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Dive into the research topics where Nicholas Franki is active.

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Featured researches published by Nicholas Franki.


Journal of Immunology | 2002

Role of P38 Mitogen-Activated Protein Kinase Phosphorylation and Fas-Fas Ligand Interaction in Morphine-Induced Macrophage Apoptosis

Pravin C. Singhal; Madhu Bhaskaran; Jaimita Patel; Kalpesh Patel; Balakuntalam S. Kasinath; Senthil Duraisamy; Nicholas Franki; Krishna Reddy; Aditi A. Kapasi

In this study, we evaluated the molecular mechanisms involved in morphine-induced macrophage apoptosis. Both morphine and TGF-β promoted P38 mitogen-activated protein kinase (MAPK) phosphorylation, and this phosphorylation was inhibited by SB 202190 as well as by SB 203580. Anti-TGF-β Ab as well as naltrexone (an opiate receptor antagonist) inhibited morphine-induced macrophage P38 MAPK phosphorylation. Anti-TGF-β Ab also attenuated morphine-induced p53 as well as inducible NO synthase expression; in contrast, NG-nitro-l-arginine methyl ester, an inhibitor of NO synthase, inhibited morphine-induced P38 MAPK phosphorylation and Bax expression. Morphine also enhanced the expression of both Fas and Fas ligand (FasL), whereas anti-FasL Ab prevented morphine-induced macrophage apoptosis. Moreover, naltrexone inhibited morphine-induced FasL expression. In addition, macrophages either deficient in FasL or lacking p53 showed resistance to the effect of morphine. Inhibitors of both caspase-8 and caspase-9 partially prevented the apoptotic effect of morphine on macrophages. In addition, caspase-3 inhibitor prevented morphine-induced macrophage apoptosis. These findings suggest that morphine-induced macrophage apoptosis proceeds through opiate receptors via P38 MAPK phosphorylation. Both TGF-β and inducible NO synthase play an important role in morphine-induced downstream signaling, which seems to activate proteins involved in both extrinsic (Fas and FasL) and intrinsic (p53 and Bax) cell death pathways.


American Journal of Nephrology | 2008

Angiotensin II Infusion Induces Nephrin Expression Changes and Podocyte Apoptosis

Junya Jia; Guohua Ding; Jili Zhu; Cheng Chen; Wei Liang; Nicholas Franki; Pravin C. Singhal

Background/Aim: In in vitro studies, angiotensin (Ang) II has been demonstrated to promote podocyte apoptosis. The present study evaluates the effects of Ang II infusion in rats on podocyte nephrin expression and apoptosis and the molecular mechanisms involved in Ang II-induced proteinuria and mesangial expansion. Methods: Sprague-Dawley rats were randomly assigned to receive either normal saline or Ang II (400 ng·kg–1·min–1) by means of a mini-osmotic pump for variable time periods. Systolic blood pressure and urinary protein and albumin excretion rate measurements were carried out on days 7, 14, 21, and 28. The animals were sacrificed on days 14 and 28 and evaluated for serum creatinine, renal pathological changes, podocyte apoptosis, renal nephrin mRNA, and protein expression. Results: The Ang II-infused rats developed hypertension and proteinuria. On day 14, the Ang II-infused rats showed narrowing of the slit diaphragm, an increase in podocyte nephrin mRNA and protein expression, and alterations in its distribution along the foot processes. On day 28, the Ang II-infused rats demonstrated the presence of apoptotic podocytes and decreased nephrin mRNA and protein expression. There was a negative correlation between nephrin expression and the numbers of apoptotic podocytes (r = –0.63, p < 0.05). Conclusion: These results suggest that changes in nephrin expression may play a role in the pathogenesis of Ang II-induced podocyte apoptosis.


Advances in Experimental Medicine and Biology | 2002

Opiates Promote T Cell Apoptosis Through JNK and Caspase Pathway

Pravin C. Singhal; Aditi Kapasi; Krishna Reddy; Nicholas Franki

Opiate addicts are prone to recurrent infections. In the present study we evaluated the molecular mechanism of opiate-induced T cell apoptosis. Both morphine and DAGO ([D-Ala2,N-Me-Phe4,Gly5-ol]enkephalin) enhanced T cell apoptosis. Morphine as well as DAGO activated c-Jun NH2-terminal kinase (JNK) in T cells. Moreover, opiates increased the expression of ATF-2. a specific substrate for JNK and P38 mitogen activated kinases (MAPK). Furthermore, opiates attenuated extracellular signal related kinase (ERK) in T cells. Both morphine and DAGO cleaved pro-caspases 8, 9, and 10 and generated caspases 8, 9 and 10 (active products). Morphine as well as DAGO also cleaved poly-(ADP-ribose) polymerase (PARP) into 116 and 85 kD proteins indicating the activation of caspase-3. These results suggest that opiate-induced T cell apoptosis may be mediated through the JNK cascade and activation of caspases 8 and 3.


American Journal of Physiology-renal Physiology | 2002

Angiotensin II induces apoptosis in rat glomerular epithelial cells

Guohua Ding; Krishna Reddy; Aditi A. Kapasi; Nicholas Franki; Nora Gibbons; Balakuntalam S. Kasinath; Pravin C. Singhal


Experimental and Molecular Pathology | 2001

Puromycin Aminonucleoside Induces Glomerular Epithelial Cell Apoptosis

Vibha Sanwal; Manish Pandya; Madhu Bhaskaran; Nicholas Franki; Krishna Reddy; Guohua Ding; Aditi Kapasi; Elsa Valderrama; Pravin C. Singhal


Journal of Investigative Medicine | 2000

Transforming growth factor beta induces mesangial cell apoptosis through NO- and p53-dependent and -independent pathways.

Patel P; Varghese E; Ding G; Fan S; Kapasi A; Krishna Reddy; Nicholas Franki; Nahar N; Pravin C. Singhal


Journal of Investigative Medicine | 1997

Age and sex modulate renal expression of SGP-2 and transglutaminase and apoptosis of splenocytes, thymocytes, and macrophages.

Pravin C. Singhal; Krishna Reddy; Nicholas Franki; Sanwal; Kapasi A; Gibbons N; Mattana J; Valderrama E


Journal of Investigative Medicine | 1998

HIV-1 gp120 envelope protein and morphine-tubular cell interaction products modulate kidney fibroblast proliferation.

Pravin C. Singhal; Sagar S; Krishna Reddy; Sharma P; Ranjan R; Nicholas Franki


Journal of Investigative Medicine | 1998

Simulated glomerular hypertension promotes mesangial cell apoptosis and expression of cathepsin-B and SGP-2.

Pravin C. Singhal; Gibbons N; Nicholas Franki; Krishna Reddy; Sharma P; Mattana J; Wagner Jd; Bansal


Journal of Investigative Medicine | 1998

Matrix-mesangial cell interaction modulates migration of macrophages.

Pravin C. Singhal; Nicholas Franki; Gibbons N; Krishna Reddy

Collaboration


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Pravin C. Singhal

North Shore-LIJ Health System

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Krishna Reddy

North Shore-LIJ Health System

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Gibbons N

North Shore-LIJ Health System

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Aditi A. Kapasi

North Shore-LIJ Health System

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Aditi Kapasi

Long Island Jewish Medical Center

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Madhu Bhaskaran

North Shore-LIJ Health System

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Mattana J

North Shore-LIJ Health System

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Sharma P

North Shore-LIJ Health System

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