Literature DB >> 20697650

A robust nanofluidic membrane with tunable zero-order release for implantable dose specific drug delivery.

Daniel Fine1, Alessandro Grattoni, Sharath Hosali, Arturas Ziemys, Enrica De Rosa, Jaskaran Gill, Ryan Medema, Lee Hudson, Milos Kojic, Miljan Milosevic, Louis Brousseau Iii, Randy Goodall, Mauro Ferrari, Xuewu Liu.   

Abstract

This manuscript demonstrates a mechanically robust implantable nanofluidic membrane capable of tunable long-term zero-order release of therapeutic agents in ranges relevant for clinical applications. The membrane, with nanochannels as small as 5 nm, allows for the independent control of both dosage and mechanical strength through the integration of high-density short nanochannels parallel to the membrane surface with perpendicular micro- and macrochannels for interfacing with the ambient solutions. These nanofluidic membranes are created using precision silicon fabrication techniques on silicon-on-insulator substrates enabling exquisite control over the monodispersed nanochannel dimensions and surface roughness. Zero-order release of analytes is achieved by exploiting molecule to surface interactions which dominate diffusive transport when fluids are confined to the nanoscale. In this study we investigate the nanofluidic membrane performance using custom diffusion and gas testing apparatuses to quantify molecular release rate and process uniformity as well as mechanical strength using a gas based burst test. The kinetics of the constrained zero-order release is probed with molecules presenting a range of sizes, charge states, and structural conformations. Finally, an optimal ratio of the molecular hydrodynamic diameter to the nanochannel dimension is determined to assure zero-order release for each tested molecule.

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Year:  2010        PMID: 20697650     DOI: 10.1039/c0lc00013b

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  18 in total

1.  Impedance characterization, degradation, and in vitro biocompatibility for platinum electrodes on BioMEMS.

Authors:  Thomas Geninatti; Giacomo Bruno; Bernardo Barile; R Lyle Hood; Marco Farina; Jeffrey Schmulen; Giancarlo Canavese; Alessandro Grattoni
Journal:  Biomed Microdevices       Date:  2015-02       Impact factor: 2.838

2.  Review article: Fabrication of nanofluidic devices.

Authors:  Chuanhua Duan; Wei Wang; Quan Xie
Journal:  Biomicrofluidics       Date:  2013-03-13       Impact factor: 2.800

Review 3.  Nanotechnology in cell replacement therapies for type 1 diabetes.

Authors:  Alexander U Ernst; Daniel T Bowers; Long-Hai Wang; Kaavian Shariati; Mitchell D Plesser; Natalie K Brown; Tigran Mehrabyan; Minglin Ma
Journal:  Adv Drug Deliv Rev       Date:  2019-02-02       Impact factor: 15.470

4.  Transcutaneously refillable nanofluidic implant achieves sustained level of tenofovir diphosphate for HIV pre-exposure prophylaxis.

Authors:  Corrine Ying Xuan Chua; Priya Jain; Andrea Ballerini; Giacomo Bruno; R Lyle Hood; Manas Gupte; Song Gao; Nicola Di Trani; Antonia Susnjar; Kathryn Shelton; Lane R Bushman; Marco Folci; Carly S Filgueira; Mark A Marzinke; Peter L Anderson; Ming Hu; Pramod Nehete; Roberto C Arduino; Jagannadha K Sastry; Alessandro Grattoni
Journal:  J Control Release       Date:  2018-08-06       Impact factor: 9.776

5.  RFID Tag Helix Antenna Sensors for Wireless Drug Dosage Monitoring.

Authors:  Haiyu Huang; Peisen Zhao; Pai-Yen Chen; Yong Ren; Xuewu Liu; Mauro Ferrari; Ye Hu; Deji Akinwande
Journal:  IEEE J Transl Eng Health Med       Date:  2014-03-03       Impact factor: 3.316

Review 6.  Silicon micro- and nanofabrication for medicine.

Authors:  Daniel Fine; Alessandro Grattoni; Randy Goodall; Shyam S Bansal; Ciro Chiappini; Sharath Hosali; Anne L van de Ven; Srimeenkashi Srinivasan; Xuewu Liu; Biana Godin; Louis Brousseau; Iman K Yazdi; Joseph Fernandez-Moure; Ennio Tasciotti; Hung-Jen Wu; Ye Hu; Steve Klemm; Mauro Ferrari
Journal:  Adv Healthc Mater       Date:  2013-04-15       Impact factor: 9.933

7.  A multiscale MD-FE model of diffusion in composite media with internal surface interaction based on numerical homogenization procedure.

Authors:  M Kojic; M Milosevic; N Kojic; K Kim; M Ferrari; A Ziemys
Journal:  Comput Methods Appl Mech Eng       Date:  2014-02-01       Impact factor: 6.756

8.  Sustained zero-order delivery of GC-1 from a nanochannel membrane device alleviates metabolic syndrome.

Authors:  C S Filgueira; E Nicolov; R L Hood; A Ballerini; J Garcia-Huidobro; J Z Lin; D Fraga; P Webb; O M Sabek; A O Gaber; K J Phillips; A Grattoni
Journal:  Int J Obes (Lond)       Date:  2016-07-27       Impact factor: 5.095

9.  Interfacial effects on nanoconfined diffusive mass transport regimes.

Authors:  A Ziemys; M Kojic; M Milosevic; M Ferrari
Journal:  Phys Rev Lett       Date:  2012-06-06       Impact factor: 9.161

10.  Nanostructured thin film polymer devices for constant-rate protein delivery.

Authors:  Daniel A Bernards; Kevin D Lance; Natalie A Ciaccio; Tejal A Desai
Journal:  Nano Lett       Date:  2012-09-19       Impact factor: 11.189

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