Nanomaterial integration into the scaffolding materials for nerve tissue engineering: a review

Author:

Arzaghi Hamidreza1,Adel Bashir2,Jafari Hossein3,Askarian-Amiri Shaghayegh4,Shiralizadeh Dezfuli Amin4,Akbarzadeh Abolfazl567,Pazoki-Toroudi Hamidreza48

Affiliation:

1. Department of Medical Biotechnology, Faculty of Allied Medical Sciences, Iran University of Medical Sciences, Hemat Highway Next to Milad Tower, Tehran1449614535, Islamic Republic of Iran

2. Department of Biology, Faculty of Sciences, The University of Guilan, Rasht4199613776, Islamic Republic of Iran

3. Institute for Research in Fundamental Sciences (IPM), Artesh Highway, Tehran1956836681, Islamic Reitutionpublic of Iran

4. Physiology Research Center, Faculty of Medicine, Iran University of Medical Sciences, Hemat Highway Next to Milad Tower, Tehran1449614535, Islamic Republic of Iran

5. Tuberculosis and Lung Disease Research Center of Tabriz, Tabriz University of Medical Sciences, Tabriz5165665811, Islamic Republic of Iran

6. Department of Medical Nanotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz5165665811, Islamic Republic of Iran

7. Iran Universal Scientific and Education Network (USERN), Tabriz5165665811, Islamic Republic of Iran

8. Department of Physiology, Faculty of Medicine, Iran University of Medical Sciences, Hemat Highway Next to Milad Tower, Tehran1449614535, Islamic Republic of Iran

Abstract

AbstractThe nervous system, which consists of a complex network of millions of neurons, is one of the most highly intricate systems in the body. This complex network is responsible for the physiological and cognitive functions of the human body. Following injuries or degenerative diseases, damage to the nervous system is overwhelming because of its complexity and its limited regeneration capacity. However, neural tissue engineering currently has some capacities for repairing nerve deficits and promoting neural regeneration, with more developments in the future. Nevertheless, controlling the guidance of stem cell proliferation and differentiation is a challenging step towards this goal. Nanomaterials have the potential for the guidance of the stem cells towards the neural lineage which can overcome the pitfalls of the classical methods since they provide a unique microenvironment that facilitates cell–matrix and cell–cell interaction, and they can manipulate the cell signaling mechanisms to control stem cells’ fate. In this article, the suitable cell sources and microenvironment cues for neuronal tissue engineering were examined. Afterward, the nanomaterials that impact stem cell proliferation and differentiation towards neuronal lineage were reviewed.

Funder

Physiology Research Center and Department of Physiology, Iran University of Medical Sciences

Tuberculosis and Lung Disease Research Center of Tabriz, Tabriz University of Medical Sciences, Tabriz

Publisher

Walter de Gruyter GmbH

Subject

General Neuroscience

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