• 제목/요약/키워드: dense granule

검색결과 58건 처리시간 0.026초

척추동물(脊椎動物)(포유류(哺乳類))위(胃)의 비만세포(肥滿細胞)에 관한 전자현미경적 연구 (Electron Microscopic Study on the Mast Cells of the Vertebrates(Mammals) Stomach)

  • 강호석;김창환
    • Applied Microscopy
    • /
    • 제11권1호
    • /
    • pp.39-50
    • /
    • 1981
  • 성숙하고 정상인 포유류 6종의 동물들을 이용하여 위에 분포하는 비만세포의 형태와, 세포내 과립의 구조적 형태의 종간차이를 비교하고자 전자현미경으로 관찰을 하였다. 저자는 특히 관찰된 세포질내 과립을 편의상 다음과 같이 분류하였다. 1) 동질성 과립 (homogeneous granule, GR1) 2) 미세 입자과립 (particulate granule, GR2) a. 고전자밀도 미세 입자과립 (dark dense particulate granule, GR2-1) b. 중전자밀도 미세 입자과립 (less dense particulate graunle, GR2-2) 3) 망상구조과립 (reticular granule, GR5) a, 고전자말도 망상구조과립(dark dense reticular granule, GR5-1) b. 저전자밀도 망상구조과립(light dense reticular granule, GR5-2) 포유류인 염소, 개, 고양이, 햄스터에서는 대부분 세포질내 소기관중 골지체 및 사립체가 나타났으며 세포질내 과립의 대부분이 전자밀도가 높은 동질성인 것 (GR1)과 미세입자형으로 된 것 (GR2)이 나타났다. 그러나 Guinea pig에서는 망상구조형의 과립들 (GR5-1, GR5-2)이 나타났다. 또한 개와 Guinea pig 에서 과립의 한쪽이 함몰되었거나 반월형인 것이 나타났다. 위 결과로 보아 표유류 각 종 간의 비만세포, 세포내 과립은 형태학적으로 차이가 있음을 알 수 있으며, 이러한 차이는 아마도 종 간의 기능에 따른 과립의 구조적 차이와 구성성분 및 성숙도등과 상관관계가 있는 것으로 추측된다.

  • PDF

Vacor 유발 당뇨 모래쥐의 심장신경절과 과립함유세포의 미세구조 (Ultrastructural Changes in the Ganglion and Granule-Containing Cells in the Heart of Vacor-Induced Diabetic Mongolian Gerbil)

  • 강정채;윤재룡;유홍석
    • Applied Microscopy
    • /
    • 제23권2호
    • /
    • pp.107-123
    • /
    • 1993
  • The ultrastructural changes of the cardiac ganglion and granule-containing cells in the heart of vacor-induced diabetic Mongolian gerbils were studied by electron microscopy. After one month of vacor-induced diabetes the ganglion cells showed increase in numbers of dense bodies and mitochondria compared with the normal cardiac ganglion. Most of the satellite cells were filled with numerous phagosomes containing digested debris. Both electron-dense and lucent types of degenerating axon terminals were observed. The former was characterized by clusters of agranular vesicles and numerous mitochondria. The electron lucent type of degenerating axon terminal contained a few agranular vesicles and swollen mitochondria. Degenerating unmyelinated and myelinated axons contained large numbers of dense bodies, lamellar bodies, and mitochondria. Numerous macrophages containing phagosomes were reveled in the interstitial spaces. Some of the granule-containing cells in the heart showed a variety of degenerative changes and a decreased number of dense-cored vesicles. After three months of vacor-induced diabetes the unmyelinated and myelinated axons showed degenerative changes, whereas no structure changes could be demonstrated in intraatrial ganglion and granule containing cells. The satellite cells containing engulfed debris were observed in the cardiac ganglion cells. These results suggest that the degenerative changes occur in the cardiac ganglion cells of vacor-induced diabetic Mongolian gerbils as well as atrial granule-containing cells.

  • PDF

인태아 상경신경절내 소형의 과립함유세포에 관한 전자현미경적 연구 (Ultrastructural Study on the Development of the Small Granule-Containing Cells in Superior Cervical Ganglion of Human Fetus)

  • 윤재룡;민영돈;남광일
    • Applied Microscopy
    • /
    • 제26권3호
    • /
    • pp.349-367
    • /
    • 1996
  • The development of small granule-containing cell in the superior cervical ganglion was studied by electron microscopic method in human fetuses ranging from 40 mm to 260 mm crown rump length (10 to 30 weeks of gestational age). At 40 mm fetus, the superior cervical ganglion was composed of clusters of undifferentiated cells, primitive neuroblasts, and unmyelinated nerve fibers together with blood vessels. At 90 mm fetus, the superior cervical ganglion consisted of neuroblasts, satellite cell, small granule-containing cells, and unmyelinated nerve fibers. Two morphological types of the small granule-containing cells in the superior cervical ganglion were first indentified at 90 mm fetus, but were rare. Type I granule-containing cell occurred in solitary and had long processes, whereas type II cells tend to appeared in clusters near the blood capillaries. The granule-containing cells were characterized by the presence of dense-cored vesicles ranging from $150{\sim}300nm$ in diameter in both the cell bodies and processes. Other organelles included abundant mitochondria, rough endoplasmic reticulum, neurotubules, and widely distributed ribosomes. The granule-containing cells had long processes similar to those found in principal ganglionic cells. They could be identified by their content in dense-cored vesicles. The small granule-containing cells increased somewhat in size and number with increase of fetal age. Synaptic contacts were first found on the solitary granule-containing cell at 150 mm fetus. Synaptic contacts between the soma and processes of type I granule-containing cells and preganglionic axon terminals were observed. In addition, synaptic junctions between the processes of granule-containing cells and presumed dendrite of postganglionic neuron were also observed from 150 mm onward. On the basis of these features type I granule-containing cells could be considered as interneurons. The clusters of type II granule-containing cells were located in the interstitial or subcapsular portions of the ganglion, and had short processes which ended in close relation to fenestrated capillaries. Therefore it may be infer that clusters of type II granule-containing cells have an endocrine function.

  • PDF

인태아 상경신경절 발육에 관한 전자현미경적 연구 (Ultrastructural Study on Development of the Superior Cervical Ganglion of Human Fetuses)

  • 김대영
    • The Korean Journal of Pain
    • /
    • 제11권1호
    • /
    • pp.7-22
    • /
    • 1998
  • The development of the superior cervical ganglion was studied by electron microscopic method in human fetuses ranging from 40 mm to 260 mm of crown-rump length(10 to 30 weeks of gestational age). At 40 mm fetus, the superior cervical ganglion was composed of clusters of undifferentiated cell, primitive neuroblast, primitive supporting cell, and unmyelinated fibers. At 70 mm fetus, the neuroblasts and their processes were ensheated by the bodies or processes of satellite cells. The cytoplasm of the neuroblast contained rough endoplasmic reticulum, mitochondria, Golgi complex, Nissl bodies and dense-cored vesicles. As the neuroblasts grew and differentiated dense-cored vesicles moved away from perikaryal cytoplasm into developing processes. Synaptic contacts between the cholinergic axon and dendrites of postganglionic neuron and a few axosomatic synapses were first observed at 70 mm fetus. At 90 mm fetus the superior cervical ganglion consisted of neuroblasts, satellite cells, granule-containing cells, and unmyelinated nerve fibers. The ganglion cells increased somewhat in numbers and size by 150 mm fetus. Further differentiation resulted in the formation of young ganglion cells, whose cytoplasm was densely filled with cell organelles. During next prenatal stage up to 260 mm fetus, the cytoplasm of the ganglion cells contained except for large pigment granules, all intracytoplasmic structures which were also found in mature superior cervical ganglion. A great number of synaptic contact zones between the cholinergic preganglionic axon and the dendrites of the postganglionic neuron were observed and a few axosomatic synapses were also observed. Two morphological types of the granule-containing cells in the superior cervical ganglion were first identified at 90 mm fetus. Type I granule-containing cell occurred in solitary, whereas type II tended to appeared in clusters near the blood capillaries. Synaptic contacts were first found on the solitary granule-containing cell at 150 mm fetus. Synaptic contacts between the soma of type I granule-containing cells and preganglionic axon termials were observed. In addition, synaptic junctions between the processes of the granule-containing cells and dendrites of postganglionic neuron were also observed from 150 mm fetus onward. In conclusion, superior cervical ganglion cells and granule-containing cells arise from a common undifferentiated cell precursor of neural crest. The granule-containg cells exhibit a local modulatory feedback system in the superior cervical ganglion and may serve as interneurons between the preganglionic and postganglionic cells.

  • PDF

작은땃쥐 Crocidura suaveolens 악하선의 미세구조 (Ultrastructure of the Submandibular Gland in the Lesser White-Toothed Shrew, Crocidura suaveolens)

  • 정순정;정문진;김도경;국중기;김흥중;윤명희;박주철
    • Applied Microscopy
    • /
    • 제35권2호
    • /
    • pp.65-72
    • /
    • 2005
  • 악하선의 미세구조를 작은땃쥐 Crocidura suaveolens에서 연구하였다. 작은땃쥐의 악하선은 장액선세포와 점액선세포로 구성된 혼합샘이었다. 이 샘포에서 분비된 과립들은 도관을 거쳐 구강으로 분비되었다. 장액선세포와 점액선세포는 잘 발달된 조면소포체와 미토콘드리아 그리고 많은 분비과립을 가지고 있었다. 장액선 분비과립의 경우, 미성숙 분비과립은 무형이면서 전자밀도가 있는 작은 알갱이로만 구성되었고, 성숙 과립은 단일막으로 싸여진 완전한 원형으로 전자밀도가 있는 균질의 중앙부와 전자밀도가 있는 작은 알갱이로 구성된 주변부를 가지고 있었다. 점액선 분비과립의 경우, 미성숙 과립은 원형으로 균질한 기질과 불명확한 경계막을 가지는 반면, 성숙 과립은 균질한 기질 내에 몇 개의 전자밀도가 있는 띠를 가짐으로서 문양의 다양성 가지는 매끈한 원형이었고 명확한 경계막을 가지고 있었다. 즉 작은 땃쥐의 성숙 점액선 분비과립은 문양의 다양성을 가져 다른 포유류와 구분될 뿐만 아니라 매끈한 원형이어서 C. lasiura의 그것과도 구분되었다. 거대한 분비 과립과 미엘린소체가 과립관세포의 세포질과 내강에서 관찰되었다. 3종의 땃쥐류 침샘의 과립관에서 만 보고된 특징적 구조물인 미엘린소체는 분비세포에서 내강으로 분비되었으며 분비과립의 배출방식과 약간의 차이점을 가졌다.

Preparation of Granule Powders for Thermal Spray Coating by Utilization of Pyrophyllite Minerals

  • Kim, Yong-Hyeon;Shin, Pyung-Woo;Lee, Sang-Jin
    • 한국세라믹학회지
    • /
    • 제53권5호
    • /
    • pp.557-562
    • /
    • 2016
  • Pyrophyllite granule powders for thermal spray coating were successfully prepared through spray drying process. To produce a stable slurry, commercial pyrophyllite powder of $45{\mu}m$ in size was ball-milled for reduction of the size to $2{\sim}3{\mu}m$ and a dispersant was added to control the viscosity. Dense and spherical granules (average granule size : $59{\mu}m$) were prepared under conditions of 12,500 rpm for rotation velocity of the atomizer and 100 cps for slurry viscosity. The granules were then heat treated at $1,200^{\circ}C$ for proper handling strength and flow properties. The final granules had an apparent density of $0.725g/cm^3$ and a flow rate of 2.5 g/sec, which represent excellent properties to be used as the granule powder for thermal spray coatings.

납 내성균의 균체내 납 축적 특성 (Characteristics of Lead Accumulation in Lead-Tolerant Pseudomonas aeruginosa)

  • 조주식;이홍재;허종수
    • 한국환경농학회지
    • /
    • 제15권3호
    • /
    • pp.306-315
    • /
    • 1996
  • 납 내성균인 P. aeruginosa의 균체내 납 축적 특성, 축적형태 및 균체내에 축적된 납의 회수 방법을 조사한 결과는 다음과 같다. 납 농도가 100mg/l인 용액중에서 처리 48시간 후 납 내성균주의 납 처리율은 약 97% 이상이었다. 납이 축적된 균체를 전자현미경으로 관찰한 결과, 균체의 cell wall과 cell membrane에 많은 electron-dense granule들이 형성되어 있었으며, electron-dense granule들을 EDS로 분석한 결과, 이 granule들은 lead complex인 것으로 확인되었다. 공시균주의 균체내 축적된 납은 증류수에 의해서는 거의 탈착이 되지 않았으나 EDTA 처리에 의해서는 약 87% 이상 탈착되었다. 납이 축적된 균체를 $550^{\circ}C$에서 회화시켰을 때 건조균체량의 약 30%에 해당하는 작열잔류화합물들이 생성되었으며, 이 작열잔류화합물들을 EDS로 분석한 결과, 납이 약 86% 이상 함유되어 있는 비교적 순수한 납 화합물인 것으로 확인되었다.

  • PDF

한국산 플라나리아(Dugesia japonica Ichikawa et Kawakatsu) 유조직의 미세구조에 관한 연구 (Ultrastructural Study on the Parenchymal Cell of Korean Planaria (Dugesia japonica))

  • 장남섭
    • 한국동물학회지
    • /
    • 제30권1호
    • /
    • pp.53-70
    • /
    • 1987
  • 실험에 사용한 플라나리아는 Dugesia japonica Ichikawa et Kawakatsu로서 핵형분석에 의하여 종을 확인하였다, 이 종의 유조직을 구성하는 세포들의 세포화학적 및 미세구조적 특징을 밝히고자 본 실험을 행하였다. 세포화학적으로 방법으로는 hematoxyline-edsin, periodie, acid-schiff(PAS),PAS-alcian blue 반응 그리고 methylene blue-basic fuchisn 두으로 염색으 시행하였고, 유조직의 미세구조를 투과전자현미경으로 관찰하여 다음과 같은 결과를 얻었다. 유조직에는 두 조의 유조직 세포 이외에 봉상체형성세포와 종의 호염기성세포, 1종의 호산성세포 그리고 투명과립세포 7종의 과립세포가 관찰되었다. 1.유리유조직세포(Free parenchymal cell): 핵막 바로 주위에 세포질에는 다수의 chromatoid body가 존재하였고 세포질에 비하여 핵은 매우 컸다. 핵질에서는 뚜렷한 인을 관찰할 수 있었고 큰 염색질은 핵질에 균일하게 많이 분포되었다. 2.고정유세포( Fixed parenchymal cell): 이 세포는 불규칙한 모습으로 많은 세포돌기를 내고 있었고, 세포질에는 전자밀도가 매우 낮은 투명질에 과립성소포체, mitochondria 그리고 Golgi체등이 발달되어 었었다. 3.봉상체 형성세포(Rhabdite-forming cell): 세포질에는 전자밀도가 매우 높은 봉상체과립(0.3 x 0.9 $\mu$m)들을 포함하였으며 과립성소포체,mitochondria 그리고 Golgi체 등의 세포소기관도 매우 발달되어 있었다. 4. A형 호염기성과립세포(Basophilic granule cell type A): 세포질내에는 alcian blue에 강한 양성반응을 나타내고 전자밀도가 매우 높은 불규칙한 형태의 과립 (1.4 x 0.7 $\mu$m)들이 밀접되어 있었다. 5. C형 호기성과립세포(Basophilic granule cell type C): 세포질에는 PAS반응에 양성을 나타내는 작은 과립(0.2$\mu$m)들이 분산되어 있었다. 이 유형의 과립들은 근육층에서도 관찰되었다. 6. D형 호기성과립세포(Basophilic granule cell type D): 생긱기관 주위의 유조직에서만 관찰되었으며 세포질에는 PAS반응에 강한 양성을 보이고 또한 약한 eosinophilic도 나타내는 원형의 과립들이 대부분 집단을 이루웠다. 7. E형 호기성과립세포(Basophilic granule cell type E): 생식기관 주위의 유조직내에서만 관찰되었으며, 세포질내에는 PAS양성과립(약0.2$\mu$m)이 극소수 분산되어 있었다. 8. 호산성 과립세포(Eosinophilic granule cell): 세포질에는 eosinophilia를 나타내며, 전자밀도가 매우 높은 구형 또는 불규칙형과립(0.3$\times$0.2-8$\times$0.4$\mu$m)들이 존재하였으며, cisternae가 넓은 과립성소포체도 매우 발달되어 있었다. 9. 투명과립세포(Transparent granule cell): 본 실험에서 실시된 세포화학적 염색반응에서 음성을 나타내는 투명과립을 포함하고 있는 이같은 세포들은 D형 호염기성과립세포 주위에서 주로 관찰되었다.

  • PDF

Arthrobotrys conoides에 의한 선충포획의 전자현미경적 연구 (Electron microscopic observations on the trapping of nematode by Arthrobotrys conoides)

  • 박진숙;박용근
    • 미생물학회지
    • /
    • 제22권1호
    • /
    • pp.19-28
    • /
    • 1984
  • A. conoides에 의한 선충 포획과정을 SEM과 TEM을 이용하여 관찰하였다. 1. A. conoides는 점착성 three-dimensional networks에 의해 선충을 포획한다. 2. Trap cell은 영양균사에 비해 세포벽이 두꺼우며 endoplasmic reticulum, mitochondria 및 electron-dense granule이 풍부하다. 3. 포획기관에서만 관찰되는 전자밀도가 높은 과립은 포획기관이 선충을 점착하여 침투하는 과정에서 소실된다. 4. 포획기관과 선충이 부착된 사이에서 osmiophilic layer가 관찰되었고 바로 이 지점으로부터 침투가 일어나며, 한 포획기관에서 두 군데 이상 동시 침투가 가능하다. 5. 포획기관의 선충내 침투시 appressorium이 형성되지 않고 침투되는 경우가 있다. 6. 균주와 선충의 혼합배지를 2~3주 두었을 때, 유충들이 포자에 접착되어 죽는다.

  • PDF

한국산 노랑민달팽이(Limax flavus L.)의 표피상피세포와 점액형성세포에 관한 미세구조 및 조직화학적인 연구 (Ultrastructural and Histochemical Studies on the Epithelial Cells and Mucus-producing Cells of Korean Slug(Limax flavus L.))

  • 장남섭
    • Applied Microscopy
    • /
    • 제18권2호
    • /
    • pp.1-20
    • /
    • 1988
  • The species of the slug used in the experiment is Limax flavus L. For identifying the chemical characteristics of the epidermis, granules and mucus-producing cell of this animal is examined with methylene blue-basic fuchsin double stain and PAS-alcian blue reagent. For the ultrastructural research of the epidermal free surface, the epitheial cell and the parenchymal cell are used with scanning electron microscope and transmission elec-tron microscope respectively. I . Epidermal tissue The epidermal tissue of the slug is observed being divided into the dorsal and the ventral side(toot pad) respectively. 1) Dorsal epidermal tissue The dorsal epidermis of the slug is constituted with the simple columnar epithelium and the microvilli are compacted on the epidermal free surface. Two different types of the secretory granules of the neutral and the acid mucus are observed between the epithelial cells, and the neutral mucous granules are highest electron-dense but the acid mucous granules are observed to be electron-lucent. 2) Foot epidermal tissue The Foot epidermis is formed with the taller simple columnar epithelium than the dorsal epidermis and these cells have both a large number of the microvilli and a few number of the large villi. The secretory granules of three different types, which are acid, neutral and mixed mucous granule of two different types are observed between the epithelial cells. The neutral mucous granules are highest electron dense but the acid mucous granules are observed to be electron-lucent. II . Mucous granule-producing cell and mucus-producing cells Seven different types of the granules-producing cell and the mucus-producing cells are observed between the parenchyma. 1) A-type of acid mucous granule-producing cell The electron-lucent granules are largely occupied in the cytoplasm of these cells and then the granules are surrounded by irregular membrane. These electron-lucent granules exhibit alcianophilia with PAS-alcian blue reaction, so these granules are certified to be acid mucopolysaccharide. 2) B-type of acid mucus-producing cell The nucleus and the cytoplasm of these cells are pushed by the acid mucus of the electron-lucent toward the cell membrane. This mucus has been confirmed to be the acid mucopolysaccharide with PAS-alcian blue reagent. 3) A-type of neutral mucous granule-producing cell These cells contain the electron-dense round granules with approximately $1{\mu}m$ in diameter, which exhibit strongly PAS-positive reaction. These granules are confirmed to be the neutral mucoplysaccharide. 4) B-type of neutral mucous granule-producing cell These cells contain two different types of electron dense granules and electron-lucent granules; The former exhibits to be strongly PAS-positive and the latter to have alcianophilia reaction respectively. 5) C-type of neutral mucus-producing cell These cells are similar to the shape and the size of the B-type of mucus-producing cell but these two different types of cells are stained with reversing properties to each other. The mucus of the C-type cell that electron-lucent is largely occupied in the cytoplasm that exhibits strongly PAS-positive reaction. 6) D-type of neutral mucous granule-producing cell These cells contain round granules about $1{\mu}m$ in size which are observed to be medium electron-dense granules and those granules are stained brightly red with PAS-weak positive reaction. The granules are certified to be neutral mucopolysaccharide. 7) E-type of neutral mucous granule-producing cell These cells are similar to the shape and the size of the D-type of neutral mucous granule-producing cell. These cells contain a large number of granules with about $1{\mu}m$ in diameter showing electron-lucent and then granules are seen to be PAS-weak positive reaction. III. Parenchyma The clear cell and dark cell are found in the parenchyma of the Limax flavus L. 1) Clear cell These cells are round formed and the nucleus of the cells are larger than cytoplasm. These cells which have the electron-lucent cytosol possess poorly developed organelles. 2) Dark cell These cells are found to be dark cells due to high electron-density, which exhibit strongly methylene-blue reaction from double stain of methylene blue-basic fuchsin.

  • PDF