Anousheh Zargar Kharazi
Overview
Explore the profile of Anousheh Zargar Kharazi including associated specialties, affiliations and a list of published articles.
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Articles
23
Citations
241
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Recent Articles
1.
Heydari P, Mojahedi M, Javaherchi P, Sharifi M, Kharazi A
Int J Biol Macromol
. 2024 Oct;
281(Pt 4):136596.
PMID: 39419158
Wound healing is a complicated process, especially when surgical, traumatic, burn, or pathological injury occurs, which requires different kinds of dressing covers including hydrogels, hydrocolloids, alginates foams and films for...
2.
Mojahedi M, Heydari P, Kharazi A
Int J Biol Macromol
. 2024 Oct;
282(Pt 1):136570.
PMID: 39414208
Wound healing process significantly impeded by prolonged inflammation responses, infection at the wound site, and insufficient angiogenesis. The sustained release of anti-inflammation and anti-bacterial drugs has the potential to control...
3.
Rejali A, Ebrahimian-Hosseinabadi M, Kharazi A
Heliyon
. 2024 Oct;
10(19):e38672.
PMID: 39398017
The aim of this research was to fabricate and evaluate polyglycerol sebacate/polycaprolactone/reduced graphene oxide (PGS-PCL-RGO) composite scaffolds for myocardial tissue engineering. Polyglycerol sebacate polymer was synthesized using glycerol and sebacic...
4.
Heydari P, Kharazi A, Shariati L
Sci Rep
. 2024 May;
14(1):12019.
PMID: 38797743
Novel wound dressings with therapeutic effects are being continually designed to improve the wound healing process. In this study, the structural, chemical, physical, and biological properties of an electrospun poly...
5.
Iraji Asiabadi A, Esmaeil N, Kharazi A, Dabiri A, Varshosaz J
J Biomed Mater Res B Appl Biomater
. 2024 May;
112(6):e35411.
PMID: 38773758
The ultimate goal of tissue engineering is to repair and regenerate damaged tissue or organ. Achieving this goal requires blood vessel networks to supply oxygen and nutrients to new forming...
6.
Babaei M, Ebrahim-Najafabadi N, Mirzadeh M, Abdali H, Farnaghi M, Gharavi M, et al.
Biomater Adv
. 2024 May;
161:213900.
PMID: 38772132
This study investigates the safety and efficacy of 3D-printed polycaprolactone/hydroxyapatite (PCL/HA) scaffolds for patient-specific cranioplasty surgeries, employing liquid deposition modeling (LDM) technology. This research is pioneering as it explores the...
7.
Tavakoli M, Al-Musawi M, Kalali A, Shekarchizadeh A, Kaviani Y, Mansouri A, et al.
Int J Biol Macromol
. 2024 Mar;
265(Pt 1):130954.
PMID: 38499125
Designing multifunctional wound dressings is a prerequisite to prevent infection and stimulate healing. In this study, a bilayer scaffold (BS) with a top layer (TL) comprising 3D printed pectin/polyacrylic acid/platelet...
8.
Heydari P, Kharaziha M, Varshosaz J, Kharazi A, Javanmard S
Biomater Adv
. 2024 Jan;
158:213762.
PMID: 38227989
Recently, insufficient angiogenesis and prolonged inflammation are crucial challenges of chronic skin wound healing. The sustained release of L-Arginine (L-Arg) and nitric oxide (NO) production can control immune responses, improve...
9.
Shafizadeh S, Heydari P, Kharazi A, Shariati L
J Biomater Sci Polym Ed
. 2024 Jan;
35(4):482-500.
PMID: 38190321
Wound healing will be enhanced using structures with therapeutic effects. This study fabricated a novel nanofibrous scaffold for skin tissue regeneration using a coaxial structure polyglycerol sebacate (PGS)/platelet-rich plasma (PRP)...
10.
Atari M, Saroukhani A, Manshaei M, Bateni P, Kharazi A, Vatankhah E, et al.
Biomater Sci
. 2023 Aug;
11(20):6871-6880.
PMID: 37646468
Tissue-engineered vascular grafts (TEVGs) are promising alternatives to existing prosthetic grafts. The objective of this study is to evaluate the clinical feasibility of a novel multi-layered small-diameter vascular graft that...