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Dive into the research topics where Maninder Malik is active.

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Featured researches published by Maninder Malik.


British Journal of Pharmacology | 2015

The effects of sigma (σ1) receptor-selective ligands on muscarinic receptor antagonist-induced cognitive deficits in mice.

Maninder Malik; Claudia Rangel-Barajas; Nathalie Sumien; Chang Su; Meharvan Singh; Zhenglan Chen; Ren-Qi Huang; Johann Meunier; Tangui Maurice; Robert H. Mach; Robert R. Luedtke

Cognitive deficits in patients with Alzheimers disease, Parkinsons disease, traumatic brain injury and stroke often involve alterations in cholinergic signalling. Currently available therapeutic drugs provide only symptomatic relief. Therefore, novel therapeutic strategies are needed to retard and/or arrest the progressive loss of memory.


Journal of Neurochemistry | 2014

Characterization of [3H]LS-3-134, a Novel Arylamide Phenylpiperazine D3 Dopamine Receptor Selective Radioligand

Claudia Rangel-Barajas; Maninder Malik; Michelle Taylor; Kim A. Neve; Robert H. Mach; Robert R. Luedtke

LS‐3‐134 is a substituted N‐phenylpiperazine derivative that has been reported to exhibit: (i) high‐affinity binding (Ki value 0.2 nM) at human D3 dopamine receptors, (ii) > 100‐fold D3 versus D2 dopamine receptor subtype binding selectivity, and (iii) low‐affinity binding (Ki > 5000 nM) at sigma 1 and sigma 2 receptors. Based upon a forskolin‐dependent activation of the adenylyl cyclase inhibition assay, LS‐3‐134 is a weak partial agonist at both D2 and D3 dopamine receptor subtypes (29% and 35% of full agonist activity, respectively). In this study, [3H]‐labeled LS‐3‐134 was prepared and evaluated to further characterize its use as a D3 dopamine receptor selective radioligand. Kinetic and equilibrium radioligand binding studies were performed. This radioligand rapidly reaches equilibrium (10–15 min at 37°C) and binds with high affinity to both human (Kd = 0.06 ± 0.01 nM) and rat (Kd = 0.2 ± 0.02 nM) D3 receptors expressed in HEK293 cells. Direct and competitive radioligand binding studies using rat caudate and nucleus accumbens tissue indicate that [3H]LS‐3‐134 selectively binds a homogeneous population of binding sites with a dopamine D3 receptor pharmacological profile. Based upon these studies, we propose that [3H]LS‐3‐134 represents a novel D3 dopamine receptor selective radioligand that can be used for studying the expression and regulation of the D3 dopamine receptor subtype.


Bioorganic & Medicinal Chemistry Letters | 2015

Synthesis, pharmacological evaluation and molecular modeling studies of triazole containing dopamine D3 receptor ligands.

Xin Peng; Qi Wang; Yogesh Mishra; Jinbin Xu; David E. Reichert; Maninder Malik; Michelle Taylor; Robert R. Luedtke; Robert H. Mach

A series of 2-methoxyphenyl piperazine analogues containing a triazole ring were synthesized and their in vitro binding affinities at human dopamine D2 and D3 receptors were evaluated. Compounds 5b, 5c, 5d, and 4g, demonstrate high affinity for dopamine D3 receptors and moderate selectivity for the dopamine D3 versus D2 receptor subtypes. To further examine their potential as therapeutic agents, their intrinsic efficacy at both D2 and D3 receptors was determined using a forskolin-dependent adenylyl cyclase inhibition assay. Affinity at dopamine D4 and serotonin 5-HT1A receptors was also determined. In addition, information from previous molecular modeling studies of the binding of a panel of 163 structurally-related benzamide analogues at dopamine D2 and D3 receptors was applied to this series of compounds. The results of the modeling studies were consistent with our previous experimental data. More importantly, the modeling study results explained why the replacement of the amide linkage with the hetero-aromatic ring leads to a reduction in the affinity of these compounds at D3 receptors.


Bioorganic & Medicinal Chemistry | 2013

Evaluation of N-Phenyl Homopiperazine Analogs as Potential Dopamine D3 Receptor Selective Ligands

Aixiao Li; Yogesh Mishra; Maninder Malik; Qi Wang; Shihong Li; Michelle Taylor; David E. Reichert; Robert R. Luedtke; Robert H. Mach

A series of N-(2-methoxyphenyl)homopiperazine analogs was prepared and their affinities for dopamine D2, D3, and D4 receptors were measured using competitive radioligand binding assays. Several ligands exhibited high binding affinity and selectivity for the D3 dopamine receptor compared to the D2 receptor subtype. Compounds 11a, 11b, 11c, 11f, 11j and 11k had K(i) values ranging from 0.7 to 3.9 nM for the D3 receptor with 30- to 170-fold selectivity for the D3 versus D2 receptor. Calculated logP values (logP=2.6-3.6) are within the desired range for passive transport across the blood-brain barrier. When the binding and the intrinsic efficacy of these phenylhomopiperazines was compared to those of previously published phenylpiperazine analogues, it was found that (a) affinity at D2 and D3 dopamine receptors generally decreased, (b) the D3 receptor binding selectivity (D2:D3 K(i) value ratio) decreased and, (c) the intrinsic efficacy, measured using a forskolin-dependent adenylyl cyclase inhibition assay, generally increased.


Pharmacology, Biochemistry and Behavior | 2016

The effect of the sigma-1 receptor selective compound LS-1-137 on the DOI-induced head twitch response in mice

Maninder Malik; Claudia Rangel-Barajas; Robert H. Mach; Robert R. Luedtke

Several receptor mediated pathways have been shown to modulate the murine head twitch response (HTR). However, the role of sigma receptors in the murine (±)-2,5-dimethoxy-4-iodoamphetamine (DOI)-induced HTR has not been previously investigated. We examined the ability of LS-1-137, a novel sigma-1 vs. sigma-2 receptor selective phenylacetamide, to modulate the DOI-induced HTR in DBA/2J mice. We also assessed the in vivo efficacy of reference sigma-1 receptor antagonists and agonists PRE-084 and PPCC. The effect of the sigma-2 receptor selective antagonist RHM-1-86 was also examined. Rotarod analysis was performed to monitor motor coordination after LS-1-137 administration. Radioligand binding techniques were used to determine the affinity of LS-1-137 at 5-HT2A and 5-HT2C receptors. LS-1-137 and the sigma-1 receptor antagonists haloperidol and BD 1047 were able to attenuate a DOI-induced HTR, indicating that LS-1-137 was acting in vivo as a sigma-1 receptor antagonist. LS-1-137 did not compromise rotarod performance within a dose range capable of attenuating the effects of DOI. Radioligand binding studies indicate that LS-1-137 exhibits low affinity binding at both 5-HT2A and 5-HT2C receptors. Based upon the results from these and our previous studies, LS-1-137 is a neuroprotective agent that attenuates the murine DOI-induced HTR independent of activity at 5-HT2 receptor subtypes, D2-like dopamine receptors, sigma-2 receptors and NMDA receptors. LS-1-137 appears to act as a sigma-1 receptor antagonist to inhibit the DOI-induced HTR. Therefore, the DOI-induced HTR can be used to assess the in vivo efficacy of sigma-1 receptor selective compounds.


MedChemComm | 2013

Synthesis and in vitro pharmacological evaluation of indolyl carboxylic amide analogues as D3 dopamine receptor selective ligands

Zhude Tu; Shihong Li; Aixiao Li; Michelle Taylor; David Ho; Maninder Malik; Robert R. Luedtke; Robert H. Mach

A series of substituted 1H-indolyl carboxylic acid amides that contain a N-(2-methoxyphenyl)piperazine or N-(2-fluoroethoxy)piperazine group were synthesized and their affinities for human dopamine D2, D3, and D4 receptors were determined. Two of these compounds, 14a and 14b, displayed high binding affinity at D3 (Ki = 0.18 and 0.4 nM, respectively), and selectivity for D3vs. D2 receptors (87-fold and 60-fold, respectively). These two compounds had low binding affinity at D4 receptors and σ receptor sites. The intrinsic activity of these compounds at D2 and D3 receptors was determined using a forskolin-dependent adenylyl cyclase inhibition assay; both 14a and 14b were found to be partial agonists. Furthermore, for compound 14a, the log D value of 2.85 suggested it has suitable lipophilicity for crossing the blood-brain-barrier.


Neuropharmacology | 2014

Pharmacological modulation of abnormal involuntary DOI-induced head twitch response in male DBA/2J mice: I. Effects of D2/D3 and D2 dopamine receptor selective compounds

Claudia Rangel-Barajas; Maninder Malik; Suwanna Vangveravong; Robert H. Mach; Robert R. Luedtke


Neuropharmacology | 2015

Pharmacological modulation of abnormal involuntary DOI-induced head twitch response movements in male DBA/2J mice: II. Effects of D3 dopamine receptor selective compounds.

Claudia Rangel-Barajas; Maninder Malik; Robert H. Mach; Robert R. Luedtke


Archive | 2014

THE SIGMA 1 RECEPTOR SELECTIVE LIGAND LS-1-1-137 ATTENUATES THE 2,5-DIMETHOXYIODOAMPHETAMINE - INDUCED HEAD TWITCH RESPONSE.

Maninder Malik; Claudia Rangel-Barajas; Robert H. Mach; Robert R. Luedtke


Archive | 2014

Pharmacological Assessment of Novel Phenylacetamide as a Sigma 1 Receptor Ligand

Maninder Malik

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Robert H. Mach

University of Pennsylvania

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Robert R. Luedtke

University of North Texas Health Science Center

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Claudia Rangel-Barajas

University of North Texas Health Science Center

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Michelle Taylor

University of North Texas Health Science Center

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Aixiao Li

Washington University in St. Louis

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David E. Reichert

Washington University in St. Louis

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Meharvan Singh

University of North Texas Health Science Center

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Nathalie Sumien

University of North Texas Health Science Center

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Qi Wang

Washington University in St. Louis

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Shihong Li

Washington University in St. Louis

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