共查询到20条相似文献,搜索用时 15 毫秒
1.
We studied the localization of the epidermal growth factor (EGF) in eccrine and apocrine sweat glands with light microscopic and electron microscopic immunohistochemistry. Anti-human EGF (anti-hEGF) polyclonal antiserum and anti-hEGF monoclonal antibody (MAb) were used for the study. Light microscopic immunohistochemistry with monoclonal and polyclonal antibodies showed that hEGF-like immunoreactivity was strongly positive in the myoepithelial cells and weakly positive in the secretory cells of eccrine sweat glands. In apocrine sweat glands, it was strongly positive in the secretory cells as well as in the myoepithelial cells. Immunoelectron microscopy with polyclonal antibody showed that hEGF-like immunoreactivity was present in secretory granules of apocrine secretory cells. These granules had mitochondrion-like internal structure. No reactivity was observed on the eccrine secretory cells by immunoelectron microscopy. Neither dark cell granules nor mitochondria in eccrine secretory cells were labeled with anti-hEGF antibody. In both eccrine and apocrine sweat glands, hEGF-like immunoreactivity was diffusely present in the cytoplasm of myoepithelial cells. However, nuclei and mitochondria of myoepithelial cells were devoid of immunoreactivity for hEGF. Our observations indicate that apocrine sweat glands may secrete more hEGF in the sweat than eccrine sweat glands. 相似文献
2.
3.
Bechara FG Sand M Altmeyer P Hoffmann K 《Plastic and reconstructive surgery》2007,119(3):1124-5; author reply 1125-6
4.
5.
6.
Dr. Bryce L. Munger 《Cell and tissue research》1965,67(3):373-389
Summary The apocrine sweat glands of cat and monkey have been studied by light and electron microscopy. The apocrine secretory cells of the cat are columnar cells with prominent apical cytoplasmic caps extending into the gland lumen beyond the zone of terminal bars (zonulae occludentes). Many secretory vacuoles are present in the cytoplasm, and they contain acid mucopolysaccharide demonstrable by light microscopy. These secretory vacuoles arise from prosecretory vacuoles in the region of the Golgi apparatus and are liberated from the apical cell surface as in other merocrine cells. The apocrine duct is short and the cells have scant mitochondria. The apocrine secretory cells of the monkey have secretory vacuoles similar to those of the cat but are fewer in number. The monkey apocrine cells also contain unidentified bodies similar to those seen in Langerhans cells of the epidermis. These cells liberate secretory vacuoles in a merocrine manner. Apocrine or decapitation secretion is regarded as an artifact.This investigation was supported in part by United States Public Health Service research grants GM-03784 and GM-10102 from the Institute of General Medical Sciences. 相似文献
7.
8.
9.
Dr. Bryce L. Hunger 《Cell and tissue research》1965,68(6):837-851
Summary The secretory cells of human apocrine sweat glands are characterized by the presence of large mitochondria, which have scant cristae and an electron opaque matrix. Electron opaque granules, presumed to be a keratin, are present in the supranuclear cytoplasm. The keratin granules contain histochemically demonstrable SH, SS, and lipid groups, and they have a typical appearance by electron microscopy. Secretory vacuoles containing mucopolysaccharide are formed in association with the Golgi apparatus and are liberated from the cytoplasm by a merocrine mechanism. The duct cells of human apocrine glands contain few organelles and are presumed to alter the secretion little, if at all. The term apocrine should be retained, although the cells secrete by a merocrine mechanism, and used in a generic sense to designate a defined group of epidermally derived glands.This investigation was supported in part by Public Health Service research grants GM-03784 and GM-10102 from the Institute of General Medical Sciences. 相似文献
10.
The distribution pattern of glycoconjugates in human eccrine sweat glands has been studied by the binding of newly discovered lectins and by antibodies against a chondroitin sulphate proteoglycan and chondroitin sulphate glycosaminoglycans. Mannose-specific lectins labelled large intracellular granules, part of which could be extended cisternae of the endoplasmic reticulum or Golgi apparatus. In contrast, lectins specific for terminal mannose/glucose residues predominantly labelled basement membranes and the glycocalyx. Lectins recognizing terminal N-acetylgalactosamine groups left most parts of the glands unstained, but stained some dark cells intensely. These last cells were also intensively labelled by N-acetylglucosamine-specific and by fucose-specific lectins. Sialic acid residues were preferentially located in luminal borders of secretory coils. No terminal galactose residues were detected. All antibodies against chondroitin glycoconjugates stained large granules similar to those revealed by the mannose-specific lectins in the secretory cells. The basement membrane is only stained by the proteoglycan antibody and the chondroitin-6-sulphate antibody.Thus, a complex composition of glycoconjugates exists not only in matrix elements but also in the cells of eccrine glands of the human skin. A possible secretion of glycoconjugates is discussed. 相似文献
11.
N Kondo M Shibasaki K Aoki S Koga Y Inoue C G Crandall 《Journal of applied physiology》2001,90(5):1877-1881
The purpose of this study was to identify the pattern of change in the density of activated sweat glands (ASG) and sweat output per gland (SGO) during dynamic constant-workload exercise and passive heat stress. Eight male subjects (22.8 +/- 0.9 yr) exercised at a constant workload (117.5 +/- 4.8 W) and were also passively heated by lower-leg immersion into hot water of 42 degrees C under an ambient temperature of 25 degrees C and relative humidity of 50%. Esophageal temperature, mean skin temperature, sweating rate (SR), and heart rate were measured continuously during both trials. The number of ASG was determined every 4 min after the onset of sweating, whereas SGO was calculated by dividing SR by ASG. During both exercise and passive heating, SR increased abruptly during the first 8 min after onset of sweating, followed by a slower increase. Similarly for both protocols, the number of ASG increased rapidly during the first 8 min after the onset of sweating and then ceased to increase further (P > 0.05). Conversely, SGO increased linearly throughout both perturbations. Our results suggest that changes in forearm sweating rate rely on both ASG and SGO during the initial period of exercise and passive heating, whereas further increases in SR are dependent on increases in SGO. 相似文献
12.
John A. Terzakis 《Cell and tissue research》1964,64(4):493-509
Summary The ultrastructure of monkey eccrine sweat glands is described. The secretory portion of the sweat gland is discussed in detail. The morphological differences in the secretory coil using three different fixatives and fixative combinations are emphasized. The secretory product of dark cells is seen to have three distinct appearances depending upon the fixative used. The biochemical significance of the latter finding is discussed. The appearance of clear cell cytoplasmic processes is described using the different fixatives. The similarity of adjacent clear cell processes to those of avian salt glands is pointed out and discussed. Evidence is presented to indicate that dark cells arise from clear cells via an intermediate cell type. The appearance of the clear cell plasma membrane is described and the necessity for the use of the general term multilaminar plasma membrane is discussed.Supported by U.S.P.H.S. grant 5 T 1-GM-29 F-04 AS. The author would like to express his gratitude to the Lederle Laboratories and in particular to Dr.James Vickers for providing the tissue. Sincere thanks is given to Mrs.Dagmar Graham and Mrs.Ditza Springer for technical assistance and also to MissMary Lorenc for preparation of the diagram. In addition, I would like to thank Dr.J. A. G. Rhodin for his criticism and advice. 相似文献
13.
14.
The metabolism and hormonal responses of human eccrine sweat glands isolated by collagenase digestion. 下载免费PDF全文
T Kealey 《The Biochemical journal》1983,212(1):143-148
1. Collagenase digestion of biopsies of human skin yields eccrine sweat glands that can be picked out under binocular light microscopy. The glands are viable as determined by the exclusion of Trypan Blue, the uptake of Methylene Blue, electron microscopy, the rate of lactate dehydrogenase release, ATP content and the rates of glucose oxidation and lactate release. 2. It is proposed that eccrine sweat glands engage in aerobic glycolysis, which accounts for the high content of lactate in sweat (15--60 mM) and the high lactate/pyruvate ratio (100: 1) [Emrich & Zwiebel (1966) Pfluegers Arch. 290, 315--319]. 3. Acetylcholine causes a 4-fold increase in cyclic GMP content, dilatation of the intercellular canaliculi and a reversible, atropine-sensitive, 2-fold increase in the rates of glucose oxidation and lactate release. 4. Isoprenaline causes a 2.5-fold increase in cyclic AMP content. Phenylephrine does not significantly alter cyclic nucleotide metabolism. 相似文献
15.
Haihong Li Lu Chen Mingjun Zhang Shijie Tang Xiaobing Fu 《Cell and tissue research》2013,354(3):897-902
Interactions between the extracellular matrix (ECM) and epithelial cells are necessary for the proper organization and function of the epithelium. In the present study, we show that human eccrine sweat gland epithelial cells cultured in matrigel, a representation of ECM components, constitute a good model for studying three-dimensional reconstruction, wound repair and regeneration and differentiation of the human eccrine sweat gland. In matrigel, epithelial cells from the human eccrine sweat gland form tubular-like structures and then the tubular-like structures coil into sphere-like shapes that structurally resemble human eccrine sweat glands in vivo. One sphere-like shape can be linked to another sphere-like shape or to a cell monolayer via tubular-like structures. Hematoxylin and eosin staining has revealed that the tubular-like structures have a single layer or stratified epithelial cells located peripherally and a lumen at the center, similar to the secretory part or duct part, respectively, of the eccrine sweat gland in sections of skin tissue. Immunohistochemical analysis of the cultures has demonstrated that the cells express CK7, CK19, epithelial membrane antigen and actin. Thus, matrigel promotes the organization and differentiation of epithelial cells from the human eccrine sweat gland into eccrine sweat gland tissues. 相似文献
16.
The ultracytochemical localization of adenylate cyclase (AC) was studied after stimulation with pituitary adenylate cyclase activating peptide (PACAP) in human sweat glands. PACAP stimulated AC in both eccrine and apocrine glands. In the secretory cells, enzymatic activity was associated with membranes involved in the secretory mechanism. In both glands, the cells of the excretory duct and myoepithelial cells presented AC activity. These localizations of enzymatic activity suggest a role for PACAP in regulating glandular secretion. 相似文献
17.
Localization of steroid hormone receptors in the apocrine sweat glands of the human axilla 总被引:5,自引:1,他引:4
The apocrine axillary glands, regarded as pheromone-producing scent glands, do not begin to function until puberty. Accordingly, sex hormones should have an impact on their activity, and the present study was designed to investigate the localization of androgen receptor (AR) and estrogen receptors (ER and ER) in those glands. Strong nuclear immunoreactivity for AR and ER was found in the secretory epithelium. In AR especially, staining intensity was correlated with the height of the epithelium with more intense immunoreactivity in tall segments. Since the lower epithelium has been considered inactive or resting, our results suggest a correlation between steroid-receptor expression and secretory activity. Androgens are known to upregulate the cholesterol biosynthesis, and cholesterol may be used as precursor for pheromones. Accordingly, the results of this study establish a possible link between steroid hormone action and induction of pheromone production in the apocrine axillary glands. 相似文献
18.
The presence and cellular distribution of subunits of the V1 sector of the vacuolar-type H+-ATPase (V-ATPase) was investigated in isolated human eccrine sweat glands. In every instance, V-ATPase was located in the cytoplasm and apical membranes of the luminal cells of the reabsorptive duct segment. In the secretory coil, both diffuse and perinuclear staining was demonstrated in the secretory cells, with additional expression at the apical and basolateral membranes and on the intercellular canaliculi. There was no detectable difference in V-ATPase expression as a result of prior application of 100µM acetylcholine. 相似文献
19.
20.