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Author(s):  
Niliksha Gunewardene ◽  
Patrick Lam ◽  
Yutian Ma ◽  
Frank Caruso ◽  
Sherryl Wagstaff ◽  
...  

Neuropeptides ◽  
2022 ◽  
pp. 102226
Author(s):  
Noor Azzizah Omar ◽  
Jaya Kumar ◽  
Teoh Seong Lin
Keyword(s):  

Author(s):  
Stefania Arasi ◽  
Ilenia Panasiti ◽  
Lucia Caminiti ◽  
Mariaelisabetta Conte ◽  
Sveva Castelli ◽  
...  

BACKGROUND: Characterization of disease endotypes will open a new window for the treatment of allergic rhinitis (AR). Herein we provide the first attempt to identify specific AR phenotypes/endotypes and/or any biomarker/predictor for specific treatment response based on local biological parameters. METHODS: This observational study was carried out in 142 patients with seasonal AR and 20 non-allergic controls. Total IgE levels, specific IgE to 112 allergenic molecules and 92 proinflammatory and immunologic proteins were measured in both serum and nasal secretions (NS). RESULTS: We found increased values of MCPs and MMPs in adults both in NS and serum when compared with pediatric patients (p<.05). MCPs and MMPs might represent two effective predictors of chronic inflammation. CXCL9, CXCL10, CXCL11, MCPs and MMP1 showed an upward trend both in serum and NS for patients with ≥ 3 comorbidities vs non-allergic controls(p<.05). These data suggest the involvement of these chemokines in the late phase of chronic allergic inflammation in the nose. Serum levels of IL-6, IL-8 and IL-10 (p<.05) were significantly higher in patients with AR+asthma compared to patients with different comorbidities. Conversely, serum levels of neurotrophin-3 values (p<.05) were significantly higher in those with AR+eczema vs other comorbidities groups. A subgroup of patients with a nasal hypersecretory state,called “hypersecreter endotype” was characterized by paediatric age, male gender, grass pollen sensitization and distributed among persistent, mild or moderate to severe cases of AR. CONCLUSIONS: Our study sets the groundwork for an AR endotypization at molecular level, which is highly desirable to deliver a patient-tailored approach.


Author(s):  
Sara Tanbakooei ◽  
Seyed Mohammad Amin Haramshahi ◽  
Gelareh Vahabzadeh ◽  
Mahmood Barati ◽  
Majid Katebi ◽  
...  

Background: In vitro obtaining oocytes can be an appropriate alternative for patients with gonadal insufficiency or cancer survivors. The purpose of the current research was isolating stem cells from ovarian cortical tissue as well as evaluating the effectiveness of follicle stimulating hormone (FSH), basic fibroblast growth factor (bFGF), and neurotrophin 3 (NT3) in differentiating to oocyte-like cells. Methods: A human ovary was dissected and cortical tissue pieces were cultured for cell isolation. Isolated cells were divided into 8 groups (3 cases in each group) of control, FSH, NT3, bFGF, FSH+NT3, FSH+bFGF, NT3+bFGF, and FSH+NT3+ bFGF. Pluripotency specific gene (OCT4-A and Nanog), initial germ cells (c-KIT and VASA) and PF growth initiators (GDF-9 and Lhx-8) were evaluated by qRT-PCR. Experiments were performed in triplicate and there were 3 samples in each group. The results were analyzed using one-way ANOVA and p-value less than 0.05 was considered statistically significant. Results: Flow cytometry results showed that cells isolated from the ovarian cortex expressed markers of pluripotency. The results showed that the expression of Nanog, OCT4, GDF-9 and VASA was significantly increased in FSH+NT3 group, while treatment with bFGF caused significant expression of c-KIT and Lhx-8 (p<0.05). Also, according to the results, isolated cells treated with NT3 significantly increased c-KIT expression. Conclusion: According to our results, the ovarian cortex cells could be differentiated into primordial follicles if treated with the proper combination of FSH, bFGF, and NT3. These findings provided a new perspective for the future of in vitro gamete proudest.


2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Xin Cui ◽  
Jia Jing ◽  
Rui Wu ◽  
Qiang Cao ◽  
Fenfen Li ◽  
...  

AbstractActivation of brown fat thermogenesis increases energy expenditure and alleviates obesity. Sympathetic nervous system (SNS) is important in brown/beige adipocyte thermogenesis. Here we discover a fat-derived “adipokine” neurotrophic factor neurotrophin 3 (NT-3) and its receptor Tropomyosin receptor kinase C (TRKC) as key regulators of SNS growth and innervation in adipose tissue. NT-3 is highly expressed in brown/beige adipocytes, and potently stimulates sympathetic neuron neurite growth. NT-3/TRKC regulates a plethora of pathways in neuronal axonal growth and elongation. Adipose tissue sympathetic innervation is significantly increased in mice with adipocyte-specific NT-3 overexpression, but profoundly reduced in mice with TRKC haploinsufficiency (TRKC +/−). Increasing NT-3 via pharmacological or genetic approach promotes beige adipocyte development, enhances cold-induced thermogenesis and protects against diet-induced obesity (DIO); whereas TRKC + /− or SNS TRKC deficient mice are cold intolerant and prone to DIO. Thus, NT-3 is a fat-derived neurotrophic factor that regulates SNS innervation, energy metabolism and obesity.


Author(s):  
Ali Helmi Bakri ◽  
Mohammed H. Hassan ◽  
Ahmed El-Abd Ahmed ◽  
Pola Rafat Halim ◽  
Samer A. El-Sawy ◽  
...  

2021 ◽  
Vol 22 (16) ◽  
pp. 8499
Author(s):  
Daniela Rodrigues-Amorim ◽  
Marta Iglesias-Martínez-Almeida ◽  
Tania Rivera-Baltanás ◽  
Patricia Fernández-Palleiro ◽  
Luis Freiría-Martínez ◽  
...  

The neurobiology of schizophrenia is multifactorial, comprising the dysregulation of several biochemical pathways and molecules. This research proposes a peripheral biomarker for schizophrenia that involves the second extracellular loop of norepinephrine transporter (NEText), the tropomyosin receptor kinase C (TrkC), and the neurotrophin-3 (NT-3) in T cells. The study of NEText, NT-3, and TrkC was performed in T cells and plasma extracted from peripheral blood of 54 patients with schizophrenia and 54 healthy controls. Levels of NT-3, TrkC, and NET were significantly lower in plasma and T cells of patients compared to healthy controls. Co-immunoprecipitation (co-IPs) showed protein interactions with Co-IP NEText–NT-3 and Co-IP NEText–TrkC. Computational modelling of protein–peptide docking by CABS-dock provided a medium–high accuracy model for NT-3–NEText (4.6935 Å) and TrkC–NEText (2.1365 Å). In summary, immunocomplexes reached statistical relevance in the T cells of the control group contrary to the results obtained with schizophrenia. The reduced expression of NT-3, TrkC, and NET, and the lack of molecular complexes in T cells of patients with schizophrenia may lead to a peripheral dysregulation of intracellular signaling pathways and an abnormal reuptake of norepinephrine (NE) by NET. This peripheral molecular biomarker underlying schizophrenia reinforces the role of neurotrophins, and noradrenergic and immune systems in the pathophysiology of schizophrenia.


Author(s):  
Basem H. Elesawy ◽  
Walaa F. Alsanie ◽  
Mubarak Ali Algahtany ◽  
Jawaher M. AL‐ Ashkhari ◽  
Aya K. Alyarobi ◽  
...  

2021 ◽  
Vol 15 ◽  
Author(s):  
Judith S. Kempfle ◽  
Marlon V. Duro ◽  
Andrea Zhang ◽  
Carolina D. Amador ◽  
Richard Kuang ◽  
...  

Sensorineural hearing loss is irreversible and is associated with the loss of spiral ganglion neurons (SGNs) and sensory hair cells within the inner ear. Improving spiral ganglion neuron (SGN) survival, neurite outgrowth, and synaptogenesis could lead to significant gains for hearing-impaired patients. There has therefore been intense interest in the use of neurotrophic factors in the inner ear to promote both survival of SGNs and re-wiring of sensory hair cells by surviving SGNs. Neurotrophin-3 (NT-3) and brain-derived neurotrophic factor (BDNF) represent the primary neurotrophins in the inner ear during development and throughout adulthood, and have demonstrated potential for SGN survival and neurite outgrowth. We have pioneered a hybrid molecule approach to maximize SGN stimulation in vivo, in which small molecule analogues of neurotrophins are linked to bisphosphonates, which in turn bind to cochlear bone. We have previously shown that a small molecule BDNF analogue coupled to risedronate binds to bone matrix and promotes SGN neurite outgrowth and synaptogenesis in vitro. Because NT-3 has been shown in a variety of contexts to have a greater regenerative capacity in the cochlea than BDNF, we sought to develop a similar approach for NT-3. 1Aa is a small molecule analogue of NT-3 that has been shown to activate cells through TrkC, the NT-3 receptor, although its activity on SGNs has not previously been described. Herein we describe the design and synthesis of 1Aa and a covalent conjugate of 1Aa with risedronate, Ris-1Aa. We demonstrate that both 1Aa and Ris-1Aa stimulate neurite outgrowth in SGN cultures at a significantly higher level compared to controls. Ris-1Aa maintained its neurotrophic activity when bound to hydroxyapatite, the primary mineral component of bone. Both 1Aa and Ris-1Aa promote significant synaptic regeneration in cochlear explant cultures, and both 1Aa and Ris-1Aa appear to act at least partly through TrkC. Our results provide the first evidence that a small molecule analogue of NT-3 can stimulate SGNs and promote regeneration of synapses between SGNs and inner hair cells. Our findings support the promise of hydroxyapatite-targeting bisphosphonate conjugation as a novel strategy to deliver neurotrophic agents to SGNs encased within cochlear bone.


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