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R Dasari

Publications and source records attributed to R Dasari.

4 recordsLinked to original sources

Intensities of calcium dipicolinate and Bacillus subtilis spore Raman spectra excited with 244 nm light.

Ultraviolet (UV) resonance Raman spectra of Bacillus subtilis endospores have been excited at 244 nm. Spectra can be interpreted in terms of contributions from calcium dipicolinate and nucleic acid components. Differences between spectra of spores and vegetative cells are very large and are due to the dominance of the dipicolinate features in the spore spectra. Because the DNA and RNA composition of B. subtilis spores is known and because the cross-sections of Raman bands belonging to DNA and RNA bases are known, it is possible to calculate resonance Raman spectral cross-sections for the spore Raman peaks associated with the nucleic acids. The cross-sections of peaks associated with calcium dipicolinate have been measured from aqueous solutions. Cross-section values of the dominant 1017 cm(-1) calcium dipicolinate peak measured from the Bacillus spores have been shown to be consistent with a calcium dipicolinate composition of ten percent or less by weight in the spores. It is suggested that spectral cross-sections of endospores excited at 244 nm can be estimated to be the sum of the cross-sections of the calcium dipicolinate, DNA, and RNA components of the spore. It appears that the peaks due to DNA and RNA can be used as an internal standard in the calculation of spore Raman peak cross-sections, and potentially the amount of calcium dipicolinate in spores. It is estimated on the basis of known nucleic acid base cross-sections that the most intense Raman band of the Bacillus subtilis spore spectra has a cross-section of no more than 4 x 10(-18) cm(2)/mol-sr.

Bacillus subtilis↗

Intensities of E. coli nucleic acid Raman spectra excited selectively from whole cells with 251-nm light.

Escherichia coli bacteria in the logarithmic growth phase have been investigated by UV resonance Raman spectroscopy. Bacterial whole-cell Raman spectra excited at 251 nm reflect nearly exclusively the nucleic acid composition even though a very large fraction of the bacterial mass is composed of protein. It has been demonstrated that if bacteria are grown under controlled (logarithmic growth) conditions, which give rise to organisms of known average biochemical composition, the intensities of E. coli Raman spectra can be explained quantitatively from the knowledge of component nucleic acid base resonance Raman cross sections.

DNA, Bacterial↗

Reversible molecular adsorption based on multiple-point interaction by shrinkable gels.

A general approach is presented for creating polymer gels that can recognize and capture a target molecule by multiple-point interaction and that can reversibly change their affinity to the target by more than one order of magnitude. The polymers consist of majority monomers that make the gel reversibly swell and shrink and minority monomers that constitute multiple-point adsorption centers for the target molecule. Multiple-point interaction is experimentally proven by power laws found between the affinity and the concentration of the adsorbing monomers within the gels.

Adsorption↗

Effect of maternal low dose aspirin on neonatal platelet function.

OBJECTIVE: To evaluate the effect of maternal low dose aspirin ingestion in platelet function of newborn. DESIGN: Prospective randomized placebo controlled study. METHODS: 25 neonates born to mothers receiving low dose aspirin and 25 matched neonates with no maternal exposure to aspirin were studied. 2 ml of EDTA and 4.5 ml of citrate blood was collected from umbilical vein using double clamped umbilical stump for hemogram, coagulation profile and platelet functions. RESULTS: The platelet counts (10(9)/l) of study and control groups were 186.4 +/- 22.76 (116-225) and 205.28 +/- 17.34 (176-225), respectively. There was no significant difference in coagulation parameters. Prothrombin time index (PTI) was 86.24 +/- 6.623 and 87 +/- 6.43, respectively in the study and control group while PTTK (sec) was 55.88 +/- 20.54 and 52.12 +/- 11.82 in study and control subjects, respectively. The platelet aggregation studies (platelet function) with various platelet agonists in study and control group did not show any significant difference. Clinically, none of the babies had bleeding. CONCLUSIONS: Use of low dose aspirin in pregnant women was found to be safe and had no adverse effects on platelet functions of newborn.

Aspirin↗