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Analysis of vaginal microbicide film hydration kinetics by quantitative imaging refractometry
Authors
A Akil
Adam Wax
+30 more
AR Geonnotti
AR Neurath
AS Ham
B Rappaz
BA Miller-Chou
Bing Xu
DA Berk
David Katz
DF Katz
DL Kolin
G Popescu
HG Davies
JM Huntley
Lisa Rohan
Matthew Rinehart
MT Rinehart
NB Dobaria
NT Shaked
NT Shaked
O Frankman
PI Lee
Q Abdool Karim
R Barer
R Rustomjee
RM Machado
S Garg
S Garg
S Tasoglu
Sheila Grab
TT Tsay
Publication date
1 January 2014
Publisher
'Public Library of Science (PLoS)'
Doi
View
on
PubMed
Abstract
We have developed a quantitative imaging refractometry technique, based on holographic phase microscopy, as a tool for investigating microscopic structural changes in water-soluble polymeric materials. Here we apply the approach to analyze the structural degradation of vaginal topical microbicide films due to water uptake. We implemented transmission imaging of 1-mm diameter film samples loaded into a flow chamber with a 1.5×2 mm field of view. After water was flooded into the chamber, interference images were captured and analyzed to obtain high resolution maps of the local refractive index and subsequently the volume fraction and mass density of film material at each spatial location. Here, we compare the hydration dynamics of a panel of films with varying thicknesses and polymer compositions, demonstrating that quantitative imaging refractometry can be an effective tool for evaluating and characterizing the performance of candidate microbicide film designs for anti-HIV drug delivery. © 2014 Rinehart et al
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