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1.
Int. j. morphol ; 40(1): 242-250, feb. 2022. ilus, tab
Article in English | LILACS | ID: biblio-1385577

ABSTRACT

SUMMARY: In the present study, we aimed to determine the localization and distribution of entero-endocrine cells in the gastrointestinal tract by immunohistochemical methods and understand the structure of the glycoproteins elaborated by the epithelium the digestive tract regions by histochemical methods. The nine sparrowhawks were euthanized, and gastrointestinal tract tissues were removed and fixed in formalin. The gastrointestinal tract sections were stained with immunohistochemical and histochemical techniques to evaluate the enteroendocrine cells and histomorphometric analysis. The results showed that the numbers of somatostatin in the ventriculus, gastrin in the proventriculus, serotonin in the duodenum and jejunum immunopositivity are higher, remaining segments of the gastrointestinal tract are detected slight positivity in the glucagon, gastrin, serotonin, and somatostatin. In conclusion, some endocrine cells localization and distribution and histomorphometry, and goblet cell counts were revealed in the gastrointestinal tract of the sparrowhawks.


RESUMEN: El objetivo del presente estudio fue determinar la localización y distribución de células enteroendocrinas en el tracto gastrointestinal de gavilán, a través de métodos inmunohistoquímicos y comprender la estructura de las glicoproteínas elaboradas por el epitelio de las regiones del tracto digestivo. Se sacrificaron nueve gavilanes y los tejidos del tracto gastrointestinal se extrajeron y se fijaron en formalina. Las secciones del tracto gastrointestinal se tiñeron con técnicas inmunohistoquímicas e histoquímicas para evaluar las células enteroendocrinas y se realizó análisis histo-morfométrico. Los re- sultados indicaron que los números de inmunopositividad de somatostatina en el ventrículo, gastrina en el proventrículo, serotonina en el duodeno y yeyuno son más altos, en los segmentos restantes del tracto gastrointestinal, se detecta además una ligera positividad de glucagón, gastrina, serotonina y somatostatina. En conclusión en el tracto gastrointestinal de gavilán se observó cierta localización y distribución de células endocrinas e histomorfometría, y recuentos de células caliciformes.


Subject(s)
Animals , Enteroendocrine Cells , Gastrointestinal Tract/cytology , Falconiformes , Immunohistochemistry
2.
Saudi Journal of Gastroenterology [The]. 2013; 19 (1): 3-15
in English | IMEMR | ID: emr-130105

ABSTRACT

Gastrointestinal [GI] motility function and its regulation is a complex process involving collaboration and communication of multiple cell types such as enteric neurons, interstitial cells of Cajal [ICC], and smooth muscle cells. Recent advances in GI research made a better understanding of ICC function and their role in the GI tract, and studies based on different types of techniques have shown that ICC, as an integral part of the GI neuromuscular apparatus, transduce inputs from enteric motor neurons, generate intrinsic electrical rhythmicity in phasic smooth muscles, and have a mechanical sensation ability. Absence or improper function of these cells has been linked to some GI tract disorders. This paper provides a general overview of ICC; their discovery, subtypes, function, locations in the GI tract, and some disorders associated with their loss or disease, and highlights some controversial issues with regard to the importance of ICC in the GI tract


Subject(s)
Humans , Gastrointestinal Tract/cytology , Interstitial Cells of Cajal/classification
3.
Int. j. morphol ; 30(4): 1389-1394, dic. 2012. ilus
Article in English | LILACS | ID: lil-670154

ABSTRACT

In order to further studying the relationship between the gastrointestinal endocrine cells and the hibernation of Chinese fire-bellied newt, histological techniques were used in this study to explore the distributed density and morphology of argentaffine cells in the digestive tract during hibernation and non-hibernation. The argentaffine cells could be observed throughout the digestive tract of Chinese fire-bellied newt during hibernation and non-hibernation and mainly distributed in the acinar epithelial cells, epithelial cells and intrinsic membrane. They had appeared in the shape of goblet, pyramid, ellipse, round, cone-shaped, spindle-shaped. The cytoplasm contains secretory granules at the basal regions with spherical nuclei in the basal regions. Most of them had processes in different directions, suggesting that the argentaffine cells have combined the function of endocrine and exocrine. The distribution density curves of argentaffine cells were generally wavelike during the two periods. It was highest in the body of stomach in hibernation, while in non-hibernation it was highest in the pyloric. Totally the density of argentaffine cells was higher in hibernation period than that in non-hibernation period. The results showed that the activity of the digestive tract was expectedly weakened during the hibernation, but the function of endocrine was actually strengthened.


Con el fin de promover el estudio de la relación entre las células endocrinas gastrointestinales y la hibernación del tritón vientre de fuego chino, fueron utilizados técnicas histológicas para explorar la densidad de distribuición y la morfología de las células argentafines en el tracto digestivo durante la hibernación y la no hibernación. Las células argentafines pudieron ser observadas en todo el tracto digestivo de tritón vientre de fuego chino durante la hibernación y no hibernación, y se distribuyeron principalmente en las células epiteliales acinares, células epiteliales y la membrana intrínseca. Aparecieron de forma caliciforme, piramidal, elíptica, redonda, cónica y de huso. El citoplasma contenía gránulos de secreción en las regiones basales con núcleos esféricos en esa región. La mayoría de ellos tenía procesos en diferentes direcciones, lo que sugiere que las células argentafines combinaron la función del sistema endocrino y exocrino. Las curvas de densidad de distribución de las células argentafines fueron generalmente ondulante durante los dos períodos. Esta fue más alta en el cuerpo del estómago en estado de hibernación, mientras que en la no hibernación fue mayor en el píloro. En total, la densidad de las células argentafines era mayor en el periodo de hibernación. Los resultados mostraron que la actividad del tracto digestivo se debilitó, como era de esperar, durante la hibernación, pero la función del sistema endocrino se fortaleció.


Subject(s)
Animals , Salamandridae , Gastrointestinal Tract/cytology , Enterochromaffin Cells , Hibernation
4.
Int. j. morphol ; 30(3): 916-923, Sept. 2012. ilus
Article in English | LILACS | ID: lil-665502

ABSTRACT

Serotonin is an important neurotransmitter in the central (CNS) and peripheral (PNS) nervous systems. It is involved in a variety of physiological processes both in the gut and in the CNS. The present study examined the distribution of serotonin containing enterochromaffin cells in the gastrointestinal tract (GIT) of a vomit competent species, the least shrew. These cells were easily recognized by their globular granules stained with the H&E and serotonin immune-positive stain. The immunoreactive enterochromaffin cells (IERCs) were mainly confined to the basal portion of the glandular epithelium and were distributed throughout the shrew stomach, small and large intestine. None was found to be associated with the mucosal epithelial lining. Moreover, their distribution and count varied in different regions of the GIT suggesting specific functions for these regions. The highest concentration of IERCs was found in the colon followed by the Jejunum. Appreciable numbers of IERCs were found in the stomach especially at the esophageo-gastric junction. The gastric location of the IERCs was mainly in the basal portion of the gland. However, some IERCs were associated with the parietal cells of the stomach. Two types of IERCs were observed: One with globular secretory granules in their apical portion of the cytoplasm which were located within the glandular epithelial cells facing the glandular lumen which release their secretions into the lumen; and the second were basally located, facing the lamina propria of the mucosa. Their secretory granules were not distinct in shape, and are most probably paracrine in their mode of secretions...


La serotonina es un importante neurotransmisor del sistema nervioso central (SNC) y periférico (SNP). Está implicado en una variedad de procesos fisiológicos, tanto en el intestino y el SNC. El presente estudio examinó la distribución de la serotonina contenida en las células enterocromafines del tracto gastrointestinal (TGI) de una especie competente al vómito, la musaraña enana. Estas células se reconocen fácilmente por sus gránulos globulares teñidas con H-E y la inmuno-tinción positiva para serotonina. Las células enterocromafines inmunorreactivas (CEI) se limitan principalmente a la parte basal del epitelio glandular y se distribuyeron por todo el estómago, intestino delgado e intestino grueso de la musaraña. Ninguna célula se encontró asociada al revestimiento epitelial mucoso. Además, su distribución y el recuento varió en diferentes regiones del TGI sugiriendo funciones específicas de estas regiones. La mayor concentración de CEI se encuentran en el colon seguido por el yeyuno. Números apreciables de CEI se encontraron en el estómago, especialmente en la unión esofago-gástrica. La ubicación de las CEI gástricas fue principalmente en la porción basal de la glándula. Sin embargo, algunas CEI se asociaron con las células parietales del estómago. Dos tipos de CEI se observaron, una con gránulos secretores globulares en su porción apical del citoplasma que se encuentra dentro de las células epiteliales glandulares que enfrenta el lumen glandular que liberan sus secreciones en el lumen, y el segundo se encuentra basalmente, frente a la lámina propia de la mucosa. Sus gránulos secretores no fueron diferentes en forma, y probablemente son más paracrinas en su modo de secreción...


Subject(s)
Animals , Enterochromaffin Cells , Shrews/anatomy & histology , Serotonin , Gastrointestinal Tract/cytology , Gastrointestinal Tract/ultrastructure , Colon/cytology , Colon/ultrastructure , Duodenum/cytology , Duodenum/ultrastructure , Stomach/cytology , Stomach/ultrastructure , Immunohistochemistry , Ileum/cytology , Ileum/ultrastructure , Microscopy, Electron , Jejunum/cytology , Jejunum/ultrastructure
5.
SQUMJ-Sultan Qaboos University Medical Journal. 2012; 12 (4): 411-421
in English | IMEMR | ID: emr-125999

ABSTRACT

Interstitial cells of Cajal [ICC] are specialised cells located within the musculature of the gastrointestinal tract [GIT]. Although they form only 5% of the cells in the musculature of the GIT, they play a critical role in regulating smooth muscle function and GIT motility in coordination with the enteric nervous system. C-kit is a transmembrane glycoprotein that plays a critical role in ICC development and maturation. Physiological conditions such as ageing, as well as pathological conditions that have different disease processes, negatively affect ICC networks and function. Absent or disordered ICC networks can be associated with disorders in GIT motility. This review highlights the mechanism of ICC recovery from various types of injury which entails understanding the development of ICC and the factors affecting it. ICC transformation into malignant tumours [gastrointestinal stromal tumours] and their potential as contributors to therapeutic resistance is also discussed


Subject(s)
Gastrointestinal Tract/cytology , Diabetes Mellitus , Aging , Gastrointestinal Stromal Tumors , Stem Cells
6.
Pesqui. vet. bras ; 30(8): 676-684, ago. 2010. ilus, tab
Article in Portuguese | LILACS | ID: lil-559903

ABSTRACT

Para avaliar a morfologia do tubo digestório da tartaruga verde (Chelonia mydas) 10 animais, 9 juvenis e 1 adulto, foram analisados. A retirada dos órgãos digestórios procedeu-se após abertura do plastrão. A descrição e a medida do comprimento de cada órgão [esôfago, estômago, intestino delgado (ID) e intestino grosso (IG)] foram realizadas com o tubo digestório aberto. Os resultados mostraram que tanto nos animais juvenis como no adulto, o esôfago foi marcado pela presença de papilas pontiagudas em sua mucosa interna. O estômago apresentou aspecto saculiforme com fundo cego. No ID foi observado pregas reticulares na mucosa duodenal, enquanto o jejuno e do íleo mostrou pregas retilíneas longitudinais. O IG foi marcado pela alternância de regiões abauladas (haustros ou saculações) e estreitamentos. A microscopia do tudo digestório em C. mydas revelou esôfago com mucosa pregueada revestida por epitélio estratificado pavimentoso queratinizado. O estômago mostrou-se dividido em regiões: cárdica, fúndica, pilórica, as quais diferiam quanto ao número de glândulas e disposição da camada muscular. O ID apresentou-se marcado por vilosidades, e o IG por mucosa pregueada contendo glândulas na lâmina própria. A morfologia do tubo digestório da tartaruga verde mostrou-se adaptada ao seu hábito alimentar, possuindo especializações e um longo trato digestório que promove o aumento da superfície de absorção, já que seu alimento é de difícil digestão.


The morphology of the digestive tube of the green turtle (Chelonia mydas) was evaluated. Nine young e 1 adult turtles were analyzed. The digestive organs withdrew occurred after plastron opening. The length's description and measurement from each organ [esophagus, stomach, small intestine (SI) and large intestine (LI)] were made with digestive tube opened. The results showed that in both the adult and young animals, the esophagus from all species were marked by the presence of pointed papillae on internal mucous. The stomach presented saclike shape with blind fund. In the SI, reticular pleats in the duodenal mucous membrane have been observed, while the jejune and the ileum showed rectilinear longitudinal pleats. The LI was marked by the alternation of arched areas (haustra or sacculations) and narrowings. The microscopy of digestive tube from C. mydas revealed esophagus with folded mucous covered by keratinized and stratified squamous epitheliums. The stomach was divided in regions: cardiac, fundic e pyloric which differed as to the number of glands and the muscle layer's arrangement. The SI presented marked by microvillus, and LI by folded mucous with glands the lamina propria. The morphology of the tube digestive of the green turtle showed to be adapted to your eating habits. A long the digestive tract and specializations provide greater area of absorption and more efficiency in digestion in this species.


Subject(s)
Animals , Tissue and Organ Harvesting/methods , Tissue and Organ Harvesting/veterinary , Turtles/anatomy & histology , Turtles/surgery , Gastrointestinal Tract/cytology , Gastrointestinal Tract/physiology , Staining and Labeling/methods , Staining and Labeling/veterinary , Mucous Membrane
7.
Arq. bras. oftalmol ; 72(1): 43-46, jan.-fev. 2009. ilus
Article in English | LILACS | ID: lil-510020

ABSTRACT

PURPOSE: Interstitial cells of Cajal were identified in the gastrointestinal tract of several species, with close relation to the enteric nervous system. Since it was recognized that interstitial cells of Cajal express the gene product of c-kit, we performed immunohistochemistry for c-kit protein in ciliary muscle specimens of monkeys' eyes. METHODS: Eight eyes from four adult male new world monkeys (Cebus apella) were studied. After blocking endogenous peroxidase activity and nonspecific protein binding, 1:100 dilution of mouse monoclonal antibody against c-kit human oncoprotein was applied to tissues. Antigen-antibody reaction was visualized using the avidin-biotinylated horseradish peroxidase complex in each slide. RESULTS: We observed some groups of fusiform c-kit expressing cells located amongst muscle bundles of the ciliary muscle. Other pigment cells and mast cells were also observed. CONCLUSION: C-kit expressing cells observed in the ciliary muscle of Cebus apella, showed no similarity to melanocytes or mast cells and they could be associated with their gastrointestinal interstitial cells of Cajal counterpart.


OBJETIVO: As células intersticiais de Cajal estão presentes no trato gastrintestinal de diversas espécies animais, em íntima relação com o sistema nervoso entérico. Uma vez que as células intersticiais de Cajal expressam o produto do gene c-kit, realizou-se um ensaio imuno-histoquímico a fim de se verificar a marcação da proteína c-kit no músculo ciliar de amostras de olhos de macacos. MÉTODOS: Oito olhos de quatro macacos do novo mundo (Cebus apella) foram estudados. Após bloqueio da peroxidase endógena e de ligação protéica não específica, os tecidos receberam aplicação de anticorpos de camundongos antioncoproteína c-kit humana (1:100). A reação antígeno-anticorpo foi verificada através da aplicação do complexo avidina-biotinilada-peroxidase em cada lâmina. RESULTADOS: Foram observados grupos de células que expressam c-kit, localizadas entre as fibras do músculo ciliar. Mastócitos e outras células pigmentadas também foram observadas. CONCLUSÃO: Algumas células que expressam c-kit, observadas no músculo ciliar de Cebus apella, não mostraram similaridade com mastócitos ou melanócitos e podem ser classificadas como análogas das células intersticiais de Cajal gastrintestinais.


Subject(s)
Animals , Male , Ciliary Body/chemistry , Gastrointestinal Tract/cytology , Proto-Oncogene Proteins c-kit/analysis , Cebus , Ciliary Body/cytology , Muscle, Smooth/chemistry
8.
Article in English | IMSEAR | ID: sea-46926

ABSTRACT

The nervous system exerts a profound influence on all digestive processes. The wall of digestive system is endowed with its own, local nervous system referred to as the enteric or intrinsic nervous system which is responsible for the modulation of the rhythmic gastrointestinal peristaltic activities along with other functions. The principal components of the enteric nervous system are two neuronal networks: myenteric and submucosal, embedded in the wall of the digestive tract and extend from esophagus to anus. The musculature of different parts of gastrointestinal tract is differently disposed to perform different functions. Thus the aim of present study was to demonstrate the presence of neurons and to quantify the number of collections of neurons, number of neurons in each collection and area of the neurons of the plexus. One cm piece from all the parts of GIT containing entire wall was taken from the same region of 5 adult cadavers of postmortem cases which were embalmed in the Department ofAnatomy, Postgraduate Institute of Medical Sciences and Research, Chandigarh and were processed for paraffin sectioning. 5 and 10 micro thick serial sections were obtained and 6th and 7th slides were stained with: Hematoxylin and Eosin and Marsland, Glees and Erikson's silver stain. The slides were photomicrographed using digital camera. The morphometrical analysis was done using Image Pro Express software. Aggregations of 1-31 neurons present in myenteric network located between longitudinal and circular muscle layers of the GIT whose size varied from 10.263-259.660 microm2. They were oval or round; multipolar, arranged in two rows and dispersed in groups in connective tissue of muscularis propria. The collections of neurons were appeared to be more numerous in appendix and ileoceacal valve.


Subject(s)
Adult , Cadaver , Gastrointestinal Tract/cytology , Humans , Myenteric Plexus/cytology , Neuronal Plasticity
9.
Biocell ; 30(2): 287-294, ago. 2006. ilus
Article in English | LILACS | ID: lil-491553

ABSTRACT

This work describes the morphology and histology of the P. Argentinus digestive tract. The foregut comprises the mouth, oesophagus, and stomach and is lined by a simple cylindrical epithelium overlain by cuticle. There are tegumental glands in the oral region and in the first portion of the oesophagus and of the hindgut. The cardiac stomach is an oval dorsal sac in the cephalothorax and has no calcified structures. The pyloric stomach comprises an upper chamber and a lower gland filter. The filter consists of an outer row of elongated setae and an inner row of dorsally curved setae forming longitudinal channels 16-18 microm wide. The midgut runs from the dorsal chamber of the pyloric stomach to the sixth abdominal somite without caeca. The hindgut runs from the sixth abdominal somite to the ventral anus. The mid-g ut epithelium comprises dominant cylindrical cells and small undifferentiated cells in the first portion. The hindgut wall presents longitudinal folds, conspicuous muscular bundles, and a folded cuticle. The digestive tract of P. argentinus is basically similar to that of most of decapods. The absence of calcified structures in the stomach and the width of the longitudinal channels in the filter are related to the predominantly detritivorous diet.


Subject(s)
Animals , Female , Astacoidea/anatomy & histology , Astacoidea/cytology , Gastrointestinal Tract/anatomy & histology , Gastrointestinal Tract/cytology
10.
Gastroenterol. latinoam ; 17(1): 35-42, ene.-mar. 2006. ilus
Article in Spanish | LILACS | ID: lil-430766

ABSTRACT

Las células musculares lisas del tubo digestivo tienen tanto actividad eléctrica como mecánica. La contracción coordinada es regulada por un ritmo de marcapasos. La actividad eléctrica de marcapasos no es una propiedad intrínseca de la célula muscular, sino que es generada por un grupo especializado de otras células, dispuestas en una red entrelazada con los miocitos que se han denominado células intersticiales de Cajal, en honor del científico español Santiago Ramón y Cajal, quien las describiera en el siglo XIX. En el tubo digestivo esta red esta ubicada cerca del plexo mientérico y genera potenciales de marcapasos cuyos potenciales se transmiten pasivamente hacia las capas musculares vecinas donde generan cambios rítmicos en su potencial de membrana. El concepto actual es que los nervios autonómicos no contactan directamente con los miocitos para liberar sus neurotransmisores y así regular la función motora del tubo digestivo. En cambio, se contactan con las células de Cajal a través de sinapsis y éstas, a su vez, contactan con los miocitos vecinos. Por lo tanto, las células de Cajal son las responsables de recibir (¿y modular?) los estímulos, tanto excitatorios como inhibitorios. El estudio de sus alteraciones está mejorando nuestros conocimientos de diferentes trastornos motores del tubo digestivo. Pero además, las células de Cajal son el origen de las líneas celulares que dan lugar a los tumores estromales del tubo digestivo (GIST o gastrointestinal stromal tumors). Esta información no sólo nos da una mejor comprensión de la fisiología sino que además, permite diseñar terapias para estos tumores, en la medida que se conocen las bases moleculares y genéticas de esta transformación.


Subject(s)
Humans , Gastrointestinal Neoplasms/etiology , Gastrointestinal Tract/cytology , Gastrointestinal Tract/innervation , Cell Communication/physiology , Muscle Cells , Stromal Cells , Gastrointestinal Motility/physiology , Muscle, Smooth/innervation , Synapses
11.
Gastroenterol. latinoam ; 17(1): 43-51, ene.-mar. 2006. ilus, tab
Article in Spanish | LILACS | ID: lil-430767

ABSTRACT

Los tumores del estroma gastrointestinal representan un tipo infrecuente de tumor de origen mesenquimático, con origen en las células intersticiales de Cajal. Se caracterizan por expresar un receptor de membrana mutante con actividad tirosina quinasa anormal (c-kit CD117) que condiciona su activación permanente y una proliferación celular no controlada. Pueden encontrarse a cualquier nivel del tracto gastrointestinal, pero son más frecuentes en estómago e intestino delgado. Frecuentemente cursan de forma asintomática, constituyendo un hallazgo endoscópico o radiológico. La enfermedad localizada habitualmente es de buen pronóstico tras su resección quirúrgica, mientras que la sobrevida es baja en etapas avanzadas, con escasa respuesta a la quimioterapia convencional. El surgimiento del imatinib, un inhibidor de la tirosina quinasa, ha representado un verdadero hito, dado su eficacia en el control de la enfermedad irresecable o metastásica, permitiendo un importante aumento en la sobrevida de estos pacientes.


Subject(s)
Humans , Gastrointestinal Neoplasms/diagnosis , Gastrointestinal Neoplasms/physiopathology , Gastrointestinal Neoplasms/drug therapy , Gastrointestinal Tract/cytology , Protein-Tyrosine Kinases , Stromal Cells , Stomach/cytology , Intestine, Small/cytology , Mutation , Piperazines/therapeutic use , Pyrimidines/therapeutic use , Proto-Oncogene Proteins c-kit/metabolism , Dose-Response Relationship, Drug , Signs and Symptoms
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