neuronal cell line
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Biomolecules ◽  
2021 ◽  
Vol 11 (2) ◽  
pp. 287
Author(s):  
Mohammad Sarif Mohiuddin ◽  
Tatsuhito Himeno ◽  
Yuichiro Yamada ◽  
Yoshiaki Morishita ◽  
Masaki Kondo ◽  
...  

Although diabetic polyneuropathy (DPN) is a frequent diabetic complication, no effective therapeutic approach has been established. Glucagon is a crucial hormone for glucose homeostasis but has pleiotropic effects, including neuroprotective effects in the central nervous system. However, the importance of glucagon in the peripheral nervous system (PNS) has not been clarified. Here, we hypothesized that glucagon might have a neuroprotective function in the PNS. The immortalized rat dorsal root ganglion (DRG) neuronal cell line 50B11 was treated with methylglyoxal (MG) to mimic an in vitro DPN model. The cells were cultured with or without glucagon or MG. Neurotoxicity, survival, apoptosis, neurite projection, cyclic adenosine monophosphate (cAMP), and protein kinase A (PKA) were examined. Glucagon had no cytotoxicity and rescued the cells from neurotoxicity. Cell survival was increased by glucagon. The ratio of apoptotic cells, which was increased by MG, was reduced by glucagon. Neurite outgrowth was accelerated in glucagon-treated cells. Cyclic AMP and PKA accumulated in the cells after glucagon stimulation. In conclusion, glucagon protected the DRG neuronal cells from MG-induced cellular stress. The cAMP/PKA pathway may have significant roles in those protective effects of glucagon. Glucagon may be a potential target for the treatment of DPN.


2021 ◽  
Vol 1868 (1) ◽  
pp. 118852
Author(s):  
Ushodaya Mattam ◽  
Noble Kumar Talari ◽  
Arun Kumar Paripati ◽  
Thanuja Krishnamoorthy ◽  
Naresh Babu V. Sepuri

2021 ◽  
Vol 16 (1) ◽  
pp. 1909902
Author(s):  
Omar Bagasra ◽  
Narges Sadat Shamabadi ◽  
Pratima Pandey ◽  
Abdelrahman Desoky ◽  
Ewen McLean

2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Shaarvari Bhat ◽  
Nina Ljubojevic ◽  
Seng Zhu ◽  
Mitsunori Fukuda ◽  
Arnaud Echard ◽  
...  

Abstract Tunneling nanotubes (TNTs) are F-actin rich structures that connect distant cells, allowing the transport of many cellular components, including vesicles, organelles and molecules. Rab GTPases are the major regulators of vesicle trafficking and also participate in actin cytoskeleton remodelling, therefore, we examined their role in TNTs. Rab35 functions with several proteins that are involved in vesicle trafficking such as ACAP2, MICAL-L1, ARF6 and EHD1, which are known to be involved in neurite outgrowth. Here we show that Rab35 promotes TNT formation and TNT-mediated vesicle transfer in a neuronal cell line. Furthermore, our data indicates that Rab35-GTP, ACAP2, ARF6-GDP and EHD1 act in a cascade mechanism to promote TNT formation. Interestingly, MICAL-L1 overexpression, shown to be necessary for the action of Rab35 on neurite outgrowth, showed no effect on TNTs, indicating that TNT formation and neurite outgrowth may be processed through similar but not identical pathways, further supporting the unique identity of these cellular protrusions.


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