Amyotrophic lateral sclerosis (ALS is a neurodegenerative disorder which is characterized by motor neuron (MN dysfunction, progressive paralysis, and death. Although several therapeutic approaches have been used for treatment of ALS, little success has been achieved. Natural vectors such as mesenchymal stem cells (MSCs can be a promising tool for overcoming therapeutic problems. MSCs have multipotential characteristics such as the ability to differentiate into variety of cell types, easy access, immunomodulation, tissue repair, exertion of trophic factors, exosome secretion and efficient homing. In this review, we will discuss the characteristics of MSCs and their possible therapeutic mechanisms in ALS patients.
Here, we investigated the effects of dual delivery of IGF-1R siRNA and doxorubicin by chitosan nanoparticles on viability of A549 lung cancer cells line by utilization of MTT and qRT-PCR. Furthermore apoptosis and migration of treated cells were assessed by Annexin-PI and wound healing assays, respectively. The chitosan nanoparticles had about 176 nm size with zeta potential and polydispersive index about 11 mV and 0.3, respectively. The IGF-1R siRNA had synergistic effect on DOX-induced cytotoxicity and apoptosis in tumour cells. In addition, siRNA/DOX-loaded chitosan nanoparticles could significantly decrease migration and expressions of mmp9, VEGF and STAT3 in A549 cells.
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