Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Nishikant Subhedar is active.

Publication


Featured researches published by Nishikant Subhedar.


Brain Research | 2005

Interaction between neuropeptide Y and alpha-melanocyte stimulating hormone in amygdala regulates anxiety in rats.

Dadasaheb M. Kokare; Manoj P. Dandekar; Chandrabhan T. Chopde; Nishikant Subhedar

Neuropeptide Y (NPY) and alpha-melanocyte stimulating hormone (alpha-MSH) have been implicated in pathophysiology of feeding and certain mood disorders, including anxiety and depression. Both the peptides are abundantly present in CNS, especially in the hypothalamus and amygdala. Although they are known to exert opposite effects, particularly with reference to anxiety, the underlying mechanisms are not known. We were interested in studying the interaction between these two peptides in the regulation of anxiety, within the framework of amygdala. We administered agents like NPY, alpha-MSH, selective melanocortin-4 receptor (MC4-R) antagonist HS014 and NPY Y1 receptor agonist [Leu(31), Pro(34)]-NPY, alone and in combinations, unilaterally in right amygdala of rats and measured the response using elevated plus maze test. While NPY and [Leu(31), Pro(34)]-NPY increased the time spent and number of entries in the open arms suggesting anxiolytic-like effects, alpha-MSH resulted in opposite responses. Anxiolytic-like effect of NPY (10 nM) or [Leu(31), Pro(34)]-NPY (5 nM) was significantly reduced following prior alpha-MSH (250 ng) administration. Co-administration of HS014 (1 nM) and NPY (5 nM) or [Leu(31), Pro(34)]-NPY (1 nM) at subeffective doses evoked synergistic anxiolysis. Since the closed arm entries displayed by animals of all the groups were in a similar range, the effects might not be ascribed to the changes in general locomotor activity. These results suggest that endogenous alpha-MSH and NPY containing systems may interact in the amygdala and regulate exploratory behavior in an animal model of anxiety.


General and Comparative Endocrinology | 1988

Immunocytochemical localization of LH-RH in the brain and pituitary of the catfish, Clarias batrachus (Linn.)

Nishikant Subhedar; N.S.Rama Krishna

An elaborate organization of luteinizing hormone-releasing hormone (LH-RH) immunoreactive (ir) cells and fibers was encountered in the olfactory system of Clarias batrachus. In addition to the ir structures in the olfactory nerve, peripheral area of the olfactory bulb, and the medial olfactory tract (MOT), ir cells and fibers were prominently seen in the lamellae of the olfactory organ. Perikarya showing varying degrees of intensity of immunoreaction were observed along the base of the forebrain in the nucleus preopticus basalis lateralis, nucleus preopticus periventricularis, nucleus preopticus, nucleus lateralis tuberis pars posterior, and the pituitary. Some cells were also noticed in the midbrain tegmentum. A well-defined system of ir fibers from the MOT penetrated the telencephalon and curved dorsocaudally into the pars supracommissuralis above the anterior commissure (AC); while some fibers decussate in the AC, others extended posteriorly into the diencephalon. A fairly dense network of beaded ir fibers was seen in the basal forebrain, conspicuous around the organum vasculosum laminae terminalis and caudally traceable as far as the neurohypophysis; some immunostained fibers appear to be directly contacting with the cells of the proximal pars distalis. Fibers were also witnessed in the optic chiasma and in the inner plexiform layer of the retina. Solitary fibers were noticed in certain circumscribed telencephalic areas, caudal hypothalamus, posterior commissure, midbrain tegmentum, cerebellum, and ventral medulla oblongata. The highly organized LH-RH containing system in C. batrachus is indicative of its elaborate role in synchronization of the reproductive processes and the environmental cues.


Neuropharmacology | 2010

Involvement of α-MSH in the social isolation induced anxiety- and depression-like behaviors in rat

Dadasaheb M. Kokare; Manoj P. Dandekar; Praful S. Singru; Girdhari Lal Gupta; Nishikant Subhedar

Although physical isolation of rats is known to cause anxiety- and depression-like symptoms, the underlying mechanisms are not fully understood. We have attempted to define the role of endogenous melanocortins (MC) in the manifestation of these symptoms. Weaning rats were socially isolated for 6 weeks and subjected to behavioral paradigms like elevated plus maze (EPM), social interaction, and forced swim test (FST). While socially isolated rats spent less time in social interaction, and showed significantly decreased activity in the open arms of the EPM, the immobility time in FST was significantly increased thus reflecting anxiety- and depression-like phenotypes. Intracerebroventricular injection of HS014 (5 or 10 nmol/rat), selective antagonist of MC4 receptors, attenuated these symptoms. This suggested the involvement of endogenous alpha-melanocyte stimulating hormone (alpha-MSH) in anxiety and depression. With a view to determining the neuroanatomical substrates in which the endogenous alpha-MSH may process the related information, profile of the peptide in paraventricular (PVN), arcuate (ARC), dorsomedial hypothalamic-dorsal (DMNd) and -ventral (DMNv) nuclei, and central nucleus of amygdala (CeA) was investigated with immunohistochemistry. While social isolation significantly reduced alpha-MSH-immunoreactivity profile in all these components, re-socialization of the socially isolated rats, over a period of 72 h, resulted in full recovery of the alpha-MSH-immunoreactivity profile; the symptoms of anxiety- and depression-like behaviors were also fully attenuated. We suggest that alpha-MSH in the PVN, ARC, DMNd, DMNv and CeA, acting via MC4 receptors, are involved in manifestation of affective disorders like anxiety and depression.


Neuropsychopharmacology | 2008

Importance of cocaine- and amphetamine-regulated transcript peptide in the central nucleus of amygdala in anxiogenic responses induced by ethanol withdrawal.

Manoj P. Dandekar; Praful S. Singru; Dadasaheb M. Kokare; Ronald M. Lechan; Lars Thim; Jes Thorn Clausen; Nishikant Subhedar

We studied the involvement of cocaine- and amphetamine-regulated transcript peptide (CART) in the central nucleus of amygdala (CeA), lateral bed nucleus of the stria terminalis (BNSTl) and nucleus accumbens shell (AcbSh) in generation of ethanol withdrawal symptoms, with particular focus on anxiety-like behavior using a social interaction test. Administration of CART (54–102) into the lateral ventricle (50 and 100 ng) and bilaterally in the CeA (10 and 20 ng) caused a significant reduction in social interaction, suggesting an anxiogenic action of the peptide. Chronic ethanol treatment for 15 days followed by withdrawal precipitated an anxiogenic response at 24 h that was attenuated by intracerebroventricular (5 μl) and intra-CeA (1 μl) administration of antibodies against CART (1 : 500 dilution). An immunocytochemistry protocol was employed to study the response of the endogenous CART system in the CeA following chronic ethanol withdrawal. At 0 h ethanol withdrawal, CART immunoreactivity was apparent in few fibers and the profile was similar to that in the pair-fed control rats. Twenty-four hours following ethanol withdrawal, a highly significant increase (P<0.001) in CART immunoreactivity was noticed in the CeA, which returned to normal 48 and 72 h post-withdrawal. Similar doses of CART or CART antibody injected bilaterally into the BNSTl or AcbSh produced no response in the social interaction test. Furthermore, the CART immunoreactivity profile did not change at the post-withdrawal time points in each of these brain sites. We suggest that CART may mediate the early signs of anxiety-like behavior induced by ethanol withdrawal within the neuroanatomical framework of the CeA.


Neuropsychopharmacology | 2009

Cocaine- and Amphetamine-Regulated Transcript Peptide Plays a Role in the Manifestation of Depression: Social Isolation and Olfactory Bulbectomy Models Reveal Unifying Principles

Manoj P. Dandekar; Praful S. Singru; Dadasaheb M. Kokare; Nishikant Subhedar

We investigated the effect of cocaine- and amphetamine-regulated transcript (CART) peptide on depression-like behavior in socially isolated and olfactory bulbectomized (OBX) rats. Administration of CART (54–102) into the lateral ventricle (50–100 ng) or central nucleus of amygdala (CeA) (10–20 ng) caused significant decrease in immobility time in the forced swim test (FST) without influencing locomotion, suggesting antidepressant-like effect. Social isolation as well as OBX models were undertaken to produce depression-like conditions. Although isolation reared (6 weeks) rats showed significant increase in immobility time in FST, OBX animals exhibited hyperactivity (increase in the ambulation, rearing, grooming, and defecation scores) on day 14 in the open-field test. The isolation- or OBX-induced depression-like phenotypes were reversed following acute or subchronic treatment of CART, respectively, given via intracerebroventricular and intra-CeA routes. Drastic reduction in CART-immunoreactivity was observed in most cells in the paraventricular (PVN), arcuate and Edinger–Westphal nuclei of the socially isolated and OBX animals. Although the fibers in the PVN showed variable response, those in ARC and prefrontal cortex did not change. The CART-immunoreactive fibers in the locus coeruleus also showed highly significant reduction. However, dramatic increase in CART-immunoreactive fibers was noticed in the CeA in both the experimental models. The response by the cells and fibers in the periventricular area and perifornical nucleus in the OBX and socially isolated rats was variable. The study underscores the possibility that endogenous CART system might play a major role in mediating symptoms of depression.


Cell and Tissue Research | 1996

Neuropeptide Y in the forebrain and retina of the killifish, Fundulus heteroclitus.

Nishikant Subhedar; Joan Cerdá; Robin A. Wallace

Abstract.The organization of the neuropeptide Y (NPY)-immunoreactive system in the forebrain, pineal organ and retina of a biweekly spawning fish (Fundulus heteroclitus) was investigated. Immunoreactivity was encountered in neurons of the nucleus olfactoretinalis, in the large population of neurons in the floor of the telencephalon, and in the nucleus entopeduncularis. Isolated somata were encountered in the hypophysiotropic hypothalamic nuclei, viz., the nucleus preopticus periventricularis, nucleus preopticus, and nucleus lateralis tuberis. Immunoreactive somata were also seen in the nucleus dorsomedialis thalami. The olfactory bulb was abundantly innervated by NPY fibers. The telencephalon showed thick radiating processes basally and terminal fields with modest to high densities in the dorsal and lateral regions. NPY-immunoreactive fibers were also conspicuous in the preoptic area, suprachiasmatic nucleus, tuberal hypothalamus, pituitary gland, and paraventricular thalamic regions; discrete CSF-contacting sites were also encountered. Of special interest was the occurrence of NPY immunoreactivity in fibers of the pineal stalk and organ. In the retina, some amacrine cells displayed immunoreactivity, while the inner plexiform layer revealed a well-developed pattern of NPY fibers different from that previously described for the goldfish.


The Journal of Comparative Neurology | 2005

Neuropeptide Y in the forebrain of the adult male cichlid fish Oreochromis mossambicus: distribution, effects of castration and testosterone replacement.

Amul J. Sakharkar; Praful S. Singru; Koustav Sarkar; Nishikant Subhedar

We studied the organization of the neuropeptide Y (NPY)‐immunoreactive system in the forebrain of adult male cichlid fish Oreochromis mossambicus and its response to castration and testosterone replacement by using morphometric methods. Immunoreactivity for NPY was widely distributed in the forebrain, and the pattern generally resembled that in other teleosts. Whereas immunoreactivity was conspicuous in the ganglia of nervus terminalis (NT; or nucleus olfactoretinalis), a weak reaction was detected in some granule cells in the olfactory bulb and in the cells of area ventralis telencephali pars lateralis (Vl). Moderately to intensely immunoreactive cells were distinctly seen in the nucleus entopeduncularis (NE), nucleus preopticus (NPO), nucleus lateralis tuberis (NLT), paraventricular organ (PVO), and midbrain tegmentum (MT). NPY fibers were widely distributed in the forebrain. Castration for 10/15 days resulted in a drastic loss of immunoreactivity in the cells of NE (P < 0.001) and a significant decrease (P < 0.01) in their cell nuclear size. However, cell nuclei of the NT neurons showed a significant increase in size. A highly significant reduction in the NPY‐immunoreactive fiber density (P < 0.001) was observed in several areas of the forebrain. Although testosterone replacement reversed these changes, fibers in some areas showed supranormal responses. Immunoreactive cells in Vl, NPO, NLT, PVO, and MT and fiber density in some other areas did not respond to castration. We suggest that the NPY‐immunoreactive elements that respond to castration and testosterone replacement may serve as the substrate for processing the positive feedback action of the steroid hormone. J. Comp. Neurol. 489:148–165, 2005.


Pharmacology, Biochemistry and Behavior | 2003

GABAergic agents prevent alpha-melanocyte stimulating hormone induced anxiety and anorexia in rats

T.Lakshmi Rao; Dadasaheb M. Kokare; Sumit Sarkar; Rahul T. Khisti; Chandrabhan T. Chopde; Nishikant Subhedar

Alpha-melanocyte stimulating hormone (alpha-MSH) is a hypothalamic peptide believed to play a tonic inhibitory role in feeding and energy homeostasis. Systemic administration of alpha-MSH is known to produce anorexia and anxiety. Since synaptic contacts between gamma-aminobutyric acid (GABA)ergic terminals and alpha-MSH neurons in the hypothalamus have been reported, the present work was undertaken to refine our knowledge on the role of GABAergic systems in anxiety and anorexia induced by intracerebroventricular (icv) administration of alpha-MSH in rats. The anxiety was assessed by elevated plus maze, and spontaneous food consumption was monitored during dark cycle. Prior administration of diazepam and muscimol that promote the function of GABA(A) receptors reversed the anxiogenic response and decreased food intake elicited by alpha-MSH. In contrast, bicuculline, the GABA(A) receptor antagonist, not only enhanced the effects of alpha-MSH but also prevented the influence of GABAergic drugs on alpha-MSH-induced anorexia and anxiety. These findings suggest that alpha-MSH-induced anxiety and anorexia are due to its negative influence on GABAergic system.


Neuropharmacology | 2006

Participation of α-melanocyte stimulating hormone in ethanol-induced anxiolysis and withdrawal anxiety in rats

Dadasaheb M. Kokare; Chandrabhan T. Chopde; Nishikant Subhedar

Although recent reports underscore a close association between the ethanol consumption and the central melanocortin (MC) system in rats, neurobehavioral component of this association has not been explored. In this study, we investigated the role of alpha-melanocyte stimulating hormone (alpha-MSH) in ethanol (1.5-2 g/kg, i.p.) induced anxiolysis and anxiety-like behavior following withdrawal from prolonged ethanol (9% v/v ethanol, 15 days) consumption, using elevated plus maze (EPM) test in rats. While alpha-MSH (1-5 microg/rat, i.c.v.) showed dose-dependent anxiogenic-like effect, the MC4 receptor antagonist HS014 (1-10 nM/rat, i.c.v.) or antiserum against alpha-MSH (1:500-1:50 dilution, 5 microl/rat, i.c.v.) failed to produce any effect in the EPM test. The anxiolytic-like effect of ethanol was suppressed by central administration of alpha-MSH (0.5 microg/rat, i.c.v.). On the other hand, pretreatment with either HS014 (5 nM/rat, i.c.v.) or antiserum against alpha-MSH (1:100 dilution, 5 microl/rat, i.c.v.) enhanced anxiolytic action of ethanol. Moreover, ethanol withdrawal anxiety was markedly blocked by HS014 (1-10 nM/rat, i.c.v.). These results suggest that alpha-MSH may be implicated in ethanol-induced anxiolysis and withdrawal anxiety. These findings also suggest MC4 receptors as possible therapeutic target for development of drugs to address the ethanol withdrawal-related conditions.


Peptides | 2014

CART in the brain of vertebrates: circuits, functions and evolution.

Nishikant Subhedar; Kartik T. Nakhate; Manoj A. Upadhya; Dadasaheb M. Kokare

Cocaine- and amphetamine-regulated transcript peptide (CART) with its wide distribution in the brain of mammals has been the focus of considerable research in recent years. Last two decades have witnessed a steady rise in the information on the genes that encode this neuropeptide and regulation of its transcription and translation. CART is highly enriched in the hypothalamic nuclei and its relevance to energy homeostasis and neuroendocrine control has been understood in great details. However, the occurrence of this peptide in a range of diverse circuitries for sensory, motor, vegetative, limbic and higher cortical areas has been confounding. Evidence that CART peptide may have role in addiction, pain, reward, learning and memory, cognition, sleep, reproduction and development, modulation of behavior and regulation of autonomic nervous system are accumulating, but an integration has been missing. A steady stream of papers has been pointing at the therapeutic potentials of CART. The current review is an attempt at piecing together the fragments of available information, and seeks meaning out of the CART elements in their anatomical niche. We try to put together the CART containing neuronal circuitries that have been conclusively demonstrated as well as those which have been proposed, but need confirmation. With a view to finding out the evolutionary antecedents, we visit the CART systems in sub-mammalian vertebrates and seek the answer why the system is shaped the way it is. We enquire into the conservation of the CART system and appreciate its functional diversity across the phyla.

Collaboration


Dive into the Nishikant Subhedar's collaboration.

Top Co-Authors

Avatar

Dadasaheb M. Kokare

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Kartik T. Nakhate

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Manoj A. Upadhya

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Amul J. Sakharkar

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Manoj P. Dandekar

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Chandrabhan T. Chopde

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Ashish P. Bharne

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

Minakshi Mazumdar

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Top Co-Authors

Avatar

N.S.Rama Krishna

Rashtrasant Tukadoji Maharaj Nagpur University

View shared research outputs
Researchain Logo
Decentralizing Knowledge