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Nitric oxide (NO) is a cell-signaling agent in physiologic processes including vasodilation, inhibition of clotting, and inflammation. A sensitive chromatography-mass spectrometry method was developed to measure two of its metabolites, nitrite(NO-2)and nitrat(NO3),in biological fluids. Internal standards,NO-152and15NO-3, were added to the fluid at concentrations of 80.0 and, respectively.Natural14NO-2and14NO-3plus the internal standards were then converted to volatile derivatives:

Because biological fluids are so complex, the derivatives were first isolated by high-performance liquid chromatography. For quantitative analysis, liquid chromatography peaks corresponding to the two products were injected into a gas chromatograph, ionized by negative ion chemical ionization (giving major peaks forNO-2andNO3-and the products measured by selected ion monitoring. Results are shown in the figure on the next page. If the internal standards undergo the same reactions and same separations at the same rate as theN14analytes, then the concentrations of analytes are simply[14NOx-]=[15NOx-](R-Rblank)

where R is the measured peak area ratio(m/z46/47fornitriteandm/z62/63fornitrite)for nitrite andfor nitrate) andRblankis the measured ratio of peak areas in a blank prepared from the same buffers and reagents with no added nitrite or nitrate. The ratios of peak areas areand. The ratios for the blank werem/z46/47=0.062andm/z62/63=0.058. Find the concentrations of nitrite and nitrate in the urine.


Short Answer

Expert verified

The Nitrate and Nitrite concentrations in urine were measured 384μMand 1.8μMrespectively

Step by step solution

01

Definition of Nitrate and nitrite

Nitrate [NO3-] and nitrite [NO2-] are ions that occur naturally in the nitrogen cycle. Inorganic fertilisers contain nitrate, while sodium nitrite is employed as a food preservative, particularly in cured meats.

02

Determine the concentrations of nitrite and nitrate in the urine.

Nitrate and Nitrite concentrations in urine must be estimated.

Calculate the nitrate and nitrite concentrations in urine

Blanks ratio =0.040 and 0.058, respectively.

The formula below can be used to compute the concentration of the analytes.

N14Ox-=N15O-xR-Rblank

For Nitrite:

N14O2-=N15O-xR-RblankN14O2-=80.0μM0.062-0.040N14O2-=1.8μM

Nitrite concentration is a measurement of how much nitrite is present in=1.8μM

For Nitrate:

N14O3-=N15O-3R-RblankN14O3-=800.0μM0.538-0.058N14O2-=384μM

The amount of nitrate in the body=384μM

Nitrate and Nitrite concentrations in urine were measured 384μMand 1.8μMrespectively

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Most popular questions from this chapter

(a) The term that is 0 for an open tubular column has to be explained with the reason.(b) The value of B must be stated in terms of a physical property that can be measured. (c) The value ofCmust be represented in terms of a physical attribute that can be measured. (d)The minimum plate height must be expressed in terms of quantifiable physical amounts of B and C.

Consider the chromatography of n-c12H26on a 25 m × 0.53 mm open tubular column of 5% phenyl–95% methyl polysiloxane with a stationary phase thickness of 3.0 μmand He carrier gas at 125ºC. The observed retention factor for n-c12H26is 8.0. Measurements were made of plate height, H, at various values of linear velocity,μxm/s. A least-squares curve through the data points is given by

localid="1654864230381" H(m)=(6.0×10-5m2/s)/μx+(2.09×10-3s)μxthecoefficientsofthevanDeemterequation,findthediffusioncoefficientofn-c12H26inthemobileandstationaryphases.Whyisoneofthesediffusioncoefficientssomuchgreaterthantheother?

(a) Write the meaning of the retention factor, , in terms of time spent by solute in each phase. (b) Write an expression in terms of for the fraction of time spent by a solute molecule in the mobile phase. (c) The retention ratio in chromatography is defined as

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Astandard solution containing 6.3×10-8Miodoacetone and 2.0×10-7Mp-dichlorobenzene (an internal standard) gave peak areas of 395 and 787, respectively, in a gas chromatogram. A 3.00-mlunknown solution of iodoacetone was treated with 0.100mLof 1.6×10-5Mp-dichlorobenzene and the mixture was diluted to. Gas chromatography gave peak areas of 633 and 520 for iodoacetone and p-dichlorobenzene, respectively. Find the concentration of iodoacetone in the 3.00mLof original unknown.

(a) Why is it illogical to use a thin stationary phase (0.2 µm) in a wide-bore (0.53-mm) open tubular column?

(b) Consider a narrow-bore (0.25 mm diameter), thin-film (0.10 µm) column with 5 000 plates per meter. Consider also a wide-bore (0.53 mm diameter), thick-film (5.0 µm) column with 1500 plates per meter. The density of stationary phase is approximately 1.0 g/mL. What mass of stationary phase is in each column in a length equivalent to one theoretical plate? How many nanograms of analyte can be injected into each column if the mass of analyte is not to exceed 1.0% of the mass of stationary phase in one theoretical plate?

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