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Featured researches published by Natesh Yepuri.


PLOS ONE | 2017

L-arginine attenuates Interleukin-1β (IL-1β) induced Nuclear Factor Kappa-Beta (NF-κB) activation in Caco-2 cells

Qinghe Meng; Mitchell Cooney; Natesh Yepuri; Robert N. Cooney

Background Specific nutrients like L-arginine (L-Arg) ameliorate intestinal inflammation, however the exact mechanisms of this effect are unclear. We hypothesized the anti-inflammatory effects of L-Arg require active transport and metabolism by inducible nitric oxide synthase (iNOS) to generate nitric oxide (NO). To test this hypothesis we examined the effects of L-Arg, L-Arg transport activity, NO production and iNOS inhibitor on IL-1β-mediated NF-κB-activation in Caco-2 cells. Methods Caco-2 cells were cultured, transfected with a NF-κB promoter luciferase vector, incubated ± L-Arg, ± IL-1β and luciferase activity was measured. Using siRNA we inhibited the L-Arg cationic amino acid transporter system y+ (CAT1) expression and examined its effects on L-Arg transport activity and IL-1β-mediated NF-κB-activation. Finally, the effects of sodium nitroprusside (SNP, a NO donor) and Nω-nitro-L-arginine (NNA, an iNOS inhibitor) on IL-1β-mediated NF-κB-activation were examined. Results IL-1β increased NF-κB luciferase activity (8-fold) and NF-κB expression (mRNA and protein), both of these were significantly decreased by L-Arg. System y+ CAT1 siRNA decreased CAT1 expression, L-Arg transport activity and attenuated the inhibitory effects of L-Arg on NF- κB activity. SNP attenuated the IL-1β-induced increase in NF-κB luciferase activity and expression, whereas NNA diminished the inhibitory effects of L-Arg on IL-1β-inducible NF- κB luciferase activity. Conclusion The inhibitory effects of L-Arg on IL-1β-mediated NF-κB-activation in Caco-2 cells involve L-Arg transport activity by CAT1, regulation of IL-1β-mediated increases in NF-κB expression, changes in iNOS expression and NO production. Our data suggest the inhibitory effects of L-Arg on NF-κB activation are mediated in part by iNOS since SNP preserves and NNA attenuates the effects of L-Arg on IL-1β-mediated NF-κB-activation and expression.


Shock | 2018

Surfactant Proteins-a and -d attenuate Lps-induced Apoptosis in Primary Intestinal Epithelial Cells (iecs)

Linlin Zhang; Qinghe Meng; Natesh Yepuri; Guirong Wang; Xiuming Xi; Robert N. Cooney

Introduction: SP-A/D KO mice with sepsis demonstrate more severe lung, kidney, and gut injury/apoptosis than WT controls. We hypothesize SP-A and SP-D directly regulate lipopolysaccharide (LPS)-induced P38 mitogen-activated protein kinase (MAPK) activation and gut apoptosis during sepsis. Methods: Primary IECs were established from SP-A/D KO or C57BL/6 WT mice, stimulated with LPS and harvested at 24 h. IECs from WT mice were treated with SP-A, SP-D, or vehicle for 20 h, then LPS for 24 h. Apoptosis, cleaved caspase-3 levels and the ratio of BAX/Bcl-2 were assayed. The role of P38 MAPK was examined using the P38 MAPK-agonist U46619 and inhibitor SB203580 in LPS-treated cells. p-P38 MAPK/t-P38 MAPK, TLR4, and CD14 were measured by Western Blot. Results: LPS-induced apoptosis, caspase-3 levels, BAX/Bcl-2, and p-P38/t-P38 MAPK were increased in SP-A/D KO IECs. SP-A and SP-D attenuate LPS-induced increase in apoptosis, cleaved caspase-3, BAX/Bcl-2, and p-P38/t-P38 MAPK in WT IECs. U46619 increased apoptosis, caspase-3, and BAX/Bcl-2 in IECs which was attenuated by SP-A/D. SB203580 attenuates the LPS-induced increase in apoptosis, caspase-3, and BAX/Bcl-2 in WT IECs. Addition of SP-A or SP-D to SB203580 completely ameliorates LPS-induced apoptosis. The LPS-induced increase in TLR4 and CD14 expression is greater in IECs from SP-A/D KO mice and treatment of WT IECs with SP-A or SP-D prevents the LPS-induced increase in TLR4 and CD14. Conclusions: SP-A and SP-D attenuate LPS-induced increases in apoptosis, caspase-3, and BAX/Bcl-2 in IECs. Attenuation of LPS-induced activation of TLR4 and P38 MAPK signaling pathways represents potential mechanisms for the protective effects of SP-A/D on apoptosis.


PLOS ONE | 2018

Enteral administration of bacteria fermented formula in newborn piglets: A high fidelity model for necrotizing enterocolitis (NEC)

Shreyas Roy; Qinghe Meng; Benjamin Sadowitz; Michaela Kollisch-Singule; Natesh Yepuri; Joshua Satalin; Louis A. Gatto; Gary F. Nieman; Robert N. Cooney; David M. Clark

Objective To develop an animal model which replicates neonatal NEC and characterizes the importance of bacterial fermentation of formula and short chain fatty acids (SCFAs) in its pathogenesis. Background NEC is a severe form of intestinal inflammation in preterm neonates and current models do not reproduce the human condition. Methods Three groups of newborn piglets: Formula alone (FO), Bacteria alone (E.coli: BO) and E.coli-fermented formula (FF) were anesthetized, instrumented and underwent post-pyloric injection of formula, bacteria or fermented-formula. SCFA levels were measured by gas chromatography-mass spectrometry. At 6 h bowel appearance was assessed, histologic and molecular analysis of intestine were performed. Gut inflammation (p65 NF-κB, TLR4, TNF-α, IL-1β), apoptosis (cleaved caspase-3, BAX, apoptosis) and tight junction proteins (claudin-2, occludin) were measured. Results SCFAs were increased in FF. Small bowel from FF piglet’s demonstrated inflammation, coagulative necrosis and pneumatosis resembling human NEC. Histologic gut injury (injury score, mast cell activation) were increased by Bacteria, but more severe in FF piglets. Intestinal expression of p65 NF-κB, NF-κB activation, TNF-α and IL-1β were increased in BO and markedly increased in the FF group (P<0.05 vs. FO). Intestine from Bacteria piglets demonstrated increased apoptotic index, pro-apoptotic protein expression and decreased tight junction proteins. These changes were more severe in FF piglets. Conclusions Our piglet model demonstrates the findings of NEC in human neonates: systemic acidosis, intestinal inflammation, pneumatosis and portal venous gas. Bacteria alone can initiate intestinal inflammation, injury and apoptosis, but bacterial fermentation of formula generates SCFAs which contribute to the pathogenesis of NEC.


Journal of surgical case reports | 2018

Poorly differentiated signet ring cell carcinoma of pancreas masquerading as chronic pancreatitis

Natesh Yepuri; Rana Naous; Camille Richards; Mashaal Dhir; Ajay Jain

Abstract Pancreatic cancer is typically arises in the context of inflammation, and a surrounding area of pancreatitis is often present within the tumor microenvironment. Signet ring cell carcinoma (SRCC) is a rare variant of pancreatic adenocarcinoma. Pathologically, it presents either as single cells or loose clusters masquerading in the background of pancreatitis. Sampling of these inflammatory cells during biopsy can result in the incorrect diagnosis of pancreatitis. We report a case of SRCC of the pancreas which the diagnosis of cancer was delayed because multiple biopsies revealed only inflammatory changes with no obvious evidence of malignancy. This case highlights the fact that negative results with endoscopic ultrasound fine needle aspiration in SRCC can be misleading. A cancer diagnosis should still be considered despite findings of inflammatory pancreatitis if the clinical presentation is concerning for cancer (mass on CT scan).


Hpb Surgery | 2018

Nonoperative Management May Be a Viable Approach to Plexiform Neurofibroma of the Porta Hepatis in Patients with Neurofibromatosis-1

Natesh Yepuri; Rana Naous; Camille Richards; Dilip S. Kittur; Ajay Jain; Mashaal Dhir

Background Plexiform neurofibroma (PNF) in the porta hepatis (PH) is an unusual manifestation of neurofibromatosis-1 (NF-1). Resection is often recommended given the risk of malignant transformation. We encountered a challenging case in clinical practice which prompted us to report our findings and perform a systematic review on the management of these tumors. Methods We reported the case of a 31-year-old woman with NF-1 and PNF of the PH. PRISMA 2009 guidelines were followed for systematic review. Results Our patient was found to have unresectable disease at exploration. After >5 years of follow-up, she continued to have stable disease on imaging. We identified 12 studies/case reports including 10 adult and 6 pediatric patients with PNF of PH. None of the 7 adult patients with NF-1 and PNF of PH underwent a successful tumor resection. All pediatric patients were managed with surveillance alone. All but one pediatric patient had NF-1. None of the reported cases of PNF of PH had malignant transformation. Conclusion Our findings suggest that PNFs of PH in the setting of NF-1 are often unresectable and may have an indolent course. Surveillance alone may be a reasonable option in some patients; however, further studies are needed.


Endocrinology | 2018

α7 Nicotinic Acetylcholine Receptor Regulates the Function and Viability of L Cells

Dawei Wang; Qinghe Meng; Natesh Yepuri; Linlin Zhang; George G. Holz; Chunting Wang; Robert N. Cooney

Enteroendocrine L cells secrete the incretin hormone glucagon-like peptide-1 (GLP-1), and they also express the α7 nicotinic acetylcholine receptor (α7nAChR), which may regulate GLP-1 secretion. Here, GTS-21, a selective α7nAChR agonist, was used to examine the effect of α7nAChR activation in L-cell lines, mouse intestinal primary cell cultures, and C57BL/6 mice. GTS-21 stimulated GLP-1 secretion in vitro, and this effect was attenuated by an α7nAChR antagonist or by α7nAChR-specific small interfering RNA. Under in vitro cell culture conditions of glucotoxicity, GTS-21 restored GLP-1 secretion and improved L-cell viability while also acting in vivo to raise levels of circulating GLP-1 in mice. To assess potential signaling mechanisms underlying these actions of GTS-21, we first monitored Ca2+, cAMP, and phosphatidylinositol 3-kinase (PI3K) activity. As expected for a GLP-1 secretagogue promoting Ca2+ influx through α7nAChR cation channels, [Ca2+]i increased in response to GTS-21, but [cAMP]i was unchanged. Surprisingly, pharmacological inhibition of growth factor signaling pathways revealed that GTS-21 also acts on the PI3K-protein kinase B-mammalian target of rapamycin pathway to promote L-cell viability. Moreover, the Ca2+ chelator BAPTA-AM counteracted GTS-21‒stimulated PI3K activity, thereby indicating unexpected crosstalk of L-cell Ca2+ and growth factor signaling pathways. Collectively, these data demonstrate that α7nAChR activation enhances GLP-1 secretion by increasing levels of cytosolic Ca2+ while also revealing Ca2+- and PI3K-dependent processes of α7nAChR activation that promote L-cell survival.


AME Case Reports | 2018

High-grade malignant pancreatic neoplasm with sarcomatoid features

Natesh Yepuri; Napat Pruekprasert; Rana Naous

Sarcomatoid carcinoma is a rare and aggressive form that occur at diverse locations in the body such as upper respiratory tract, upper and lower digestive tracts, genitourinary tract, breast and thyroid glands. However, its occurrence in pancreas has been rarely reported. Sarcomatoid carcinoma of pancreas (SCP) is a high-grade epithelial malignancy composed predominantly of spindle cells often having features suggestive of epithelial derivation without features indicative of a specific line of mesenchymal differentiation. Its pathogenesis has not been elucidated. Microscopically, SCP comprises mostly anaplastic cells and is strikingly sarcoma-like in appearance. Confirmation of this disease is often based on the pathological diagnosis. We report a case that was incidentally found after a CT was done for worsening chronic back pain and the patient was found to have a pancreatic mass and a liver lesion. Endoscopic ultrasound (EUS)-guided liver biopsy revealed high grade malignant pancreatic neoplasm with sarcomatoid features. Further CT chest revealed bilateral lung nodules and PET scan revealed prominent bony metastases within vertebral bodies at L1, L2, and L3. The patient refused definitive treatment and succumbed to illness within 3 months.


Intensive Care Medicine Experimental | 2017

The role of high airway pressure and dynamic strain on ventilator-induced lung injury in a heterogeneous acute lung injury model

Sumeet Jain; Michaela Kollisch-Singule; Joshua Satalin; Quinn Searles; Luke Dombert; Osama Abdel-Razek; Natesh Yepuri; Antony Leonard; Angelika C. Gruessner; Penny Andrews; Fabeha Fazal; Qinghe Meng; Guirong Wang; Louis A. Gatto; Nader Habashi; Gary F. Nieman


Journal of Surgical Research | 2018

Protective effects of glutathione on oxidative injury induced by hydrogen peroxide in intestinal epithelial cells

Haitao Ren; Qinghe Meng; Natesh Yepuri; Xianjin Du; James Osei Sarpong; Robert N. Cooney


Trauma Surgery & Acute Care Open | 2017

Endovascular stent graft repair of an abdominal gunshot with liver and aortic injuries

Natesh Yepuri; Michael Costanza; Alex Helkin; Robert N. Cooney

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Robert N. Cooney

State University of New York Upstate Medical University

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Qinghe Meng

State University of New York Upstate Medical University

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Ajay Jain

State University of New York Upstate Medical University

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Mashaal Dhir

University of Pittsburgh

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Rana Naous

State University of New York Upstate Medical University

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Camille Richards

State University of New York Upstate Medical University

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Dilip S. Kittur

State University of New York Upstate Medical University

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Gary F. Nieman

State University of New York Upstate Medical University

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Guirong Wang

State University of New York Upstate Medical University

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Joshua Satalin

State University of New York Upstate Medical University

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