• Title/Summary/Keyword: electron microscopic changes

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Dysfunction of Retinal Cell and Optic Nerve by Continuous Cerebroventricular Infusion of Glucosamine

  • Jang, So-Yong;Han, Inn-Oc;Jun, Gyo;Oh, Sei-Kwan
    • Biomolecules & Therapeutics
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    • v.17 no.4
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    • pp.362-369
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    • 2009
  • We have investigated the effect of glucosamine on the retinal cells after continuous infusion into cerebroventricle by using osmotic minipump to avoid peripheral effect. Continuous intracerebroventricular (i.c.v) infusion of glucosamine with the rate of 0.1 ${\mu}mol$/10 ${\mu}l$/hr for 7 days resulted in morphological changes of the optic nerve in electron microscopic level as well as morphological changes of the retina in light microscopic level. Retinal sections were immunostained for the detection of morphological changes of astrocytes. GFAP immunoreactivity appeared not only in the Muller cells but also many of the radial processes of Muller cells. The optic nerve showed deformed axon and slight lamellar separation of myelin sheath after continuous infusion of glucosamine in observing with electron microscope. Interestingly, vacuoles were observed in deformed axons and retinal layers were folded and detached. These results suggested that glucosamine plays a role in induction of morphological dysfunction in retina and optic nerves.

The Effect of Melatonin on Morphological Changes of Rat Skeletal Muscle after Ischemia-Reperfusion Injury (멜라토닌이 허혈-재관류 손상에 의한 골격근의 형태학적 변화에 미치는 효과)

  • Park, Hye June;Burm, Jin Sik
    • Archives of Plastic Surgery
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    • v.33 no.1
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    • pp.31-38
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    • 2006
  • The effect of melatonin on morphological changes after ischemia-reperfusion injury was investigated in rat skeletal muscle. Dimethyl-sulfoxide(DMSO) was also tested for comparison. Muscle injury was evaluated in 4 groups as a single laparotomy group(control), ischemia-reperfusion group, DMSO group, melatonin group. Left hind limb ischemia was induced for 4 hours by vascular clamping of the common femoral artery and followed by 24 hours of reperfusion. The midportion of gastrocnemius muscle was taken for histological evaluation. In light microscopic study, ischemia-reperfusion group showed severe neutrophil infiltration, interstitial edema, and partial loss or degeneration of muscle fibers. The muscle tissue of melatonin group showed relatively normal architecture with mild inflammatory cell infiltration. In electron microscopic study, dilated cisternae of sarcoplasmic reticulum, dilated mitochondria with electron loose matrix and dilated cristae, disordered or loss of myofilament, indistinct A-band and I-band, intracytoplasmic vacuoles, and markedly decreased glycogen granules were observed in ischemia-reperfusion group. But relatively well maintained A-band, I-band, Z-line, M-line, and mildly dilated mitochondria with well preserved cristae were observed in melatonin group. The DMSO group showed intermediately attenuated ultrastructural changes. The results show that melatonin improves morphologically ischemia-reperfusion injury more effectively than DMSO. In conclusion, melatonin seems to be a promising agent that can salvage the skeletal muscle from severe ischemia-reperfusion injury.

Effect of Transplantation of Intravascular Cultured Neural Stem Cell upon Peripheral Nerve Regeneration (혈관내에 배양한 신경줄기세포의 이식이 말초신경 재생에 미치는 영향)

  • 양영철;김우일;박중규;배기원
    • Journal of Life Science
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    • v.12 no.3
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    • pp.306-316
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    • 2002
  • The ultrastructural change of sciatic nerve and immunohistochemical changes of NGF, PCNA were studied at the transplanted segment of intravascular cultured neural stem cell in the rat sciatic nerve by 5 months after the sciatic nerve transection. The transplanted intravascular neural stem cells were differentiated into Schwann reals at the 20th day and these cells began to regenerate by the proliferation and hypertrophy. There were many remyelinating Schwann cells in the transplanted nerve in term of stimulation. According to NGF finding, we suggest preexisting Schwann cells may induce the differentiation of neural stem cells into regenerating Schwann cells. Electron microscopic changes were the remyelinating appearance, the increase of intraaxonal microtubules and enlarged mitochondria and contacting tell processes each other.

Electron Microscopic Studies on Distribution of Collagen IV of Lens Capsule and Apoptosis of Lens Epithelium in Age-related Cataractous Human (백내장 환자의 연령에 따른 수정체낭 Type IV 아교섬유의 분포와 수정체낭 상피세포 자연사 및 전자현미경적 변화에 대한 연구)

  • Heo, Jun;Yang, Young-Chul;Won, In-Gun
    • Biomedical Science Letters
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    • v.4 no.2
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    • pp.77-86
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    • 1998
  • Age-related changes in the lens capsule and epithelium of cataractous patients, ranging from 20 to 7o years old, were studied by means or LM, immunohistochemistry, and TEM. The lens capsule was divided into four zones; the anterior, subanterior, middle, and basal zone. The van Gieson staining reaction for collagen was prominent at the anterior and subanterior parts of the lens capsule. The reaction was more decreased in the elder group than the younger group. The collagen type IV reaction was prominent at the anterior zone of the lens capsule and around the cell. The reaction was more decreased in the elder group than the younger group. 3. The Periodic Acid Shiff-Alcian Blue reaction for mucopolysaccharide was prominent at the anterior zone of the lens capsule. The reaction was more decreased in the elder group than the younger group. The Apoptotic reaction was prominent at the nucleus of the lens epithelial cell. In the elder the cataractous group, the number of the apoptotic cells was more decreased. The electron microscopic change of lens epithelial cells were characterized by the increase of lateral fold and the cytoplasm with various vacuoles and Golgi complex. In the basal part, lens epithelial cell protruded toward the lens capsule in the 20-year-old group. The basal part of the 40-year-old group was flattened and covered with the cytoplasmic processes of adjacent cells. In the 60-year-old group, the mass of rough filaments separated lens capsule and the basal part of the lens epithelial cell. The electron microscopic change of the middle part of lens capsule was characterized by the aggregation of electron dense materials in the 40-year-old group, and the appearance of filamentous materials and the decrease of electron dense granules in the 60-year-old group.

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AN EXPERIMENTAL STUDY OF THE RADIATION-INDUCED CHANGES ON THE SECRETORY GRANULES OF THE RAT SUBMANDIVULAR GLAND ACINAR CELL (방사선조사가 악하선세포내 분비과립의 미세구조에 미치는 영향에 관한 실험적 연구)

  • Choi Mi;Lee Kang-Sook;Choi Karp-Shik
    • Journal of Korean Academy of Oral and Maxillofacial Radiology
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    • v.24 no.2
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    • pp.403-410
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    • 1994
  • The purpose of this study was to investigate the irradiation effects on the secretory granules of the rat submandibular gland acinar cell. For this study, Sprague-Dawley strain rats were irradiated to their neck region with the dose of 5Gy and l0Gy by 6MV X-radiation, and sacrificed on the experimental periods after irradiation. The authors observed the ultrastructural changes of the secretory granules of the rat submandibular gland acinar cell under a trasmission electron microscope. The results were as follows: In the transmission electron microscopic examination, secretory granules were blurred in limiting membrane on the 3hours groups after irradiation. And they showed decrease in number, irregularities in shape and distributional pattern, and inhomogeneous internal electron density on the Iday and 3days groups. After then, these changes were recovered in shape and distributional pattern on the 14days groups, and changes of internal electron density and limiting membrane were recovered on the 28days groups after irradiation. Among the intracellular organelles, rough endoplasmic reticulum was scattered, but golgi complex was not changed. And such pathologic changes were earlier and more prominent in 10Gy irradiated groups than in 5Gy irradiated groups.

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AN EXPERIMENTAL STUDY OF THE IRRADIATION EFFECTS ON THE MICROVASCULATURE OF THE RAT SUBMANDIBULAR GLAND (방사선 조사가 백서 악하선 미세혈관계에 미치는 영향에 관한 실험적 연구)

  • Choi Karp Shik;Choi Soon Chul;Park Tae won
    • Journal of Korean Academy of Oral and Maxillofacial Radiology
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    • v.22 no.1
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    • pp.43-53
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    • 1992
  • The purpose of this study was to investigate the effects of irradiation on the microvascular structure of the submandibular gland in rats. For this study, 110 male rats were singly irradiated with the dose of 10Gy or 20Gy to their neck region by 6MV X-irradiation and sacrificed on the 1st, 3rd, 7th, 14th and 28th day after irradiation. The author observed distribution and structural changes of the microvasculature in rat submandibular glands using a scanning electron microscope by forming vascular resin casting. The author observed ultrastructural changes of the endothelial cells using a transmission electron microscope, and also histologic changes using a light microscope at Hematoxylin and Eosin staining and PAS staining process. The results of the irradiation effects on the microvasculature in rat submandibular gland were as follows: By light microscopic examination, the dilation of small vessels were observed until the 7th day after irradiation. After then, the vascular constriction and decrease in number of small vessels were noticed. Changes were greater on 20Gy irradiated group than on lOGy irradiated group. The reaction to PAS staining at acinar cells was decreased just after irradiation, but gradually recovered with days. There was no specific difference between two irradiated groups. By scanning electron microscopic examination, general findings on the two irradiated groups were similar. The dilation of conduits and meandering were observed on the 3rd day after irradiation. Decrease of capillary density and blunt ended small vessels were appeared on the 7th day after irradiation. After that, findings of the tortuous and twisted vascular running and coarseness of capillary lumen were increased. Changes were greater on 20Gy irradiated group than on l0Gy irradiated group. By transmission electron microscopic examination, increase of the formation of cytoplasmic process was observed on the 3rd day after irradiation. After that, swelling of endothelial cell and bridge formation of cytoplasmic processes were also observed, but destruction of endothelial cell and loss of basement membrane were observed only on 20Gy irradiated group on the 28th day after irradiation.

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Electron microscopic observations of the irradiation of ultra-violet ray on cryptococcus neoformans (자외선 조사처리에 의한 cryptococcus neoformans의 전자현미경적 관찰)

  • Hwang, Dong-Hoon;Koh, Choon, Myung;Choi, Tae-Joo;Lew, Joon
    • Korean Journal of Microbiology
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    • v.10 no.1
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    • pp.29-34
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    • 1972
  • The present study is of ultra-fine structure of Cryptococcus neoformans by means of electron microscopy and reveals the following : 1) In constrast to the bacteria, the normal Cryptococcus neofrmans contains nuclear enveloped with nuclear menbrane, mitochondria, endoplasmic reticulum, distinct cell wall and cell membrane, vacuoles and storage granules as observed in the eucaryotic cells. 2) In apparent cell walls and cell membrane with the appearance of electron transparent area (ETA) and changes of cell morphology were observed in the ultra-violet ray irradiated cell. 2) In apparent cell walls and cell membrance with the appreance of electron transparent area (ETA) and changes of cell morphology were observed in the ultra-violet ray irradiated cell. 3) Morphology changes and cytoplasmic element abnormality was increased with irradiated time. 4) Increase of electron transparent area was thought to be associated with degradation of cell.

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Light and electron microscopy of the kidney tissues on viral haemorrhagic disease in rabbits (토끼의 바이러스성(性) 출혈증(出血症) 감염시(感染時) 신장(腎臟)의 광학(光學) 및 전자현미경적(電子顯微鏡的) 관찰(觀察))

  • Kim, Jin-ho;Chung, Chi-young;Park, Nam-yong
    • Korean Journal of Veterinary Research
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    • v.29 no.2
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    • pp.99-108
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    • 1989
  • In order to observe the pathological changes of kidney in rabbits infected with the viral haemorrhagic disease, the kidney tissues from the 91 rabbits infected with the viral haemorrhagic disease were examined by light and electron microscopy. The results observed were as follows: 1. On light microscopic observation, the kidney lesions were identified as haemorrhagic glomerular necrosis(33.0%), membranous glomerulonephritis(20.9%), thrombotic glomerulopathy(19.8%), membranoproliferative glomerulonephritis(8.8%), mesangial proliferative glomerulonephritis(8.8%) ischemic acute tubular necrosis(7.7%), and acute serous glomerulitis(6.6%). 2. On electron microscopic observation, cytoplasmic degeneration of mesangial cells, and irregular thickening of basement membranes with electron dense granular materials were observed. In podocytes swelling of mitochondria, dilatation of endoplasmic reticulum and extensive fusion of foot processes were also observed. Nonenveloped round icosahedral picornaviral particles with a diameter of 28~33nm were detected in the cytoplasm of degenerative endothelial cells, polymorphonuclear leucoytes, and monocytes.

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Electron Microscopic Study of Fat-storing Cells in Liver of Rabbits Given Ginseng (인삼투여가토(人蔘投與家兎) 간지방섭취세포(肝脂肪攝取細胞)의 전자현미경적관찰(電子顯微鏡的觀察))

  • Lee, Jae-Hyun;Woun, Bong-Rae
    • Korean Journal of Veterinary Research
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    • v.20 no.2
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    • pp.143-150
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    • 1980
  • The light and electron microscopic observations were carried out in order to know the morphological changes of the fat-storing cells (FSC) in the liver of rabbits given Ginseng for 30 days. The results obtained were as follows: The FSC of experimental group was shown the appearance of a few large lipid droplets, enlarged rough surfaced endoplasmic reticulum, some residual body in the enlarged rER and the nuclear body in some cases. As these findings, it could be suggested that the Ginseng affect the synthesis and accumulation of lipid on the FSC.

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