• Title/Summary/Keyword: Pigment granules

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Ultrastructural Study of Tentacular Pigment Cells in the Chinese Mystery Snail, Cipangopazudina chinensis mazleata Reeve (논우렁이(Cipangopaludina chinensis malleuta Reeve) 촉수 색소세후의 징세횡조에 관한 연구)

  • 송용직;문영진김우갑김창환
    • The Korean Journal of Zoology
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    • v.30 no.3
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    • pp.292-300
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    • 1987
  • The ultrastructure of the tentacular pigment cells and the origin of the pigment granules in the Chinese mystery snail, Cipangopaludina chinensis malleata Reeve, are studied with electron microscope. Tentacular pigment cells of the Enail are the melanophores which contain electron dense melanosomes(melanin pigment granules) . Melanophores are distributed among the connective tissues but otter kind of dermal chromatephores are not observed. The epidermal melanin units are observed in the epithelial tissues of the tentacles. Among the several kinds of epithelial cells, only the epithelial supporting cells contain these pigment granules. Synthesis of the pigment materials is from the rough ER and pigment granules are finally being packaged and released by the Golgi complexes but limiting membrane of these granules are presumed to be originated from the smooth ER.

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Fine Structure of the Cutaneous Pigments in the Black Widow Spider, Latrodectus mactans (검은과부거미 (Latrodectus mactans) 피부 색소의 미세구조에 관한 연구)

  • Moon, Myung-Jin
    • Applied Microscopy
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    • v.28 no.4
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    • pp.503-512
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    • 1998
  • Fine structure of the cutaneous pigments in the black widow spider, Latrodectus mactans are studied with light and electron microscopes. The cutaneous pigments are only observed in epidermal layer just beneath the cuticle. These pigments are compactly distributed around the spinnerets which located at caudal area of the abdomen. According to the fine structural characteristics of the pigment granules, two main types of guanine pigment granules-carotenoid vesicles and reflecting platelets - are observed in the cytoplasm of the epidermal cells. Morphological features of these pigment granules are characterized as the electron dense carotenoid vesicles and the electron lucent reflecting platelets. Marginal electron density of the carotenoid vesicle is different from that of internal region, whereas the reflecting platelets have laminated crystalline granules. Typiral structures of these pigment granules are very similar to those of invertebrate's chromatophores, especially erythrophores and iridophores. Moreover differentiation of these pigment granules are also originated from the small vesicles of Golgi complexes similarly to those of cutaneous chromatophores.

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Internal Structure and Pigment Granules in Colored Alpaca Fibers

  • Wang Huimin;Liu Xin;Wang Xungai
    • Fibers and Polymers
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    • v.6 no.3
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    • pp.263-268
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    • 2005
  • Alpaca fibers have some distinct properties such as softness and warmth, which have not been fully understood in combination with the fiber internal structures. In the present investigation, the internal structures of alpaca fibers have been closely examined under the scanning electron microscope (SEM), especially in the longitudinal direction. The results showed that numerous pigment granules reside loosely inside pockets in brown and dark-brown alpaca fibers. These pigment granules were mainly distributed inside the cortical cells, the medullation regions as well as underneath the cuticles. Their size in the brown alpaca fibers was smaller and more uniformly round than in the dark-brown fibers. These granules in colored alpaca fibers loosen the bundle of cortical cells, providing many crannies in the fibers which may contribute to the superior flexibility, warmth and softness of the fibers. Moreover, there are no heavy metal elements found in the granules. The mordant hydrogen peroxide bleaching employed could eliminate the pigment granules and create many nano-volumes for further dyeing of fibers into more attractive colors.

Ultrastructures of the Cutaneous Chromatophores and Pigment Granule Formation in the Goldfish, Carassius auratus L. I. Xanthophore (금붕어(Carassius auratus L.) 피부(皮膚) 색소세포(色素細胞)의 미세구조(微細構造) 및 色素顆粒(색소과립) 형성(形成)에 관한 연구(硏究) I. 황색소세포(黃色素細胞)(xanthophore))

  • Moon, Myung-Jin;Kim, Woo-Kap;Kim, Chang-Whan
    • Applied Microscopy
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    • v.16 no.2
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    • pp.35-48
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    • 1986
  • Ultrastructures of the cutaneous xanthophores and formation of pigment granules in the goldfish, Carassius auratus L., are studied with electron microscope. The cutaneous xanthophores are observed only in dermis and pigment granules of these pigment cells are pterinosomes and carotenoid vesicles. By the differentiated level, pterinosomes are subdivided into 3 types; while type I pterinosomes have clear limiting membranes and contain some amorphous fine fibrous structures, type II pterinosomes have thick and densely aggregated fibrous materials. Type III pterinosomes have concentric lamellar structures in the granules. Pigment granules of the xanthophores are originated from the Golgi complexes and pinocytotic vesicles of plasma membrane as well as rER-rich cells among the chromatophores are presumed to be associated with the accumulation of pigment materials.

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Ultrastructures of the Cutaneous Chromatophores and Pigment Granule Formation in the Goldfish, Carassius auratus L. II. Leucophore and Melanophore (금붕어(Carassius auratus L.) 피부(皮膚) 색소세포(色素細胞)의 미세구조(微細構造) 및 색소과립(色素顆粒) 형성(形成)에 관한 연구(硏究) II. 백색소세포(白色素細胞)(leucophore) 및 흑색소세포(黑色素細胞)(melanophore))

  • Moon, Myung-Jin;Kim, Chang-Whan;Kim, Woo-Kap
    • Applied Microscopy
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    • v.17 no.1
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    • pp.65-75
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    • 1987
  • The ultrastructure of the cutaneous chromatophores and the origin of pigment granules in the goldfish, Carassius auratus L., are studied with electron microscope. Leucophores contain amorphous pigment granules, leucosomes and melanosomes contain oval shaped electron dense melanin pigment granules. These pigment granules are synthesized from the Golgi complexes of each chromatophores and released into the cytoplasm. Among the dermal chromatophores, another kind of dermal cells, named rER rich cells, are also observed. And pinocytotic vesicles are being formed only the inner surface of the chromatophores adhering to the rER rich cells. From these observations, such hypothesis are being possible that pigment materials are synthesized and transfered from the rER rich cells to dermal chromatophores by the pinocytosis. And next remodelizing mechanisms are carried out by the Golgi complexes of each chromatophores.

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Morphological Studies on the Epithelium of the Foregut of the Nymph and the Adult in the Grasshopper, Oxya sinuosa (우리벼메뚜기 유충과 성충의 전장 점막상피에 관한 형태학적 연구)

  • Lee, Hyeung-Sik;Lee, Jae-Hyun
    • Applied Microscopy
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    • v.20 no.2
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    • pp.12-22
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    • 1990
  • The morphological characteristics and changes of the foregut in the grasshopper (Oxya sinuosa Mistshenko) have been studied with the special reference to the developmental stage. In light microscope level, the epithelia are seen the cuboidal shape in the 5th instar nymph and the adult. A number of pigment granules are appeared in the cuboidal epithelium of the 5th instar nymph, however the pigment granules were a few in the adult. Indistinct or undifferentiated folds of the epithelial layer were appeared in the 5th instar nymph, whereas the well-developed folds were in the adult. The well-developed muscular layers are seen in the 5th instar nymph, however in the adult the muscular layers are appeared thin or a few layer except the crop. In electron microscope level, in the foregut epithelium, a few round or oval shaped mitochondria, well-developed rER, Golgi complex, lysosome and a number of vacuoles were appeared in the cytoplasm. Two types of pigment granules, electron dense or homogenous and low electron dense or lamellar profiles, are seen in the esophageal epithelium. The crystalline profiles and plasma membrane infoldings were also appeared. In the foregut epithelium of the 5th instar nymph, however the cell organelles were generally undifferentiated and in the crop two types of pigment granules as the adult esophageal epithelium were also found.

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Redifferentiation of the Cutaneous Pigment System during the Wound Healing Process in the Goldfish, Carassius auratus (금붕어 (Carassius auratus L.) 상처치유과정중 피부색소체계의 재분화에 관한 연구)

  • Moon, Myung-Jin;Jeong, Moon-Jin
    • Applied Microscopy
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    • v.27 no.1
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    • pp.71-86
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    • 1997
  • The regeneration and differentiation of the cutaneous pigment system in the goldfish, Carassius auratus during the wound healing process were studied with high magnification electron microscope. The cutaneous pigment cells of the normal tissues were composed of three kinds of dermal chromatophores-xanthophores, leucoiphores and melanophores. While xanthophores contain two kinds of pigment granules-pterinosomes and carotenoid vesicles, leucophores and melanophores contain amorphous pigment granules (leucosomes) and oval shaped electron dense melanin pigment granules (melanosomes) respectively. After injury, primary wound healing responses being carried out by migration of epidermal cells and hemocytes spreading over the wound surface at the day of wounding. And at the time of primary wound closure, 5 to 7 days after wounding, rER rich cells-presumably common precursors of dermal chromatophores-immigrated into the wound area. First redifferentiated chromatophores appeared 3 weeks after wounding. Pigment granules of the chromatophores were emerged from the cytoplasmic Golgi complex via rough endoplasmic reticulum. Pinocytotic vesicles which associated with accumulation of pigment material, appeared only at the inner surface of the chromatophores adhering to the rER rich cells, characteristically. The differentiation of each chromatophore in addition to integumental wound repair were accomplished within 4 weeks after wounding at most cases, however the total numbers and densities of these repaired chromatophores still primitive state. Moreover, It has been revealed that complete repair of chromatophores at wounded tissues from burns requirs more than 3 months in normal environment.

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Morphological Studies on the Epithelium of the Midgut of the Nymph and the adult in the Grasshopper, Oxya sinuosa (우리벼메뚜기 유충과 성충의 중장 점막 상피에 관한 형태학적 연구)

  • Lee, Hyeung-Sik;Lee, Jae-Hyun;Park, Sang-Ock
    • Applied Microscopy
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    • v.20 no.1
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    • pp.105-119
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    • 1990
  • In order to know the morphological characteristics and changes according to the developmental stage, the comparative observations have been studied by light and electron microscope on the midgut(gastric caecum, stomach) of the grasshopper(Oxya sinuosa Mistshenko). The results obtained are summarized as follow : In light microscopic level, the cuboidal shaped cells of the gastric caecum in the 5th instar nymph are differentiated the columnar epithelium in the adult. A number of pigment granules are appeared in the gastric caecum of the 5th instar nymph, however the pigment granules were absent in the adult. Indistinct or undifferentiated folds of the epithelial layer were appeared in the 5th instar nymph, whereas the well-developed folds were appeared the gastric caecum in the adult. The well-developed muscular layers are seen in the 5th instar numph, however in the adult the muscular layers are appeared thin or a few layers. In electron microscopic level, in the midgut epithelium, a number of well-developed rER, a few lipid droplets, multi vesicular bodies, small vesicles and glycogen granules were found. Two types of the pigment granules in the gastric caecum of the 5th instar nymph were appeared, whereas the whorl-membrane, a few secretory granules and one type of the gastro-entero-endocrine cell were found in the adult midgut. The light and dark cells could be distinguished in the stomach epithelim of the 5th instar nymph.

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Electron Microscopical Observation on the Compound Eye in Meimuna mongolica D. (쓰름매미 (Meimuna mongolica D.) 복안의 전자현미경적 관찰)

  • Choi, Choon-Keun;You, Kwan-Hee;Shin, Kil-Sang;Choe, Rim-Soon
    • Applied Microscopy
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    • v.9 no.1
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    • pp.1-11
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    • 1979
  • Electron microscopic studies were carried out to investigate the fine structure of ommatidia of the compound eyes in Meimuna mongolica D. The crystalline cone appears round, and is composed of four double-membraned cone cells and surrounded by pigment cells having many pigment granules. The rhabdom is a closed type, and is composed of four rhabdomeres Its cross section reveals lamellated microvilli which are oriented in four different directions suggesting that these represent four photoreceptive sites. The microvilli, in a cross sectional view, are hexagonal in shape with a central axis inside. There are usually eight retinular cells arranged radially from the rhabdom, but in some retinular layers seven or nine retinular cells could be observed. The cytoplasm of each retinular cell is interconnected with that of microvilli of the rhabdomere, but the appearance of this interconnection varies depending on the number of retinular cells.'The retinlilar cells neighboring the microvilli seem to have well-developed perirhabdomal vacuoles and mitochondria as well as pigment granules surrounding these vacuoles.

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Studies on the Ovarian Hemosiderin of Sow and Cow (돈(豚) 및 우(牛) 난소(卵巢)의 혈철소(血鐵素)에 관(關)하여)

  • Kim, Hwa Sik;Jang, In Ho;Lee, Jae Hyun
    • Korean Journal of Veterinary Research
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    • v.11 no.1
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    • pp.97-102
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    • 1971
  • 60 cases of swine and bovine ovaries were investigated for detecting the homosiderin pigment by means of Perl's prussian blue reaction. The results abtained were as follows; 1. Among the 30 cases of normal adult swine ovaries, 20 cases (66.6%) were presented as positive. 2. The hemosiderin pigment was detected in corpus albicans, connective tissue of corpus luteum, theca externa of follicles and interstitial tissue of ovary in swine. 3. The morphological characteristics of the hemosiderin pigment of swine ovaries were fine and coarse granules or amorphous and homogenous pigment. 4. In 30 cases of bovine ovaries, the hemosiderin pigment was not detected.

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