amine uptake
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Atmosphere ◽  
2021 ◽  
Vol 12 (11) ◽  
pp. 1502
Author(s):  
Natalie R. Smith ◽  
Julia Montoya-Aguilera ◽  
Donald Dabdub ◽  
Sergey A. Nizkorodov

This study investigated the uptake of ammonia (NH3) by secondary organic aerosol (SOA) particles generated via limonene photooxidation or ozonolysis as well as the uptake of dimethylamine (DMA) by limonene ozonolysis, α-cedrene photooxidation, or toluene photooxidation SOA in an environmental chamber between 0–50% relative humidity. In addition to the acid-base equilibrium uptake, NH3 and DMA can react with SOA carbonyl compounds converting them into nitrogen-containing organic compounds (NOCs). The effective reactive uptake coefficients for the formation of NOCs from ammonia were measured on the order of 10−5. The observed DMA reactive uptake coefficients ranged from 10−5 to 10−4. Typically, the reactive uptake coefficient decreased with increasing relative humidity. This is consistent with NOC formation by a condensation reaction between NH3 or DMA with SOA, which produces water as a product. Ammonia is more abundant in the atmosphere than amines. However, the larger observed reactive uptake coefficient suggests that amine uptake may also be a potential source of organic nitrogen in particulate matter.


2006 ◽  
Vol 1 (1) ◽  
pp. 73-85 ◽  
Author(s):  
Martin Michel ◽  
Henricus Ruhe ◽  
Annemieke de Groot ◽  
Ramiro Castro ◽  
Matthias Oelke

1998 ◽  
Vol 76 (7-8) ◽  
pp. 788-797 ◽  
Author(s):  
Nobuharu Yamaguchi ◽  
Yuka Fukushima

The present study was to investigate whether pituitary adenylate cyclase activating polypeptide (PACAP) can modify norepinephrine (NE) release in response to pancreatic nerve stimulation in anesthetized dogs. Plasma catecholamine concentrations in aortic and superior pancreaticoduodenal (SPD) venous blood were determined by a high performance liquid chromatography method. SPD venous blood flow was measured with an electromagnetic flowmeter. Pancreatic nerves were directly stimulated for 1 min (2 ms, 12 V) at various frequencies at the level of the SPD artery. Various doses of PACAP1-27 (PACAP27) were locally infused into the pancreas through the SPD artery. Nerve stimulation significantly increased both SPD venous NE concentration and its output from the pancreas in a frequency-dependent manner. With PACAP27 alone, neither SPD venous NE concentration nor its output changed significantly following the local administration of PACAP27 at any dose tested. In the presence of PACAP27, however, the net increases in NE concentration and its output in response to nerve stimulation at 2 Hz were significantly enhanced in a dose-dependent manner. The enhanced NE responses to nerve stimulation by PACAP27 were thus significantly greater than those obtained from the group receiving either PACAP27 or stimulation alone. Increases in NE concentration and its output induced by local administration of tyramine were virtually abolished by desipramine, a neural amine uptake inhibitor. However, the NE response to tyramine was not diminished by PACAP27. The results indicate that PACAP27 enhances the stimulation-induced NE release in the pancreas, and that this facilitatory effect of PACAP27 does not result from an inhibition of the neural amine uptake mechanism. The study suggests that PACAP receptor-mediated mechanisms may be involved either directly or indirectly in the local modulation of neural NE release in the canine pancreas in vivo.Key words: presynaptic, sympathetic nerve, neuropeptide, tyramine, reuptake, anesthetized dog.


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