour Martina Kovarova Clinton Jones Daijha J. Copeland Roopali Shrivastava Michael D. Swanson Craig Sykes Phong T. Ho Mackenzie L. Cottrell Anush Sridharan Samantha M. Fix Orrin Thayer Julie M. Long Daria J. Hazuda Paul A. Dayton Russell J. Mumper Angela D. M. Kashuba J. Victor Garcia |
author_facet |
S. Rahima Benhabbour Martina Kovarova Clinton Jones Daijha J. Copeland Roopali Shrivastava Michael D. Swanson Craig Sykes Phong T. Ho Mackenzie L. Cottrell Anush Sridharan Samantha M. Fix Orrin Thayer Julie M. Long Daria J. Hazuda Paul A. Dayton Russell J. Mumper Angela D. M. Kashuba J. Victor Garcia |
author_sort |
S. Rahima Benhabbour |
title |
Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
title_short |
Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
title_full |
Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
title_fullStr |
Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
title_full_unstemmed |
Ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
title_sort |
ultra-long-acting tunable biodegradable and removable controlled release implants for drug delivery |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/8bc4a989ec17413397ece8fc45f93686 |
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