PubMed Health⌕ Search

Biomedical subjects

I A Kuznetsov

Publications and source records attributed to I A Kuznetsov.

At least 19 recordsLinked to original sources

[Allogeneic implantation of the tendon tissue sterilized with gaseous ethylene oxide in experiment].

The implantation of the allo-tendon tissue sterilized with gaseous ethylene oxide was carried out in 51 while rats. Results of histological investigations are described and a comparative estimation is given of durability of the properties of ethyleneoxide sterilized allotendons of the human with the anterior cruciate ligament and dermal tissue. A conclusion is made that it is possible to use the tendon allotransplants in clinical practice.

Adult↗

[Long-term block of thoracic vegetative nerve trunks in combined treatment of acute intestinal obstruction].

Results of treatment of acute intestinal obstruction with long-term block of the left thoracic sympathetic trunk, paraaortal and paraesophageal vegetative plexuses, vagus and posterior bronchial plexuses are analyzed. Compared with long-term epidural block this method permits one to reduce 2 times the rate of postoperative complications and lethality, to shorten the hospital stay by 5 days. Long-term block of thoracic vegetative nervous trunks provide manipulations out of structures of the spinal column and permits to influence directly both parts of the vegetative nervous system.

Acute Disease↗

[The treatment of patients with comminuted fractures of the bones of the zygomatico-orbital complex].

The paper presents a new method for fixing bone fragments and the entire zygomatic bone in patients with comminuted fractures of the zygomatico-orbital complex. Demonstrates the possibility of repair of the zygomatic bone and the contours of the zygomatico-orbital area. Discusses the probability of venous inclusion in the treatment of patients with posttraumatic deformations of the upper and median zones of the face. Stable cosmetic and functional results were attained in 12 patients treated by this method.

Bone Plates↗

[Combined thoracoscopy in thoracoabdominal wounds using ultrasound, the CO2 laser and the plasma jet].

Under analysis is an experience with treatment of 178 patients with thoracoabdominal wounds. The authors have developed a rational curative methods and original thoracoscopic techniques, which allowed to considerably reduce the amount of thoracotomies. Thoracoscopy was performed in 157 (88%) of 178 patients. Indications for thoracotomy were established in 7 patients, in 19 patients only drainage of the pleural cavity was made. Curative thoracoscopy was used in 131 patients, in 60 of them ultrasonic glue hermetization of the lung wound was made, 36 patients had laser photocoagulation of the lung wound, 21 patients had plasma coagulation of pleuro-pulmonary defects, in 14 patients--coagulated hemothorax was removed. Clinical effectiveness of thoracoscopic techniques was more than 90%. Thoracotomy was performed in 28 (15%) patients, in 11 patients it was supplemented with diaphragmotomy. Laparotomy was performed in 167 patients. Lethality was 6.8%.

Abdominal Injuries↗

Thermal denaturation of Na- and Li-DNA in salt-free solutions.

Thermal denaturation of Na- and Li-DNA from chicken erythrocytes was studied by means of scanning microcalorimetry in salt-free solutions at DNA concentrations (Cp) from 4.5 x 10(-2) to 1 x 10(-3) moles of nucleotides/liter (M). Linear dependencies of DNA melting temperature (Tm) vs lgCp were obtained: [formula: see text] for Na- and Li-DNA, respectively. Microcalorimetry data were compared with the results of spectrophotometric studies at 260 nm of DNA thermal denaturation in Me-DNA + MeCl solutions at Cp congruent to (6-8) x 10(-5) M and Cs = 0-40 mM (Me is Na or Li, Cs is salt concentration). It was found that Eqs. (1) and (2) are valid in DNA salt-free solutions over the Cp range 6 x 10(-5)-4.5 x 10(-2) M. Protonation of DNA bases due to the absorption of CO2 from air in Na-DNA + NaCl solutions affects DNA melting parameters at Cs < 4 mM. Linear dependence of Tm on lga+ is found in Na-DNA + NaCl at Cs > 0.4 mM in the absence of contact of solutions with CO2 from air (a+ is cation activity). A dependence of [dTm/dlga+] on Li+ activity was observed in Li-DNA + LiCl solutions at Cs < 10 mM: [dTm/dlga+] increases from 17 degrees-18 degrees at Cs > 10 mM to 28 degrees-30 degrees at Cs congruent to 0.2-0.4 mM. Spectrophotometric measurements at 282 nm show that this effect was caused by protonation of bases in fragments of denatured DNA in neutral solutions. The Poisson-Boltzmann (PB) equation was solved for salt-free DNA at the melting point. The linear dependence of Tm vs lgCp was interpreted in terms of Manning's condensation theory. PB and Manning's theories fit the experimental data if charge density parameter (xi) of denatured DNA is in the range 1.8-2.1 (assuming for native DNA xi = 4.2). Specificity of Li ions in interactions with DNA is discussed.

Animals↗

Polyelectrolyte properties of biopolymers: conductivity and secondary structure of polyriboadenylic acid and its salts in solutions.

Polyriboadenylates of alkali metals were obtained from (1) K(+)-poly(A) (salts 1) and (2) H(+)-poly(A) (salts II) by the ion-exchange method. The conductivity of these salts as well as of H(+)-poly(A) were studied. Salts I and II of the same counterion were shown to have significantly different conductivity coefficients (f) and polyion conductances (lambda 0p). the charge density parameter (xi) was 1.3 and 2.5, respectively, with lambda 0p equal to 44 and 83 ohm-1 cm2 mole-1 for poly(A)-I and poly(A)-II salts, respectively. This is credited to the difference in the conformations of corresponding polyions. The linear dependence of equivalent conductivity on the square root of polymer concentration (Kohlrausch coordinates), earlier obtained for DNA, is also satisfied for the studied polynucleotides. A comparison of the slopes of straight lines in Kohlrausch coordinates for poly(A), simple electrolytes, and for earlier studied polyribouridylic acid salts lends credence to the concepts, developed by a number of authors, that DNA can act as a "buffer" against the ion-ion interaction in concentrated electrolyte solutions. Using the approximation that the polyion conductance is independent of the counterion nature, parameter f (agreeing in this case with Eisenberg parameter phi) has been shown to decrease as the polynucleotide concentration is increased; the decrease is caused by the relaxation effect. The transference numbers of counterions, which have negative values in poly (A)-II solutions, grow with the increase in polymer concentration; the higher the xi, the more apparent is this increase. This is explained by the increase in the fraction of conductivity along the polyion chains ("surface" conductivity) with the growth of polyelectrolyte concentration.

Electric Conductivity↗

[The use of a plasma scalpel during thoracoscopy for the treatment of traumatic and spontaneous pneumothorax].

The authors suggest performing thoracoscopic coagulation of pleuropulmonary defects with a plasma stream (VSVU-160 apparatus) in patients with traumatic and spontaneous pneumothorax. A special nozzle and a manipulation trocar were designed for this purpose. Such combined thoracoscopy was used successfully in 31 patients with open and closed chest injury with rupture of the subpleural bullae. The manipulation makes it possible to reduce the number of emergency thoracotomies undertaken for hemo- and aerostatic indications.

Animals↗

CD spectra of isoionic DNA solutions.

The ion-exchange transition of Na-DNA----H-DNA in concentrated salt-free solutions is accompanied by strong variations in CD spectra. The rotational force of the negative band magnitude of delta epsilon 249 decreases when going to H-DNA by about 4 times, and the value of delta epsilon 279, by 1.2 times. These changes are irreversible to a considerable extent, which is evident because the spectra of Na-DNA obtained by neutralizing isoionic H-DNA solutions with NaOH or by the ion-exchange method significantly differ from those of Na-DNA taken by dissolving solid Na-DNA in deionized water. It has been shown that additions of NaCl to an isoionic solution of DNA leads to variations of spectra, typical for deprotonation processes as well as for an increase in DNA hydration.

Animals↗

[Electrical conductivity of isoionic DNA solutions].

Conductance of the DNA isoionic solutions obtained from aqueous solutions of its sodium salt using a column with mixed bed ionexchangers has been investigated. It has been found that in Kohlrausch's plots equivalent conductance slightly decreased with polymer concentration. Comparison of the degree of ionization (alpha) calculated from conductance measurements with those calculated from experimental pH values of isoionic solutions at different polymer concentrations revealed that the mobility of dissociating counterations decreases significantly under the influence of the electrostatic potential of the macroion.

DNA↗

[Acid-base properties and secondary structure of DNA in isoionic solutions].

Potentiometric titration of DNA in the isoionic solutions has been investigated at different concentrations of the polymer. The intrinsic constants pKo of titrable groups corresponding to the two inflections in the titration curves were calculated by taking into account the electrostatic potential of the macroion. The number of ionogenic groups was evaluated from curves of titration. It has been found that the constants of ionization of both ionogenic groups increased with DNA concentration. The number of ionogenic groups corresponding to the first inflection in titration curves is significantly decreased when the concentration of DNA increases. On the other hand, the number of groups corresponding to the second inflection is slightly increased. Spectrophotometric investigations of isoionic solutions of DNA showed that the molar extinction coefficient increases with the concentration of the polymer. The results are discussed in view of the change of the secondary structure of DNA caused by an increase of its concentration in isoionic solutions.

Chemical Phenomena↗

[Temperature dependence of conductance of isoionic DNA solutions. Determination of dissociation constants of primary phosphoryl groups].

Concentration dependence of the equivalent conductance of isoionic DNA solutions has been studied at different temperatures. The limiting equivalent conductance (lambda infinity) at every temperature investigated has been obtained by extrapolation to the infinite dilution in Kohlraush's plots. At the same time in plots c lambda c versus 1/lambda c (lambda c is equivalent to conductance at the concentration c), corresponding to the linear form of Ostwald's dilution law, the straight lines were obtained. Both lambda infinity and acidity constants (K) have been determined from these plots. The values of lambda infinity by two methods are in well agreement. The average values of lambda infinity were used for energy activation of conductivity calculation, equal to 2,40 +/- 0,05 kcal/mole. The acidity constant of primary phosphoryl groups passes through a maximum near 33 degrees. Equivalent conductance of hydrogen ions calculated by neglecting of macroion's mobility and by using of potentiometric determined concentration (cH+) has been shown to increase with cH+. Unusual behavior of DNA in isoionic solutions is discussed.

DNA↗

[Determination of the degree of base protonation in isionic solutions of DNA from the curve of conductometric titration].

Conductance of the DNA isoionic solution at different degrees of neutralization has been investigated at 25 degrees. There are regions on the conductometric titration curve corresponding to titration of: 1) primary phosphoryl groups 2) guanine 3) adenine 4) adenine and cytosine in half-protonated pairs 5) thymine. The pH intervals corresponding to protonation of bases in isoionic solutions are shifted into alkaline region compared with Na-DNA solutions. It has also been found for molar per cent of unprotonatad bases to equal to that of thymine determined as from conductometric titration curve so from chromatographic analysis of the DNA hydrolysate.

DNA↗

[Interaction of immobilized DNA with silver ions].

The interaction of Ag+ with DNA immobilized in polyacrylamide gel was studied by means of the ion-exchange method. Ag+ ions are shown to bind to DNA bases, their charges being neutralized by phosphate groups. The binding sites of Ag+ and H+ are likely to be the same, but the strength of Ag+ binding is greater than that of H+. Ag+ ions like H+ are shown to cause the formation of compact structures in immobilized DNA, the amount of these structures being dependent on subtle differences in DNA samples. DNA samples, not forming compact structures under the influence of H+, do not form them under the influence of Ag+. This fact can indicate the similarity of the mechanisms of the compact structures formation in both cases. The results obtained are compared with the data available for the interaction of Ag+ with DNA in solution. The mechanism of the Ag+-DNA interaction is discussed.

Animals↗