J P Ranieri
Overview
Explore the profile of J P Ranieri including associated specialties, affiliations and a list of published articles.
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11
Citations
167
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Recent Articles
1.
Kader K, Akella R, Ziats N, Lakey L, Harasaki H, Ranieri J, et al.
Tissue Eng
. 2000 Aug;
6(3):241-51.
PMID: 10941219
Endothelial cell seeding of synthetic small diameter vascular grafts (SSDVG) has been shown to diminish thrombosis and intimal hyperplasia, resulting in improved graft patency. However, endothelial cell retention on seeded...
2.
Yang Z, Birkenhauer P, Julmy F, Chickering D, Ranieri J, Merkle H, et al.
J Control Release
. 1999 Jul;
60(2-3):269-77.
PMID: 10425332
Vascular smooth muscle cell (SMC) growth plays an important role in atherosclerosis, restenosis and venous bypass graft disease. With systemic drug administration no effective therapy for restenosis and venous bypass...
3.
Dillon G, Yu X, Sridharan A, Ranieri J, Bellamkonda R
J Biomater Sci Polym Ed
. 1998 Nov;
9(10):1049-69.
PMID: 9806445
Understanding neural cell differentiation and neurite extension in three-dimensional scaffolds is critical for neural tissue engineering. This study explores the structure-function relationship between a 3D hydrogel scaffold and neural cell...
4.
Clemence J, Ranieri J, Aebischer P, Sigrist H
Bioconjug Chem
. 1995 Jul;
6(4):411-7.
PMID: 7578361
To attain light-dependent functionalization of biocompatible materials, a photolabel-derivatized, bioactive laminin fragment has been synthesized, chemically characterized, and photoimmobilized. Covalent high-resolution patterning of the laminin fragment CDPGYIGSR to hydroxylated fluorinated...
5.
Bellamkonda R, Ranieri J, Aebischer P
J Neurosci Res
. 1995 Jul;
41(4):501-9.
PMID: 7473881
The phenotypic expression of various neural cells is influenced by extracellular matrix (ECM) molecules. This study aims to develop a three-dimensional gel tailored to support neurite extension from neural cells....
6.
Ranieri J, Bellamkonda R, Bekos E, Vargo T, Gardella Jr J, Aebischer P
J Biomed Mater Res
. 1995 Jun;
29(6):779-85.
PMID: 7593015
Material surfaces that can mediate cellular interactions by the coupling of specific cell membrane receptors may allow for the design of a biomaterial that can control cell attachment, differentiation, and...
7.
Vargo T, Bekos E, Kim Y, Ranieri J, Bellamkonda R, Aebischer P, et al.
J Biomed Mater Res
. 1995 Jun;
29(6):767-78.
PMID: 7593014
In this work, poly(tetrafluoroethylene-co-hexafluoropropylene) (also known as fluorinated ethylene propylene; FEP) was functionalized at the surface using a radio frequency glow discharge plasma. This particular surface modification produced controlled densities...
8.
Taborelli M, Eng L, Descouts P, Ranieri J, Bellamkonda R, Aebischer P
J Biomed Mater Res
. 1995 Jun;
29(6):707-14.
PMID: 7593007
We investigated the adsorption of albumin on chemically modified gold surfaces by scanning force microscopy operating both in contact and noncontact mode. The surface modification was performed with thiol-based self-assembling...
9.
Bellamkonda R, Ranieri J, Bouche N, Aebischer P
J Biomed Mater Res
. 1995 May;
29(5):663-71.
PMID: 7622552
The ability to organize cells in three dimensions (3D) is an important component of tissue engineering. This study sought to develop an extracellular matrix (ECM) equivalent with a physicochemical structure...
10.
Ranieri J, Bellamkonda R, Bekos E, Gardella Jr J, Mathieu H, Ruiz L, et al.
Int J Dev Neurosci
. 1994 Dec;
12(8):725-35.
PMID: 7747599
The spatial control of neuronal cell attachment and differentiation via specific receptor mediated interactions, may provide an effective means for the in vitro reconstruction of neuronal cell architecture. In this...