Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Formazans”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 145 records · Page 8Linked to original sources

[Spontaneous nitroblue terazolium reduction test (NBT) by peripheral blood granulocytes in healthy subjects and in some hematologic syndromes].

The NBT reduction test and determination of alkaline phosphatase activity in the peripheral blood granulocytes (FAG) were done in 94 subjects including 30 blood donors donating blood for the first time and 64 cases of various haematological syndromes. Raised proportion of formazan granulocytes was found in patients with pancytopenia, acute myeloid leukaemia, chronic myeloid leukaemia during blastic exacerbation, Hodgkin's disease during exacerbation and lymphosarcoma. These results correlated with increased FAG activity. Lower proportions of formazan granulocytes capable of spontaneous reduction of NBT were found in patients with chronic myeloid leukaemia, in immunohaemolytic anaemias and in plasmocytoma. Of all the above syndromes only in chronic myeloid leukaemia impaired ability of formazan cell formation parallelled decreased FAG activity. In the remaining syndromes FAG activity in the granulocytes was normal or raised. In the remissions of Hodgkin's disease a fall was observed in the proportion of formazan granulocytes to values of FAG. In chronic myeloid leukaemia the proportion of formazan cells showed considerable fluctuations and no correlation was observed between the proportion of formazan cells and FAG activity.

Alkaline Phosphatase↗

Effect of solvent on tetrazolium reaction.

The rate of color development of a tetrazolium formazan is shown to be inversely proportional to the dielectric constant of the solvent medium and directly proportional to the hydrogen-bonding capability of solvent mixtures having the same dielectric constant. The geometric isomers of the formazans have different absorbance maxima, and the wavelength of maximum absorbance of a mixture of formazans in different solvents depends upon which isomer predominates in that solvent. The trans-syn-isomer (blue form) of blue tetrazolium has a maximum absorbance at 625 nm in dimethylformamide while the trans-anti-isomer (red form) absorbs at 517 nm in methanol. The absorbance maxima of the corresponding isomers of the formazans of triphenyltetrazolium occur at 535 and 485 nm, respectively. Water and/or methanol (to a lesser extent) are important in the stabilization of the trans-anti-isomer, since the small size of these two substances allows them to form strong intermolecular hydrogen bonds with one or both nitrogen atoms of the azo linkage, thereby preventing the formation of the intramolecular hydrogen bonding exhibited by the trans-syn-isomer. The formazan produced by the reaction of corticosteroids with tetrazolium in strongly basic media can lose a reduction unit and be reoxidized to the tetrazolium. This reaction is solvent dependent and occurs at a much faster rate in chloroform than in alcohol USP.

Adrenal Cortex Hormones↗

Nitroblue-tetrazolium test for the functional evaluation of phagocytic cells: a critical analysis of the methodology.

The reduction of NBT to formazan has been suggested as an indicator of the reduction potential of biological systems. An increase in the amount of reduced formazan reflects the activation of the hexose monophosphate shunt of phagocytes cultivated in vitro, as a result of cellular stimulation by chemical or biological factors, or during phagocytosis. This phenomenon has been widely used for the determination of activated phagocytes by different methods. However, the technical limitations of these methods have not been evaluated carefully. In the investigations presented here three solvents for formazan, pyridine, dioxane and dimethyl-formamide, have been tested for their suitability as extraction agents. For each solvent the optimal wavelength for photometric evaluation has been determined and dose relation curves between dissolved formazan and OD have been established. Several factors (time, temperature, pH, contamination with water or acid) affecting the dissolving properties and stability of formazan in different solvents have been investigated. With the solvents tested, dioxane proved to be the most suitable agent for extracting NBF. Thus a methodology for the quantitative evaluation of NBT has been established. This method can be used for the identification of activators as well as of inhibitors of the phagocyte system.

Chemical Phenomena↗

Adhering lung macrophages produce superoxide demonstrated with desferal-Mn(IV).

It has been shown that H2O2, the dismutation product of O2., is produced at cell-surface interfaces. Nevertheless, the relationships between the degree of attachment itself, type of surface, and O2. production are not clear. Superoxide production can be measured by the O2.-dependent reduction of nitroblue tetrazolium to an insoluble formazan. Superoxide dismutase (SOD) may be unable to scavenge O2. produced between alveolar macrophages (AM) and a surface. Desferal-Mn(IV) (Des-Mn), a low molecular weight mimic of SOD, is protective against paraquat toxicity in vivo, presumably because of specificity for O2-. Using that assumption, Des-Mn was used to measure O2. production that occurred during adherence of AM. AM suspensions were placed on fibronectin-coated glass coverslips or uncoated glass coverslips or non-stick tissue culture plates. Adherence to the surfaces varied with fibronectin greater than glass greater than non-stick and the percent formazan positive cells was 60, 24, and 4, respectively. With SOD present, the percentage of formazan positive cells were 40, 17, and 2; however, in the presence of Des-Mn the percent stained cells was 4, 4, and 0. When phorbol myristate acetate (PMA) was added during adherence, the percent of formazan positive cells was 82, 57, and 44, respectively. With PMA, Des-Mn was able to inhibit 88-100% of formazan staining whereas SOD inhibition decreased more markedly with increasing adherence. These results indicated that the degree of attachment correlated with both the degree of NBT reduction and the relative effectiveness of Des-Mn versus SOD to scavenge O2..

Animals↗

Spectrophotometric measurement of experimental brain injury.

Freshly sampled brain tissue exposed to 2,3,5-triphenyltetrazolium chloride (TTC) acquires a red color because mitochondrial enzymes reduce the colorless TTC to a red, water-insoluble formazan deposit. Pan-necrotic areas remain uncolored, which enables quantitation of experimental brain injury by optical scanning and image analysis of serial slices to determine the relative volume of red versus infarcted, non-stained, tissue. The accuracy of this method can be challenged, however, when infarction is accompanied by areas of partial, scattered injury where differences in coloration are difficult to see or quantify. We tested the feasibility of measuring scattered injury using a principle which underlies standard assays for in vitro cell survival, namely extracting deposited formazan with a solvent and measuring its level by spectrophotometry. Anesthetized, adult Sprague Dawley rats were subjected to 12 min of cerebral ischemia to produce selective, delayed neuronal death in hippocampus, striatum and cortex. Some rats also received 6 h of whole-body hypothermia treatment (31.5-32.5 degrees C) immediately after ischemia. Ischemia rats and non-operated controls were sacrificed 1 week later. Hippocampus and portions of cerebrum were incubated 90 min in a 2% TTC solution and then soaked in a measured volume of 50:50 ethanol and dimethylsulfoxide to extract the red formazan product. Spectrophotometric measurements of the extract showed a diminished formazan coloration (absorbance/g brain) in all samples from the untreated ischemia group compared to non-operated controls. This apparent brain injury was attenuated in the group of ischemia rats that received hypothermia treatment. We conclude that solvent extraction and spectrophotometric quantitation of formazan has potential utility as an objective way to index experimental brain injury even if this is diffuse in nature and not amenable to measurement by conventional image analysis techniques.

Animals↗

A cytochemical staining procedure for succinate dehydrogenase activity in pre-ovulatory mouse oocytes embedded in low gelling temperature agarose.

We describe a cytochemical staining procedure for succinate dehydrogenase (SDH) activity in pre-ovulatory mouse oocytes. The oocytes were embedded in low gelling temperature agarose and treated with caffeine before cytochemical staining in the presence of nitro blue tetrazolium (NBT), phenazinemethosulfate (PMS), and succinate. This resulted in intense staining of the oocytes by formazan precipitate. The level of aspecific formazan production in the absence of succinate was very low. We applied the procedure to oocytes matured in vitro and found that the location of the formazan precipitate as a result of SDH activity correlated well with the location of mitochondria. The chromatin of the cytochemically stained oocytes could subsequently be analyzed by means of the DNA-specific fluorochrome DAPI. In pre-ovulatory oocytes, we found a correlation between chromatin organization and the location of mitochondria: in oocytes with an intact germinal vesicle the mitochondria were uniformly distributed in the cytoplasm, as shown by fine grains of formazan precipitate. In oocytes with condensed chromatin the mitochondria apparently had clustered, because the formazan precipitate was more coarse in these cells.

Animals↗

Nitroblue tetrazolium (NBT) reduction by bacteria. Some properties of the reaction and its possible use.

All the S. albus, E. coli and P. aeruginosa strains examined reduced nitroblue tetrazolium (NBT) to dark blue formazan. The amount of formazan produced was proportional to the number of bacteria. Under the same growth conditions, an equal number of bacteria of various strains produced different amounts of formazan. However, there were statistically verified differences in the NBT-reduction between the three species examined. The NBT-reduction took place in all phases of growth but was most intense in the early logarithmic phase. NBT was found to be toxic for bacteria, and the different strains had varying sensitivity to that effect. The NBT-reaction was markedly enhanced by phenazine methosulphate (PMS). The blue colour of formazan produced from NBT has an advantage over the red colour from triphenyltetrazolium chloride (TTC) if the reaction occurs in the presence of haemoglobin often present in biological materials. With NBT and PMS, 10(6)--10(7) bacteria are needed to form detectable amounts of formazan. The NBT-reduction by bacteria may be useful for measuring the influence of bactericidal, bacteriostatic or growth-stimulating factors on bacteria.

Bacteria↗

Mitochondrial and nonmitochondrial reduction of MTT: interaction of MTT with TMRE, JC-1, and NAO mitochondrial fluorescent probes.

BACKGROUND: Bioreduction of water-soluble tetrazolium salts (e.g., MTS, XTT, and MTT) to their respective formazans is generally regarded as an indicator of cell "redox activity." The reaction is attributed mainly to mitochondrial enzymes and electron carriers. However, MTT reduction may also be catalyzed by a number of other nonmitochondrial enzymes. The goal of this work was to establish the sites of MTT reduction in intact HepG2 human hepatoma cells in culture. METHODS: In order to establish the subcellular localization of the sites of reduction of MTT, we imaged the formation of MTT-formazan deposits using backscattered light confocal microscopy. Mitochondria were visualized in viable cells using fluorescent dyes that bind in a manner dependent (JC-1 and TMRE) or independent (NAO) of mitochondrial electric potential. RESULTS: Only 25-45% of MTT-formazan was associated with mitochondria after 25 min of incubation. No more than 25% of the mitochondrial area on images was occupied by MTT-formazan. Mitochondrial fluorescence of TMRE, NAO, and the monomeric form of JC-1 decreased rapidly in cells incubated with MTT. However, the intensity of fluorescence of JC-1 aggregates dropped by less than 30% at the onset of incubation and remained constant as reduction of MTT proceeded further. CONCLUSIONS: (1) Most of MTT-formazan deposits are not coincident with mitochondria. (2) Monomeric JC-1, as well as TMRE and NAO, accumulating in mitochondria may be displaced by MTT. Thus, the presence of positively charged organic compounds (like MTT) may distort measurements of mitochondrial transmembrane electric potential, which are based on accumulation of fluorescent dyes.

Aminoacridines↗

Calibration of a flow cytometric assay of glucose-6-phosphate dehydrogenase activity.

The reduction of tetrazolium salts to colored formazans is a reaction which has been exploited both in histo- and cytochemistry. Tetrazolium salts forming fluorescent formazans prove suitable for measuring defined cellular dehydrogenase activities in automated processes. This study considers an important aspect of formazan measurement in flow cytometry, namely, calibration. Calibration is performed by correlating the number (and fluorescence intensity) of formazan-bearing cells measured by flow cytometry with simultaneously performed biochemical analyses of the same material. The method is demonstrated by an example of glucose-6-phosphate dehydrogenase. Using the data of a typical experiment, the enzyme activity is expressed in femtomol of hydrogen transferred per cell during incubation time. Furthermore, through spatially resolved double excitation of formazan and nuclear DAPI fluorescence, an independent analysis of cell cycle and cellular enzymatic activity is established.

Breast Neoplasms↗

[Nitroblue-tetrazolium test in isolated human monocytes].

Depending upon the NBT charge 50 to 80% of isolated non stimulated human monocytes reduce NBT ro morphologically demonstrable Formazan. Similar to neutrophils two different patterns of reaction are exhibited: discrete load with finely distributed Formazan granula surrounding the nucleus; massive reaction with large distributed Formazan granula surrounding the nucleus; massive reaction with large Formazan deposits throughout the cytoplasma. In a low percentage morphologically desintegrated, massive loaden cells appear. After an additional incubation in medium without NBT the number of these necrotic cells increases. The phagocytosis of IgG-coated red cells is impaired after incubation of the monocytes in NBT. In the presence of an alkylating agent not only the NBT-reaction is inhibited; the number of necrotic cells is also diminished. Apparently the Formazan is cytotoxic. The significance of these results in particular in cases of enhanced NBT reduction is discussed. Compared with the findings of other authors concerning the neutrophils the monocytes possess a markedly stronger NBT reducing activity. Considering the lower bactericidal capacity of the monocytes NBT reduction does not in every case parallel bactericidal activity.

Antineoplastic Agents↗

Rapid colorimetric assay for cell growth and survival. Modifications to the tetrazolium dye procedure giving improved sensitivity and reliability.

A convenient way to estimate the number of viable cells growing in microtitre tray wells is to use a colorimetric assay and an automatic microplate scanning spectrophotometer. One such assay, developed by Mosmann, depends on the reduction by living cells of tetrazolium salt, MTT, to form a blue formazan product. However the original technique has several technical limitations, namely a less than optimal sensitivity, a variable background due to protein precipitation on adding an organic solvent to dissolve the blue formazan product, and a low solubility of the product. These problems have been overcome by the following modifications: avoidance of serum in the incubation medium, thus overcoming precipitation problems in the organic solvent; avoidance of phenol red in the incubation medium, thus avoiding the use of acid in the final solvent which altered the spectral properties of the formazan; elimination of the medium containing MTT after the reaction and subsequent use of pure propanol or ethanol to rapidly solubilize the formazan; use of a higher concentration of MTT; use of half-area microtitre trays to increase the spectrophotometer readings from a given amount of formazan; use of a more judicious reference wavelength in a dual wavelength spectrophotometer. With these modifications the reliability and sensitivity of the test have been increased to the point where it can in many cases replace the [3H]thymidine uptake assay to measure cell proliferation or survival in growth factor or cytotoxicity assays. Examples of its use in IL-2 assays are given.

Animals↗

A colorimetric assay for quantitating bovine neutrophil bactericidal activity.

A colorimetric assay was developed for quantitating bovine neutrophil bactericidal activity against Staphylococcus aureus. The procedure used the tetrazolium compound, 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT). The assay was conducted by incubating antibody-opsonized S. aureus with neutrophils in microtiter plates for 1 h at a ratio of 10 bacteria per neutrophil. Neutrophils were then lysed with saponin. The MTT was added and samples were incubated for 10 min. Live S. aureus reduced MTT to purple formazan. Dead bacteria and lysed neutrophils did not react with MTT. Bacterially-reduced formazan was solubilized by adding isopropanol and formazan production was quantitated by measuring absorption at 560 nm. Absorption of formazan was directly related to viable bacteria cell number and was used to determine the number of S. aureus not killed by neutrophils. The percentage of bacteria killed by neutrophils was determined by extrapolation from a standard formazan curve that was derived by incubating MTT with known numbers of S. aureus. The colorimetric MTT assay detected suppressed bactericidal activity after in vitro treatment of bovine neutrophils with colchicine, cytochalasin B, or phorbol 12-myristate 13-acetate. In vitro treatment of neutrophils with low levels of recombinant bovine interferon gamma (rBoIFN-gamma) enhanced bactericidal activity, whereas high levels decreased activity. These results suggest the colorimetric MTT bactericidal assay is efficacious in detecting modulation of bovine neutrophil bactericidal activity. Furthermore, the MTT assay has many advantages over traditional bactericidal assays in that it is sensitive, inexpensive, requires less than 3 h to complete, and can analyze many neutrophil samples in a single day.

Analysis of Variance↗

Understanding the biological activity of amyloid proteins in vitro: from inhibited cellular MTT reduction to altered cellular cholesterol homeostatis.

1. MTT is taken into the cell through endocytosis and is reduced and accumulated in a population of acidic vesicles. Reduced MTT formazan is exocytosed to form needle-like formazan crystals at the cell surface. Mitochondria are unlikely to play a significant role in cellular MTT reduction. 2. Amyloid fibrils inhibit cellular MTT reduction indirectly by enhancing MTT formazan exocytosis. All protein fibrils with beta-pleated sheet structure which have been examined enhance MTT formazan exocytosis and induce neurotoxicity. 3. Cellular free cholesterol regulates the exocytosis of the intracellular MTT formazan-transporting vesicles and these vesicles may be involved in cellular cholesterol homeostasis. 4. Amyloid fibrils inhibit cholesterol esterification and alter the distribution of free cholesterol in neurons. 5. Amyloid fibril-induced alterations in cellular cholesterol metabolism and vesicle trafficking may contribute to neurodegeneration in vivo.

Alzheimer Disease↗

Variables affecting two electron transport system assays.

Several methodological variables were critical in two commonly used electron transport activity assays. The dehydrogenase assay based on triphenyl formazan production exhibited a nonlinear relationship between formazan production (dehydrogenase activity) and sediment dilution, and linear formazan production occurred for 1 h in sediment slurries. Activity decreased with increased time of sediment storage at 4 degrees C. Extraction efficiencies of formazan from sediment varied with alcohol type; methanol was unsatisfactory. Phosphate buffer (0.06 M) produced higher activity than did either U.S. Environmental Protection Agency reconstituted hard water or Tris buffer sediment diluents. Intracellular formazan crystals were dissolved within minutes when in contact with immersion oil. Greater crystal production (respiration) detected by a tetrazolium salt assay occurred at increased substrate concentrations. Test diluents containing macrophyte exudates produced greater activity than did phosphate buffer, U.S. Environmental Protection Agency water, or ultrapure water diluents. Both assays showed decreases in sediment or bacterial activity through time.

Journal Article↗

Cell-specific respiratory activity of aquatic bacteria studied with the tetrazolium reduction method, cyto-clear slides, and image analysis.

We present an improvement of the INT [2-(p-iodophenyl)-3-(p-nitrophenyl)-5-phenyltetrazolium chloride)] reduction method using Cyto-Clear slides, the fluorochrome DAPI (4(prm1),6(prm1)-diamidino-2 phenylindole), and an image analysis system. With this method we were able to simultaneously measure cell dimensions and formazan crystals as indicators of the respiratory activity of single bacteria. The method was tested on a natural bacterioplankton community of an oligotrophic high mountain lake (Gossenkollesee, Tyrolean Alps, Austria, 2,417 m above sea level) in midwinter ((symbl)1-m-thick ice and snow layer; dissolved organic carbon, 0.51 mg liter(sup-1); water temperature, 2(deg)C). About 25% of planktonic bacteria were respiratorily active, and a complex pattern of bacterial morphologies and specific respiratory activities was observed during a time series of INT incubation. Rod-shaped bacteria with cell lengths of between 1.6 and 4.8 (mu)m already showed visible activity after 0.5 h of INT incubation. Small cells (rods and cocci) in the size fraction <1.6 (mu)m and long filamentous bacteria (up to 120 (mu)m) were visibly active only after a 2-h incubation period. After 8 h of incubation, more than 90% of all cells between 3.2 and 6.4 (mu)m in cell length were respiratorily active, whereas only 5% of cells <1.6 (mu)m and 50% of filamentous bacteria contained formazan grains. We could distinguish five major bacterial phenotypes that showed distinct activity patterns with respect to incubation period and numbers and sizes of formazan crystals. There was no correlation between the total formazan volume per active cell and bacterial cell volume, and for any size class of active bacteria, total formazan volumes varied by about 2 orders of magnitude after 8 h of incubation. This indicates that cell-specific activity is extremely variable and is not related to size and that a small portion of all cells may account for the overall activity.

Journal Article↗

Metabolism of benzoquinone by yeast cells and oxidative characteristics of corresponding hydroquinone: application to highly sensitive measurement of yeast cell density by using benzoquinone and a chemiluminescent probe.

The metabolic efficiency of seven derivatives of 1,4-benzoquinone (BQ) by yeast cells and the oxidative characteristics of the corresponding hydroquinones (HQs) were studied by electrochemical, spectrophotometric and chemiluminescent methods. The spectrophotometric method was based on the reduction of a tetrazolium salt to formazan dye during the autoxidation of HQs generated by yeast cells under alkaline conditions. The amounts of HQs detected directly by the electrochemical method did not agree with those calculated from the formazan dye obtained by the spectrophotometric method. A tetrazolium salt was reduced to a formazan dye by both the superoxide anion radical (O2-*) generated during the autoxidation of 2,3,5,6-tetramethyl-1,4-HQ and by HQ itself. Little formazan dye was formed, and hydrogen peroxide (H2O2) was then finally produced during the autoxidation of 1,4-HQ or 2-methyl-1,4-HQ. Formazan dye and H2O2 were generated at a certain ratio during the autoxidation of derivatives of dimethyl-1,4-HQ or 2,3,5-trimethyl-1,4-HQ. The analytical method based on chemiluminescence with lucigenin and 2,3,5,6-tetramethyl-1,4-BQ was applied to highly sensitive measurement of the yeast cell density. A linear relationship between the chemiluminescence intensity and viable cell density was obtained in the range of 1.2 x 10(3) - 4.8 x 10(4) cells/ml. The detection limit was 4.8 x 10(2) cells/ml.

Benzoquinones↗

[An experimental study on a chemosensitivity test with alginate microcapsule. Feasibility of in vivo succinic dehydrogenase inhibition test].

A new chemosensitivity test was evaluated by the MTT colorimetric asay with human tumor cell lines encapsulated in alginate microcapsules with semipermeable membranes. The proliferation of KATOIII in the microcapsules rapidly increased on the 4th day after the encapsulation. The change expressed on the proliferation curve of the encapsulated KATOIII was approximately 2 days behind the proliferation of the suspension culture. The encapsulated cell number reversed and further proliferation was recognized after the 12th day. After the incubation for 5 hours of encapsulated KATOIII with the medium supplemented with 0.5% MTT, a blue formazan crystal formation was observed radiating around the cells in the capsules. MTT assay depends on the cellular reduction of the absorbance spectra at 540 nm (OD540nm), for complete solubilization of the formazan by DMSO. The formazan formation was observed more significantly in serum medium culture than in serum free medium. In MIT assay when 0.1 mol succinic acid was added, OD540nm of encapsulated KATOIII increased by approximately 50% and its sensitivity also increased greatly. In comparison the results of MTT assay for encapsulated KATOIII and MKN28 with suspended cells under the same conditions (0.1, 1, 10 micrograms/ml of MMC and ADR, 0.5, 5, 50 micrograms/ml of 5FU, 10, 30, 50 micrograms/ml of CDDP), the calculated inhibition index (%) with encapsulated cells were similar to the percentages obtained in the former MTT assay. In this study with microcapsules, the formazan formation in the capsules and the absorbance were macroscopically inhibited when the drug concentration was increased. The encapsulated KATOIII, which was implanted intraperitoneally into rat with a 16-gauge needle, was recovered at a rate of 70.8% on the 8th day and at a rate of 54.5% on the 16th day. The recovered encapsulated KATOIII proliferated remarkably forming cell clots on the 8th day after implantation. Incubation with MTT promoted formazan formation and sufficient cell viability was recognized. The Tegafur concentration in the intraperitoneal microcapsules and the microcapsules containing KATOIII after the intravenous administration of Tegafur was similar to the intrahepatic level. The 5FU level in the microcapsules containing KATOIII was higher than that in the capsules alone. In an attempt to conduct an in vivo chemosensitivity test, encapsulated KATOIII and MKN28 were intraperitoneally implanted, 4 mg/kg of MMC, ADR and CDDP, and 75mg/kg of 5FU were intravenously administered on the 2nd and 4th days after the implantation. On the 6th day, MTT assay was performed on the recovered microcapsules containing cells and the inhibition index was calculated.(ABSTRACT TRUNCATED AT 400 WORDS)

Alginates↗

[Histochemical localization of nitric oxide synthase in the human placenta].

OBJECTIVES: To study localization, distribution and activity of nitric oxide synthase (NOS) in the human placenta and to speculate the action of nitric oxide (NO) during pregnancy. METHODS: NADPH-diaphorasc histochemical method was used to indicate the distribution, localization and activity of NOS in the placentae of normal term pregnancy (n = 21). Severe pregnancy induced hypertension (PIH) (n = 15), intrauterine growth retardation (IUGR) (n = 2) and villi of early pregnancy (n = 16). RESULTS: The NOS reactive product called blue formazan was found in most of syncytiotrophoblast (STr) and located in top of cells in severe PIH and IUGR placentae. In normal term placentae the blue formazan was found in STr and located in base of cells. The number of blue formazan was more than that of PIH and IUGR placentae. Endothelial cells of most capillaries of the terminal villi in severe PIH and IUGR placentae were found to be deposited with blue formazan, but in normal term pregnancy, blue formazan was found only on rare occasion. CONCLUSION: Distribution and localization of NOS in placentae of normal term pregnancy, severe PIH and IUGR cases and early villi are specific. The NOS activity of STr in severe PIH placentae and IUGR placentae are lower than that of normal term placentae. The distribution and localization of NOS within the STr in severe PIH placentae and IUGR placentae are different from those in normal term placentae. The low activity of NOS secreted by placenta may be relative to the pathogenesis of PIH and IUGR.

Adult↗