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Nadia Rbia

Explore the profile of Nadia Rbia including associated specialties, affiliations and a list of published articles. Areas
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Articles 16
Citations 175
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Recent Articles
1.
Mathot F, Saffari T, Rbia N, Nijhuis T, Bishop A, Hovius S, et al.
Plast Reconstr Surg . 2021 Jun; 148(2):354-365. PMID: 34153019
Background: Mesenchymal stem cells have the potential to produce neurotrophic growth factors and establish a supportive microenvironment for neural regeneration. The purpose of this study was to determine the effect...
2.
Mathot F, Rbia N, Thaler R, Dietz A, van Wijnen A, Bishop A, et al.
Neural Regen Res . 2021 Jan; 16(8):1613-1621. PMID: 33433492
It was hypothesized that mesenchymal stem cells (MSCs) could provide necessary trophic factors when seeded onto the surfaces of commonly used nerve graft substitutes. We aimed to determine the gene...
3.
Mathot F, Rbia N, Thaler R, Bishop A, van Wijnen A, Shin A
J Plast Reconstr Aesthet Surg . 2020 May; 73(8):1473-1481. PMID: 32418840
Background: When direct nerve coaptation is impossible after peripheral nerve injury, autografts, processed allografts, or conduits are used to bridge the nerve gap. The purpose of this study was to...
4.
Mathot F, Rbia N, Bishop A, Hovius S, Shin A
Microsurgery . 2020 Apr; 40(5):585-592. PMID: 32233045
Purpose: Adipose derived mesenchymal stem cells (MSCs) are hypothesized to supplement tissues with growth factors essential for regeneration and neovascularization. The purpose of this study was to determine the effect...
5.
Rbia N, Bulstra L, Friedrich P, Bishop A, Nijhuis T, Shin A
Plast Reconstr Surg Glob Open . 2020 Feb; 8(1):e2579. PMID: 32095395
Methods: Undifferentiated MSCs were seeded onto decellularized nerve allografts and used to reconstruct a 10 mm gap in a rat sciatic nerve model. Gene expression profiles of genes essential for...
6.
Mathot F, Rbia N, Thaler R, Bishop A, van Wijnen A, Shin A
Gene . 2019 Oct; 724:144151. PMID: 31626959
Background: Differentiation of mesenchymal stem cells (MSCs) into Schwann-like cells onto processed nerve allografts may support peripheral nerve repair. The purpose of this study was to understand the biological characteristics...
7.
Mathot F, Rbia N, Bishop A, Hovius S, van Wijnen A, Shin A
J Plast Reconstr Aesthet Surg . 2019 Jun; 73(1):81-89. PMID: 31202698
Background: Although undifferentiated MSCs and MSCs differentiated into Schwann-like cells have been extensively compared in vitro and in vivo, studies on the ability and efficiency of differentiated MSCs for delivery...
8.
Rbia N, Bulstra L, Lewallen E, Hovius S, van Wijnen A, Shin A
J Plast Reconstr Aesthet Surg . 2019 Jun; 72(8):1316-1325. PMID: 31175032
Mesenchymal stromal cells (MSCs) secrete many soluble growth factors and have previously been shown to stimulate nerve regeneration. MSC-seeded processed nerve allografts could potentially be a promising method for large...
9.
Rbia N, Bulstra L, Saffari T, Hovius S, Shin A
World Neurosurg . 2019 Apr; 127:e1176-e1184. PMID: 31003028
Objective: A single-institution case series is reported and a review of the literature on the outcomes of digital nerve gap reconstruction with the NeuraGen type 1 collagen nerve conduit (Integra...
10.
Rbia N, Bulstra L, Thaler R, Hovius S, van Wijnen A, Shin A
J Hand Surg Am . 2018 Oct; 44(6):514.e1-514.e11. PMID: 30301645
Purpose: Adipose-derived mesenchymal stromal cells (MSCs) have emerged as promising tools for peripheral nerve reconstruction. There is a paucity of information regarding the ultimate survivorship of implanted MSCs or whether...