product summary
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company name :
ImmunoStar
product type :
antibody
product name :
CCK-8 (Cholecystokinin Octapeptide) Antibody
catalog :
20078
quantity :
100 µL
price :
275.00 USD
clonality :
polyclonal
host :
rabbit
conjugate :
nonconjugated
reactivity :
mouse, rat
application :
immunohistochemistry, immunocytochemistry
more info or order :
citations: 133
Published Application/Species/Sample/DilutionReference
  • immunohistochemistry; rat; 1:1000; loading ...; fig 2b
Calakos K, Blackman D, Schulz A, Bauer E. Distribution of type I corticotropin-releasing factor (CRF1) receptors on GABAergic neurons within the basolateral amygdala. Synapse. 2017;71: pubmed publisher
Lübkemann R, Eberhardt J, Röhl F, Janitzky K, Nullmeier S, Stork O, et al. Identification and Characterization of GABAergic Projection Neurons from Ventral Hippocampus to Amygdala. Brain Sci. 2015;5:299-317 pubmed publisher
Riccio A, Li Y, Tsvetkov E, Gapon S, Yao G, Smith K, et al. Decreased anxiety-like behavior and G?q/11-dependent responses in the amygdala of mice lacking TRPC4 channels. J Neurosci. 2014;34:3653-67 pubmed publisher
Li X, Yu K, Zhang Z, Sun W, Yang Z, Feng J, et al. Cholecystokinin from the entorhinal cortex enables neural plasticity in the auditory cortex. Cell Res. 2014;24:307-30 pubmed publisher
Schmidt M, Horvath S, Ebert P, Norris J, Seeley E, Brown J, et al. Modulation of behavioral networks by selective interneuronal inactivation. Mol Psychiatry. 2014;19:580-7 pubmed publisher
Gualtieri F, Marinelli C, Longo D, Pugnaghi M, Nichelli P, Meletti S, et al. Hypoxia markers are expressed in interneurons exposed to recurrent seizures. Neuromolecular Med. 2013;15:133-46 pubmed publisher
Mendieta Zerón H, Larrad Jiménez A, Burrell M, Rodríguez M, Da Boit K, Fruhbeck G, et al. Biliopancreatic diversion induces villi elongation and cholecystokinin and ghrelin increase. Diabetes Metab Syndr. 2011;5:66-70 pubmed publisher
Vigers A, Amin D, Talley Farnham T, Gorski J, Xu B, Jones K. Sustained expression of brain-derived neurotrophic factor is required for maintenance of dendritic spines and normal behavior. Neuroscience. 2012;212:1-18 pubmed publisher
Morin L, Hefton S, Studholme K. Neurons identified by NeuN/Fox-3 immunoreactivity have a novel distribution in the hamster and mouse suprachiasmatic nucleus. Brain Res. 2011;1421:44-51 pubmed publisher
Simmons D, Yahr P. Distribution of catecholaminergic and peptidergic cells in the gerbil medial amygdala, caudal preoptic area and caudal bed nuclei of the stria terminalis with a focus on areas activated at ejaculation. J Chem Neuroanat. 2011;41:13-9 pubmed publisher
Zagami C, Stifani S. Molecular characterization of the mouse superior lateral parabrachial nucleus through expression of the transcription factor Runx1. PLoS ONE. 2010;5:e13944 pubmed publisher
Orita S, Ohtori S, Koshi T, Yamashita M, Yamauchi K, Inoue G, et al. The effects of risedronate and exercise on osteoporotic lumbar rat vertebrae and their sensory innervation. Spine (Phila Pa 1976). 2010;35:1974-82 pubmed publisher
Benini R, Longo D, Biagini G, Avoli M. Perirhinal cortex hyperexcitability in pilocarpine-treated epileptic rats. Hippocampus. 2011;21:702-13 pubmed publisher
Constantin S, Klenke U, Wray S. The calcium oscillator of GnRH-1 neurons is developmentally regulated. Endocrinology. 2010;151:3863-73 pubmed publisher
LeSauter J, Bhuiyan T, Shimazoe T, Silver R. Circadian trafficking of calbindin-ir in fibers of SCN neurons. J Biol Rhythms. 2009;24:488-96 pubmed publisher
Hamanaka Y, Tanaka S, Numata H, Shiga S. Morphological characterization of neurons projecting to the ring gland in the larval blow fly, Protophormia terraenovae. Zoolog Sci. 2009;26:227-37 pubmed publisher
Truitt W, Johnson P, Dietrich A, Fitz S, Shekhar A. Anxiety-like behavior is modulated by a discrete subpopulation of interneurons in the basolateral amygdala. Neuroscience. 2009;160:284-94 pubmed publisher
Mascagni F, Muly E, Rainnie D, McDonald A. Immunohistochemical characterization of parvalbumin-containing interneurons in the monkey basolateral amygdala. Neuroscience. 2009;158:1541-50 pubmed publisher
Aunapuu M, Roosaar P, Järveots T, Kurrikoff K, Koks S, Vasar E, et al. Altered renal morphology in transgenic mice with cholecystokinin overexpression. Transgenic Res. 2008;17:1079-89 pubmed publisher
Kim J, Kang S, Han S, Shim I. Comparison of the antiobesity effects of the protopanaxadiol- and protopanaxatriol-type saponins of red ginseng. Phytother Res. 2009;23:78-85 pubmed publisher
Giacobini P, Wray S. Prenatal expression of cholecystokinin (CCK) in the central nervous system (CNS) of mouse. Neurosci Lett. 2008;438:96-101 pubmed publisher
Desai S, Loomis Z, Pugh Bernard A, Schrunk J, Doyle M, Minic A, et al. Nkx2.2 regulates cell fate choice in the enteroendocrine cell lineages of the intestine. Dev Biol. 2008;313:58-66 pubmed
Nyeng P, Norgaard G, Kobberup S, Jensen J. FGF10 signaling controls stomach morphogenesis. Dev Biol. 2007;303:295-310 pubmed
Bullis J, Jones T, Poolos N. Reversed somatodendritic I(h) gradient in a class of rat hippocampal neurons with pyramidal morphology. J Physiol. 2007;579:431-43 pubmed
Giacobini P, Wray S. Cholecystokinin directly inhibits neuronal activity of primary gonadotropin-releasing hormone cells through cholecystokinin-1 receptor. Endocrinology. 2007;148:63-71 pubmed
Newton B, Phan D. Androgens regulate the sexually dimorphic production of co-contained galanin and cholecystokinin in lumbar laminae VII and X neurons. Brain Res. 2006;1099:88-96 pubmed
Zigman J, Jones J, Lee C, Saper C, Elmquist J. Expression of ghrelin receptor mRNA in the rat and the mouse brain. J Comp Neurol. 2006;494:528-48 pubmed
Shroyer N, Wallis D, Venken K, Bellen H, Zoghbi H. Gfi1 functions downstream of Math1 to control intestinal secretory cell subtype allocation and differentiation. Genes Dev. 2005;19:2412-7 pubmed
Arabadzisz D, Antal K, Parpan F, Emri Z, Fritschy J. Epileptogenesis and chronic seizures in a mouse model of temporal lobe epilepsy are associated with distinct EEG patterns and selective neurochemical alterations in the contralateral hippocampus. Exp Neurol. 2005;194:76-90 pubmed
Ku S, Lee H, Byun J, Seo B, Lee J. Changes of the gastric endocrine cells in the C57BL/6 mouse after implantation of murine lung carcinoma: an immunohistochemical quantitative study. World J Gastroenterol. 2005;11:1317-23 pubmed
Ku S, Lee J, Lee H. Immunohistochemical study on the endocrine cells in gut of the stomachless teleost, Zacco platypus (Cyprinidae). Anat Histol Embryol. 2004;33:212-9 pubmed
Giacobini P, Kopin A, Beart P, Mercer L, Fasolo A, Wray S. Cholecystokinin modulates migration of gonadotropin-releasing hormone-1 neurons. J Neurosci. 2004;24:4737-48 pubmed
Hioki H, Fujiyama F, Nakamura K, Wu S, Matsuda W, Kaneko T. Chemically specific circuit composed of vesicular glutamate transporter 3- and preprotachykinin B-producing interneurons in the rat neocortex. Cereb Cortex. 2004;14:1266-75 pubmed
Wunderlich G, Rotzinger S, Bush D, DeSousa N, Vaccarino F. Cholecystokinin modulation of locomotor behavior in rats is sensitized by chronic amphetamine and chronic restraint stress exposure. Brain Res. 2004;1001:95-107 pubmed
Wegner F, Hartig W, Bringmann A, Grosche J, Wohlfarth K, Zuschratter W, et al. Diffuse perineuronal nets and modified pyramidal cells immunoreactive for glutamate and the GABA(A) receptor alpha1 subunit form a unique entity in rat cerebral cortex. Exp Neurol. 2003;184:705-14 pubmed
Polston E, Simerly R. Sex-specific patterns of galanin, cholecystokinin, and substance P expression in neurons of the principal bed nucleus of the stria terminalis are differentially reflected within three efferent preoptic pathways in the juvenile rat. J Comp Neurol. 2003;465:551-9 pubmed
Martin J, Sloviter R. Focal inhibitory interneuron loss and principal cell hyperexcitability in the rat hippocampus after microinjection of a neurotoxic conjugate of saporin and a peptidase-resistant analog of Substance P. J Comp Neurol. 2001;436:127-52 pubmed
Sloviter R, Ali Akbarian L, Horvath K, Menkens K. Substance P receptor expression by inhibitory interneurons of the rat hippocampus: enhanced detection using improved immunocytochemical methods for the preservation and colocalization of GABA and other neuronal markers. J Comp Neurol. 2001;430:283-305 pubmed
Del Rio J, Martinez A, Auladell C, Soriano E. Developmental history of the subplate and developing white matter in the murine neocortex. Neuronal organization and relationship with the main afferent systems at embryonic and perinatal stages. Cereb Cortex. 2000;10:784-801 pubmed
Taki K, Kaneko T, Mizuno N. A group of cortical interneurons expressing mu-opioid receptor-like immunoreactivity: a double immunofluorescence study in the rat cerebral cortex. Neuroscience. 2000;98:221-31 pubmed
Phan D, Newton B. Cholecystokinin-8-like immunoreactivity is sexually dimorphic in a midline population of rat lumbar neurons. Neurosci Lett. 1999;276:165-8 pubmed
Phan D, Newton B. Cholecystokinin-8-like-immunoreactive fibers in rat lumbosacral autonomic regions are sexually dimorphic and altered by a reduction of androgen receptors. J Chem Neuroanat. 1999;17:169-77 pubmed
Vigers A, Baquet Z, Jones K. Expression of neurotrophin-3 in the mouse forebrain: insights from a targeted LacZ reporter. J Comp Neurol. 2000;416:398-415 pubmed
Croll S, Chesnutt C, Greene N, Lindsay R, Wiegand S. Peptide immunoreactivity in aged rat cortex and hippocampus as a function of memory and BDNF infusion. Pharmacol Biochem Behav. 1999;64:625-35 pubmed
Ellenberger H, Smith F. Sulfated cholecystokinin octapeptide in the rat: pontomedullary distribution and modulation of the respiratory pattern. Can J Physiol Pharmacol. 1999;77:490-504 pubmed
Baltazar E, Kitamura N, Hondo E, Yamada J, Maala C, Simborio L. Immunohistochemical study of endocrine cells in the gastrointestinal tract of the Philippine carabao (Bubalus bubalis). Anat Histol Embryol. 1998;27:407-11 pubmed
Lança A, de Cabo C, Arifuzzaman A, Vaccarino F. Cholecystokinergic innervation of nucleus accumbens subregions. Peptides. 1998;19:859-68 pubmed
Won M, Wie M, Lee J, Jo S, Ko B, Oh Y. Distribution and characteristics of cholecystokinin-like immunoreactivity in the olfactory bulb of the cat. Neurosci Lett. 1997;225:105-8 pubmed
Gregg K, Bishop G. Peptide localization in the mouse inferior olive. J Chem Neuroanat. 1997;12:211-20 pubmed
Buller K, Day T. Involvement of medullary catecholamine cells in neuroendocrine responses to systemic cholecystokinin. J Neuroendocrinol. 1996;8:819-24 pubmed
Burrell M, Montuenga L, Garcia M, Villaro A. Detection of nitric oxide synthase (NOS) in somatostatin-producing cells of human and murine stomach and pancreas. J Histochem Cytochem. 1996;44:339-46 pubmed
German D, Liang C. Neuroactive peptides exist in the midbrain dopaminergic neurons that contain calbindin-D28k. Neuroreport. 1993;4:491-4 pubmed
Wang Y, Perrin D, Cutz E. Localization of cholecystokinin-like and calcitonin-like peptides in infant carotid bodies: a light- and electron-microscopic immunohistochemical study. Cell Tissue Res. 1993;272:169-74 pubmed
Orazzo C, Pieribone V, Ceccatelli S, Terenius L, Hokfelt T. CGRP-like immunoreactivity in A11 dopamine neurons projecting to the spinal cord and a note on CGRP-CCK cross-reactivity. Brain Res. 1993;600:39-48 pubmed
Martinez A, Burrell M, Kuijk M, Montuenga L, Treston A, Cuttitta F, et al. Localization of amidating enzymes (PAM) in rat gastrointestinal tract. J Histochem Cytochem. 1993;41:1617-22 pubmed
Doetsch G, Norelle A, Mark E, Standage G, Lu S, Lin R. Immunoreactivity for GAD and three peptides in somatosensory cortex and thalamus of the raccoon. Brain Res Bull. 1993;31:553-63 pubmed
Liu H, Chandler S, Beitz A, Shipley M, Behbehani M. Characterization of the effect of cholecystokinin (CCK) on neurons in the periaqueductal gray of the rat: immunocytochemical and in vivo and in vitro electrophysiological studies. Brain Res. 1994;642:83-94 pubmed
Balaguer L, Romano J, Ruiz Pesini P. Coexistence of serotonin and cholecystokinin in paraneurons of the foetal sheep lung. Histol Histopathol. 1994;9:49-51 pubmed
Caserta M. Neuropeptide Y immunoreactive neurons in murine trisomy 16 cortical cultures. Plasticity of expression and differentiation. Mol Chem Neuropathol. 1994;22:197-210 pubmed
Liu W, Shipley M. Intrabulbar associational system in the rat olfactory bulb comprises cholecystokinin-containing tufted cells that synapse onto the dendrites of GABAergic granule cells. J Comp Neurol. 1994;346:541-58 pubmed
Croll S, Wiegand S, Anderson K, Lindsay R, Nawa H. Regulation of neuropeptides in adult rat forebrain by the neurotrophins BDNF and NGF. Eur J Neurosci. 1994;6:1343-53 pubmed
Barrenechea M, Lopez J, Martinez A. Regulatory peptides in gastric endocrine cells of the rainbow trout Oncorhynchus mykiss: general distribution and colocalizations. Tissue Cell. 1994;26:309-21 pubmed
Scott S, Dinowitz S, Terhaar K, Sherlock D, Campbell M, Levine D. Cytochemical characteristics of neurons in the trigeminal mesencephalic nucleus of hatchling chicks. J Comp Neurol. 1994;350:302-10 pubmed
Smith R, Baker H, Greer C. Immunohistochemical analyses of the human olfactory bulb. J Comp Neurol. 1993;333:519-30 pubmed
Berk M, Smith S, Mullins L. Distribution, parabrachial region projection, and coexistence of neuropeptide and catecholamine cells of the nucleus of the solitary tract in the pigeon. J Comp Neurol. 1993;327:416-41 pubmed
Berk M, Smith S. Local and commissural neuropeptide-containing projections of the nucleus of the solitary tract to the dorsal vagal complex in the pigeon. J Comp Neurol. 1994;347:369-96 pubmed
El Bohy A, LaMotte C. Deafferentation-induced changes in neuropeptides of the adult rat dorsal horn following pronase injection of the sciatic nerve. J Comp Neurol. 1993;336:545-54 pubmed
Peters A, Miller M, Kimerer L. Cholecystokinin-like immunoreactive neurons in rat cerebral cortex. Neuroscience. 1983;8:431-48 pubmed
Mantyh P, Hunt S. Evidence for cholecystokinin-like immunoreactive neurons in the rat medulla oblongata which project to the spinal cord. Brain Res. 1984;291:49-54 pubmed
Fallon J, Hicks R, Loughlin S. The origin of cholecystokinin terminals in the basal forebrain of the rat: evidence from immunofluorescence and retrograde tracing. Neurosci Lett. 1983;37:29-35 pubmed
Delfs J, Zhu C, Dichter M. Localization of cholecystokinin-octapeptide-like-immunoreactivity in neurons cultured from rat cerebral cortex. Brain Res. 1984;293:93-9 pubmed
Fallon J, Wang C, Kim Y, Canepa N, Loughlin S, Seroogy K. Dopamine- and cholecystokinin-containing neurons of the crossed mesostriatal projection. Neurosci Lett. 1983;40:233-8 pubmed
Kohler C, CHAN PALAY V. The distribution of cholecystokinin-like immunoreactive neurons and nerve terminals in the retrohippocampal region in the rat and guinea pig. J Comp Neurol. 1982;210:136-46 pubmed
van der Kooy D, Hunt S, Steinbusch H, Verhofstad A. Separate populations of cholecystokinin and 5-hydroxytryptamine-containing neuronal cells in the rat dorsal raphe, and their contribution to the ascending raphe projections. Neurosci Lett. 1981;26:25-30 pubmed
Hamill G, Olschowka J, Lenn N, Jacobowitz D. The subnuclear distribution of substance P, cholecystokinin, vasoactive intestinal peptide, somatostatin, leu-enkephalin, dopamine-beta-hydroxylase, and serotonin in the rat interpeduncular nucleus. J Comp Neurol. 1984;226:580-96 pubmed
Maciewicz R, Phipps B, Grenier J, Poletti C. Edinger-Westphal nucleus: cholecystokinin immunocytochemistry and projections to spinal cord and trigeminal nucleus in the cat. Brain Res. 1984;299:139-45 pubmed
Ritchie T, Leonard R. Immunohistochemical studies on the distribution and origin of candidate peptidergic primary afferent neurotransmitters in the spinal cord of an elasmobranch fish, the Atlantic stingray (Dasyatis sabina). J Comp Neurol. 1983;213:414-25 pubmed
Buchan A, Grant S, Brown J, Freeman H. A quantitative study of enteric endocrine cells in celiac sprue. J Pediatr Gastroenterol Nutr. 1984;3:665-71 pubmed
Innis R, Aghajanian G. Cholecystokinin-containing and nociceptive neurons in rat Edinger-Westphal nucleus. Brain Res. 1986;363:230-8 pubmed
Harris K, Marshall P, Landis D. Ultrastructural study of cholecystokinin-immunoreactive cells and processes in area CA1 of the rat hippocampus. J Comp Neurol. 1985;233:147-58 pubmed
Skofitsch G, Zamir N, Helke C, Savitt J, Jacobowitz D. Corticotropin releasing factor-like immunoreactivity in sensory ganglia and capsaicin sensitive neurons of the rat central nervous system: colocalization with other neuropeptides. Peptides. 1985;6:307-18 pubmed
Larriva Sahd J, Gorski R, Micevych P. Cholecystokinin synapses in the sexually dimorphic central part of the medial preoptic nucleus. Exp Neurol. 1986;92:639-50 pubmed
Ono J. Localization and identification of neurons with cholecystokinin and gastrin-like immunoreactivity in wholemounts of Aplysia ganglia. Neuroscience. 1986;18:957-74 pubmed
Sahlin K. Gastrin/CCK-like immunoreactivity in Hatschek's groove of Branchiostoma lanceolatum (Cephalochordata). Gen Comp Endocrinol. 1988;70:436-41 pubmed
Cantera R. Serotonin and gastrin/cholecystokinin-like immunoreactive neurons in the larval retrocerebral complex of the blowfly Calliphora erythrocephala. Cell Tissue Res. 1988;253:425-33 pubmed
Oro A, Simerly R, Swanson L. Estrous cycle variations in levels of cholecystokinin immunoreactivity within cells of three interconnected sexually dimorphic forebrain nuclei. Evidence for a regulatory role for estrogen. Neuroendocrinology. 1988;47:225-35 pubmed
Seroogy K, Mehta A, Fallon J. Neurotensin and cholecystokinin coexistence within neurons of the ventral mesencephalon: projections to forebrain. Exp Brain Res. 1987;68:277-89 pubmed
Traurig H, Papka R, Rush M. Effects of capsaicin on reproductive function in the female rat: role of peptide-containing primary afferent nerves innervating the uterine cervix in the neuroendocrine copulatory response. Cell Tissue Res. 1988;253:573-81 pubmed
Roberts M, Speh J, Moore R. The central nervous system of Bulla gouldiana: peptide localization. Peptides. 1988;9:1323-34 pubmed
Basch P, Gupta B. Immunocytochemical localization of regulatory peptides in six species of trematode parasites. Comp Biochem Physiol C. 1988;91:565-70 pubmed
Matsutani S, Senba E, Tohyama M. Neuropeptide- and neurotransmitter-related immunoreactivities in the developing rat olfactory bulb. J Comp Neurol. 1988;272:331-42 pubmed
Hernanz A, Polanco I, Codoceo R, Lama R, Vazquez C. Gastrointestinal peptide profile in children with celiac disease. J Pediatr Gastroenterol Nutr. 1987;6:341-5 pubmed
Papka R, Traurig H, Klenn P. Paracervical ganglia of the female rat: histochemistry and immunohistochemistry of neurons, SIF cells, and nerve terminals. Am J Anat. 1987;179:243-57 pubmed
Block C, Hoffman G. Neuropeptide and monoamine components of the parabrachial pontine complex. Peptides. 1987;8:267-83 pubmed
Seroogy K, Brecha N, Gall C. Distribution of cholecystokinin-like immunoreactivity in the rat main olfactory bulb. J Comp Neurol. 1985;239:373-83 pubmed
Isacson O, Dawbarn D, Brundin P, Gage F, Emson P, Bjorklund A. Neural grafting in a rat model of Huntington's disease: striosomal-like organization of striatal grafts as revealed by acetylcholinesterase histochemistry, immunocytochemistry and receptor autoradiography. Neuroscience. 1987;22:481-97 pubmed
Krause W, Yamada J, Cutts J. Enteroendocrine cells in the developing opossum small intestine and colon. J Anat. 1989;162:83-96 pubmed
Ingram S, Krause R, Baldino F, Skeen L, Lewis M. Neuronal localization of cholecystokinin mRNA in the rat brain by using in situ hybridization histochemistry. J Comp Neurol. 1989;287:260-72 pubmed
Feher E, Burnstock G. Occurrence of FMRF amide-like immunoreactive nerve fibers in guinea pig small intestine. J Histochem Cytochem. 1989;37:1427-33 pubmed
Sithigorngul P, Cowden C, Guastella J, Stretton A. Generation of monoclonal antibodies against a nematode peptide extract: another approach for identifying unknown neuropeptides. J Comp Neurol. 1989;284:389-97 pubmed
Turrigiano G, Selverston A. Cholecystokinin-like peptide is a modulator of a crustacean central pattern generator. J Neurosci. 1989;9:2486-501 pubmed
McDonald A, Pearson J. Coexistence of GABA and peptide immunoreactivity in non-pyramidal neurons of the basolateral amygdala. Neurosci Lett. 1989;100:53-8 pubmed
Chun J, Shatz C. The earliest-generated neurons of the cat cerebral cortex: characterization by MAP2 and neurotransmitter immunohistochemistry during fetal life. J Neurosci. 1989;9:1648-67 pubmed
Seroogy K, Dangaran K, Lim S, Haycock J, Fallon J. Ventral mesencephalic neurons containing both cholecystokinin- and tyrosine hydroxylase-like immunoreactivities project to forebrain regions. J Comp Neurol. 1989;279:397-414 pubmed
Simerly R, Young B, Capozza M, Swanson L. Estrogen differentially regulates neuropeptide gene expression in a sexually dimorphic olfactory pathway. Proc Natl Acad Sci U S A. 1989;86:4766-70 pubmed
Takatsuji K, Tohyama M. The organization of the rat lateral geniculate body by immunohistochemical analysis of neuroactive substances. Brain Res. 1989;480:198-209 pubmed
Ju G, Swanson L, Simerly R. Studies on the cellular architecture of the bed nuclei of the stria terminalis in the rat: II. Chemoarchitecture. J Comp Neurol. 1989;280:603-21 pubmed
Matsutani S, Senba E, Tohyama M. Distribution of neuropeptidelike immunoreactivities in the guinea pig olfactory bulb. J Comp Neurol. 1989;280:577-86 pubmed
Kummer W. Retrograde neuronal labelling and double-staining immunohistochemistry of tachykinin- and calcitonin gene-related peptide-immunoreactive pathways in the carotid sinus nerve of the guinea pig. J Auton Nerv Syst. 1988;23:131-41 pubmed
Zahm D, Heimer L. Ventral striatopallidal parts of the basal ganglia in the rat: I. Neurochemical compartmentation as reflected by the distributions of neurotensin and substance P immunoreactivity. J Comp Neurol. 1988;272:516-35 pubmed
Molinari M, Hendry S, Jones E. Distributions of certain neuropeptides in the primate thalamus. Brain Res. 1987;426:270-89 pubmed
Kuwayama Y, Terenghi G, Polak J, Trojanowski J, Stone R. A quantitative correlation of substance P-, calcitonin gene-related peptide- and cholecystokinin-like immunoreactivity with retrogradely labeled trigeminal ganglion cells innervating the eye. Brain Res. 1987;405:220-6 pubmed
Kuwayama Y, Stone R. Cholecystokinin-like immunoreactivity occurs in ocular sensory neurons and partially co-localizes with substance P. Brain Res. 1986;381:266-74 pubmed
Nishi R, Willard A. Neurons dissociated from rat myenteric plexus retain differentiated properties when grown in cell culture. I. Morphological properties and immunocytochemical localization of transmitter candidates. Neuroscience. 1985;16:187-99 pubmed
Kuwayama Y, Stone R. Neuropeptide immunoreactivity of pericellular baskets in the guinea pig trigeminal ganglion. Neurosci Lett. 1986;64:169-72 pubmed
Seroogy K, Fallon J, Loughlin S, Leslie F. Few cortical cholecystokinin immunoreactive neurons have long projections. Exp Brain Res. 1985;59:533-42 pubmed
Kulmala H. Some enkephalin- or VIP-immunoreactive hippocampal pyramidal cells contain neurofibrillary tangles in the brains of aged humans and persons with Alzheimer's disease. Neurochem Pathol. 1985;3:41-51 pubmed
Leah J, Cameron A, Snow P. Neuropeptides in physiologically identified mammalian sensory neurones. Neurosci Lett. 1985;56:257-63 pubmed
Schotzinger R, Landis S. Postnatal development of autonomic and sensory innervation of thoracic hairy skin in the rat. A histochemical, immunocytochemical, and radioenzymatic study. Cell Tissue Res. 1990;260:575-87 pubmed
Klein C, Guillamondegui O, Krenek C, La Forte R, Coggeshall R. Do neuropeptides in the dorsal horn change if the dorsal root ganglion cell death that normally accompanies peripheral nerve transection is prevented?. Brain Res. 1991;552:273-82 pubmed
Sim L, Joseph S. Arcuate nucleus projections to brainstem regions which modulate nociception. J Chem Neuroanat. 1991;4:97-109 pubmed
Turrigiano G, Selverston A. Distribution of cholecystokinin-like immunoreactivity within the stomatogastric nervous systems of four species of decapod crustacea. J Comp Neurol. 1991;305:164-76 pubmed
McCarson K, Goldstein B. Time course of the alteration in dorsal horn substance P levels following formalin: blockade by naloxone. Pain. 1990;41:95-100 pubmed
Adams C, Fisher R. Sources of neostriatal cholecystokinin in the cat. J Comp Neurol. 1990;292:563-74 pubmed
Beal M, Swartz K, Finn S, Mazurek M, Kowall N. Neurochemical characterization of excitotoxin lesions in the cerebral cortex. J Neurosci. 1991;11:147-58 pubmed
Jacquin M, Beinfeld M, Chiaia N, Zahm D. Cholecystokinin concentrations and peptide immunoreactivity in the intact and deafferented medullary dorsal horn of the rat. J Comp Neurol. 1992;326:22-43 pubmed
Burrell M, Villaro A, Sesma P. Evidence for the colocalization of gastrin/CCK- and PYY/PP-immunoreactive substances in the small intestine of the lizard Podarcis hispanica: immunocytochemical and ultrastructural study. Gen Comp Endocrinol. 1992;88:40-9 pubmed
Beorlegui C, Martinez A, Sesma P. Some peptide-like colocalizations in endocrine cells of the pyloric caeca and the intestine of Oncorhynchus mykiss (Teleostei). Cell Tissue Res. 1992;269:353-7 pubmed
Welton J, Taylor R, Porter A, Roper S. Immunocytochemical survey of putative neurotransmitters in taste buds from Necturus maculosus. J Comp Neurol. 1992;324:509-21 pubmed
Kaneko T, Nakaya Y, Mizuno N. Paucity of glutaminase-immunoreactive nonpyramidal neurons in the rat cerebral cortex. J Comp Neurol. 1992;322:181-90 pubmed
Miller M. Migration of peptide-immunoreactive local circuit neurons to rat cingulate cortex. Cereb Cortex. 1992;2:444-55 pubmed
Westlund K, Lu Y, Werrbach Perez K, Hulsebosch C, Morgan B, Pizzo D, et al. Effects of nerve growth factor and acetyl-L-carnitine arginyl amide on the human neuronal line HCN-1A. Int J Dev Neurosci. 1992;10:361-73 pubmed
Battaglia G, Colacitti C, Bentivoglio M. The relationship of calbindin-containing neurons with substance P, Leu-enkephalin and cholecystokinin fibres: an immunohistochemical study in the rat thalamus. J Chem Neuroanat. 1992;5:453-64 pubmed
image
image 1 :
ImmunoStar 20078 image 1
Low magnification Immunohistochemical image of neurons staining for CCK-8 in the dorsal horn of the rat spinal cord (1), and in the rat hippocampus (2).
product information
Catalog # :
20078
Product Name :
CCK-8 (Cholecystokinin Octapeptide) Antibody
Product Type :
Antibody
Host Species :
Rabbit
Clonality :
Polyclonal
Size :
100 µL
PRICE :
275.00 USD
CrossReactivity :
Blowfly, Bubalus Bubalis (Water Buffalo), Cat, Chick, Decapod Crustacea, Gerbil, Guinea Pig, Hamster, Human, Lizard, Lobster, Mollusk, Monkey, Mouse, Mudpuppy (Necturus Maculosus), Pigeon, Rabbit, Raccoon, Rat, Sheep, Snail, Sting Ray, Tree Frog, Trout, Zacco Platypus (Minnow)
Immunogen :
Sulfated CCK-8 (26-33)
Applications :
Used in Electron Microscopy; Immunocytochemistry; Immunofluorescence; Immunohistochemistry.
Format - which column? :
Whole Serum
more info or order :
company information
ImmunoStar
P.O. Box 488
Hudson, WI 54016-0488
info@immunostar.com
http://www.immunostar.com
1-866-386-3500
headquarters: USA