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Biomedical subjects

S Datta

Publications and source records attributed to S Datta.

At least 163 records · Page 9Linked to original sources

A non-radioactive DNA diagnostic procedure for the detection of malarial infection: general application to genome with repetitive sequences.

A novel non-radioactive DNA diagnostic method has been developed to detect Plasmodium falciparum infection in whole blood. In this method a drop of blood from a finger prick is added to a lysing solution containing a biotinylated oligonucleotide whose sequence design is based on the repeated sequence of the parasite genome. The mixture is heated in a boiling water bath and then added to a microtitre plate where the 'target-bioprobe hybrids' are captured by the immobilized oligonucleotides. The plate is then washed to remove the coloured material and the biotinylated oligonucleotide retained on the plate is assayed by streptavidin-alkaline phosphatase conjugate. This method has also been tested in field trials by double-blind studies to detect P.falciparum infection in blood samples. Results indicate that this method is superior to the classical blood smear examination for its speed and its ease in large epidemiological surveys and is especially useful in identifying clinical malaria in endemic areas where the semi-immune population predominates. The method described can be of general application for the detection of any foreign pathogen in blood, other body fluids and tissue samples, provided the DNA probe employed constitutes a part of the repeated sequence of the genome and is unique.

Animals↗

Development of specific DNA probes and their usage in the detection of Plasmodium vivax infection in blood.

The application of nucleic acid probes, in the detection of pathogenic micro-organisms, has become an integral part of diagnostic technologies. In this study, Plasmodium vivax-specific DNA probes have been identified by carrying out genomic subtractive hybridization. In this approach, the recombinant clones from a P. vivax genomic library are screened with radiolabelled human and P. falciparum DNA. The colonies which react with labelled P. falciparum and human DNA are eliminated and those which do not produce any autoradiographic signal have been subjected to further screening procedures. Three P. vivax specific DNA probes have been obtained by these repeated screenings. Further analyses indicate that these probes are specific and sensitive enough to detect P. vivax infection in clinical blood samples when used in a non-radioactive DNA hybridization assay.

Animals↗

The addition of bupivacaine to intrathecal sufentanil for labor analgesia.

We designed a prospective, randomized, double-blind study to evaluate the efficacy of the combination of intrathecal sufentanil with a low dose of local anesthetic in an attempt to prolong analgesia in labor. Fifty-two patients received one of the following intrathecal study solutions: 2.5 mg of bupivacaine; 10 micrograms of sufentanil; or 2.5 mg of bupivacaine plus 10 micrograms of sufentanil. The mean duration of analgesia (min +/- SD) was significantly different among all three groups: 70 +/- 34 min for bupivacaine, 114 +/- 26 min for sufentanil, and 148 +/- 27 min for bupivacaine-sufentanil (P < 0.001). Visual analog scale (VAS) scores for pain were significantly higher in the bupivacaine group compared to both the sufentanil group and the bupivacaine-sufentanil group (P < 0.02), and were significantly higher in the sufentanil group compared to bupivacaine-sufentanil at 75 min postinjection and beyond (P < 0.02). Hypotension was not observed in the sufentanil group but occurred transiently in the other two groups (P = 0.09). There was no evidence of motor blockade, excessive somnolence, fetal heart rate (FHR) abnormalities, or postdural puncture headache (PDPH) in any of the patients. The addition of 2.5 mg of bupivacaine to 10 micrograms of intrathecal sufentanil significantly prolonged labor analgesia without adverse maternal or fetal effects.

Adult↗

Maternal and neonatal fentanyl and bupivacaine concentrations after epidural infusion during labor.

Labor analgesia using continuous epidural infusions of low-dose bupivacaine and fentanyl may be maintained for many hours. We examined the potential for drug accumulation in both mother and neonate after these long-term infusions. Pregnant women receiving a 10-mL/h continuous infusion of labor analgesia with 0.125% bupivacaine and 2 micrograms/mL of fentanyl were evaluated. Maternal venous and umbilical venous drug concentrations were measured at delivery. Umbilical artery blood gases were obtained. Scanlon neurobehavioral testing was performed on all infants. Length of infusion times varied from 1 to 15 h. Maternal and neonatal drug concentrations remained relatively constant throughout the infusion period. All umbilical blood gas values and neurobehavioral scores were within normal limits. In conclusion, even when maintained for many hours, continuous infusion labor analgesia does not appear to result in significant fetal drug accumulation. No adverse neonatal effects were seen.

Analgesia, Epidural↗

Clinical effects and maternal and fetal plasma concentrations of epidural ropivacaine versus bupivacaine for cesarean section.

BACKGROUND: Ropivacaine is a new amide local anesthetic structurally similar to bupivacaine and mepivacaine. Previous studies showed that ropivacaine has a similar clinical effect as bupivacaine with regard to sensory anesthesia and slightly less motor blockade than bupivacaine. Ropivacaine appears to be less cardiotoxic and arrhythmogenic than bupivacaine. The clinical and pharmacokinetic effects of 0.5% ropivacaine (5 mg/ml) versus 0.5% bupivacaine (5 mg/ml) when used epidurally for elective cesarean section were investigated. METHODS: Using a randomized, double-blind study design, 60 ASA physical status 1 or 2 term parturients presenting for elective cesarean section received either 0.5% bupivacaine (150 mg) or 0.5% ropivacaine (150 mg) epidurally in appropriate fractionated doses over a 10-min period. Onset, duration, and regression of sensory and motor blockade were noted until complete resolution was observed. Quality of intraoperative anesthesia and abdominal wall muscle relaxation were noted. Maternal plasma concentrations of local anesthetic were determined before anesthetic administration and 5, 10, 20, 30, and 60 min and 2, 3, 6, 8, 12, and 24 h after drug injection in 20 subjects. Umbilical cord blood was obtained at time of delivery for acid-base values and determination of the free and total plasma concentration of local anesthetic. Neonates also were examined for neurobehavioral assessments by Scanlon's and Neurologic and Adaptive Capacity Scores at 2 and 24 h after delivery. RESULTS: All patients received satisfactory anesthesia for operation. The onset, duration, and regression of sensory blockade were similar for both groups. Onset of degree 1 and 2 motor blockade was faster, and duration of degree 1 motor block was longer in the group receiving bupivacaine. Hemodynamic sequelae were similar between groups. All neonates had 5-min Apgar scores of 7 or greater and normal acid-base values and neurobehavioral assessments. Pharmacokinetic analysis showed that the Cmax was similar for both drugs (1.3 +/- 0.09 for ropivacaine and 1.1 +/- 0.09 micrograms/ml for bupivacaine). The T1/2 of the terminal decline in plasma concentration was shorter for ropivacaine versus bupivacaine (5.2 +/- 0.60 versus 10.9 +/- 1.08 h, respectively; P < 0.01). The free (i.e., unbound) concentrations of ropivacaine were approximately twice those of bupivacaine in both maternal and neonatal blood at the time of delivery. The ratio of umbilical vein to maternal vein concentration of unbound drug was 0.72 for ropivacaine and 0.69 for bupivacaine. CONCLUSIONS: Ropivacaine, 0.5%, epidurally provided satisfactory and similar sensory anesthesia compared to 0.5% bupivacaine for elective cesarean section. The Cmax was similar for both drugs, although the terminal half-life of ropivacaine was significantly shorter, and the blood concentrations of free ropivacaine were significantly greater than that for bupivacaine. These values were less than concentrations shown to be toxic in animals.

Adolescent↗

0.0625% bupivacaine with 0.0002% fentanyl via patient-controlled epidural analgesia for pain of labor and delivery.

OBJECTIVE: To compare the utility of 0.0625% bupivacaine with fentanyl administered via patient-controlled epidural analgesia (PCEA) to a traditional continuous epidural infusion for pain of labor and delivery. DESIGN AND SUBJECTS: Forty-one women in established labor were randomized to receive either (a) 0.0625% bupivacaine with 2 micrograms/ml fentanyl via PCEA (demand dose = 3 ml, lockout interval = 6 min, background infusion = 6 ml/h, no 1 or 4 h limits) or (b) 0.125% bupivacaine with 2 micrograms/ml fentanyl via continuous epidural infusion (CEI) at 12 ml/h. Supplemental 0.25% bupivacaine (3 ml every 5 min, p.r.n., x 3) was administered for treatment of breakthrough pain upon patient request. The study protocol was double-blind and placebo-controlled. OUTCOME MEASURES: Visual analogue pain scores, motor strength, pinprick level of sensory analgesia and bupivacaine use were assessed by an anesthesiologist unaware of the individual patient's randomization to a particular study group. RESULTS: The cephalad extent of pinprick sensory analgesia was significantly lower during both the first (p < 0.03) and second (p < 0.03) stages of labor in patients receiving PCEA. However, visual analogue pain scores, intensity of motor blockade, and need for physician-administered supplemental bupivacaine were comparable in both groups. Patients receiving PCEA used 40% less bupivacaine per hour while achieving analgesia comparable to patients receiving CEI. CONCLUSIONS: The results of this study show that 0.0625% bupivacaine with 2 micrograms/ml of fentanyl is an effective analgesic combination when used via PCEA.

Adult↗

Maternal and fetal colloid osmotic pressure following fluid expansion during cesarean section.

OBJECTIVES: To characterize the changes in colloid osmotic pressure during delivery and to determine the relationship between maternal and fetal colloid osmotic pressures. DESIGN: Clinical, prospective study. SETTING: Obstetrical operating theater in a tertiary care university hospital. PATIENTS: Thirty healthy parturient patients, at term gestation receiving spinal anesthesia for elective cesarean section. INTERVENTIONS: None. MEASUREMENTS AND MAIN RESULTS: Maternal colloid osmotic pressure samples were obtained at the time of intravenous insertion and delivery. Fetal umbilical vein and umbilical artery colloid osmotic pressure samples were measured from the umbilical cord at delivery. The volume of intravenous infusion and dose of ephedrine were recorded for each patient. Maternal colloid osmotic pressure at delivery was significantly less than that value measured at the time of intravenous catheter insertion in each patient (15.8 +/- 0.3 vs. 23.1 +/- 0.3 mm Hg; p < .0001). Umbilical artery colloid osmotic pressure was consistently higher than umbilical vein colloid osmotic pressure (21.0 +/- 0.4 vs. 19.4 +/- 0.3 mm Hg; p < .0001). Both umbilical artery colloid osmotic pressure and umbilical vein colloid osmotic pressure were significantly higher than maternal colloid osmotic pressure at delivery (p < .0001). The volume of intravenous infusion and the dose of ephedrine both correlated inversely with maternal colloid osmotic pressure measured at delivery (p < .05). CONCLUSIONS: The reduction in maternal colloid osmotic pressure during delivery is, in part, related to intravenous fluid expansion and the amount of vasopressor administered. Despite the significant fluctuations in maternal colloid osmotic pressure, the placenta and fetus possess the capability to alter colloid osmotic pressure.

Adult↗

Phenylephrine in treating maternal hypotension due to spinal anaesthesia for caesarean delivery: effects on neonatal catecholamine concentrations, acid base status and Apgar scores.

Maternal and neonatal catecholamine concentrations, following the use of either phenylephrine or ephedrine to treat a drop in maternal blood pressure after spinal anaesthesia for caesarean delivery, were compared. Patients were randomly assigned to one of two groups: Group 1 patients (n = 20) were treated with ephedrine given as 5 mg intravenous bolus injections; Group 2 patients (n = 20) were treated with phenylephrine given as 40 micrograms intravenous bolus injections, for decreases in maternal systolic blood pressure to maintain maternal systolic blood pressure above 100 mmHg. Maternal vein (MV), umbilical vein (UV), and umbilical artery (UA) blood samples were taken at the time of delivery. Samples were analyzed for catecholamine concentrations and blood gas values. Noradrenaline concentrations in UA, UV and MV (at delivery) samples were significantly higher in group 1 compared to group 2; they were 6858 +/- 3689 vs 1674 +/- 944 pg.ml-1 (P < 0.0001), 1265 +/- 758 vs 395 +/- 470 pg.ml-1 (P < 0.001) and 239 +/- 165 vs 103 +/- 93 pg.ml-1 (P < 0.01), respectively. Comparing blood gas values between groups 1 and 2, statistically significant differences were observed in UA pH (7.28 +/- 0.01 and 7.32 +/- 0.01 pH units, P = 0.01), UA pCO2 (7.32 +/- 0.24 and 6.68 +/- 0.21 kPa, P = 0.03), UA base excess (2.2 +/- 0.4 and 0.9 +/- 0.4 mmol.1-1, P = 0.04) and UV base excess (2.0 +/- 0.3 and 0.7 +/- 0.3 mmol.1-1, P = 0.004). No significant differences in maternal characteristics, acid base values, incidence of nausea and vomiting, and Apgar scores were observed between groups. Phenylephrine appears to be as safe and effective as ephedrine in treatment of drop in blood pressure in healthy non-labouring parturients undergoing caesarean delivery. The use of phenylephrine was also associated with significantly lower noradrenaline concentrations in both mother and neonate.

Acid-Base Equilibrium↗

Comparison of relaxation responses of detrusor strips from neuropathic and control patients.

OBJECTIVES: To confirm the existence of relaxation responses to electrical-field stimulation in strips of human detrusor, and to compare these responses in strips from control subjects with those in strips from a group of neuropathic patients exhibiting hyperreflexia. PATIENTS AND METHODS: Detrusor specimens were obtained at operation from a group of control patients, and from a group of patients with neuropathy (mainly spina bifida) and a history of hyper-reflexia. Muscle strips were prepared from these, mounted in organ baths, and contracted by exposure to a modified Krebs' solution containing 26 mM KCl and atropine. Relaxation responses were induced by an electrical-field stimulation (50 V, 90 microsecond pulses at 2-16 Hz for 10 s). RESULTS: Of 29 strips, 20 (69%) from control patients showed relaxations, compared with 17 of 28 strips (61%) from neuropathic patients (P > 0.1). The maximum relaxation response in the control strips was 49 +/- 5.6% (mean +/- SEM) of the maximum relaxation induced by isobutyl methylxanthine, compared with 43 +/- 4.8% in the strips from neuropathic patients (P > 0.1). The maximum response occurred at similar frequencies (4 or 8 Hz) in the two groups. The relaxations were reduced by the inhibitor of nitric oxide synthase, N-nitro L-arginine methyl ester (0.1 mM, P < 0.05), but were not affected by guanethidine (50 microM) or tetrodotoxin (0.5 microM). CONCLUSION: These results confirm the existence of field stimulation-induced relaxation in human detrusor, but suggest that hyper-reflexia in the neuropathic bladder cannot be accounted for by any deficiency in this response.

1-Methyl-3-isobutylxanthine↗

Control of proliferation activation in quiescent neuroblasts of the Drosophila central nervous system.

Stem cell proliferation is controlled through cell cycle arrest and activation. In the central nervous system of Drosophila melanogaster, neuroblast quiescence and activation takes place in defined spatial and temporal patterns. Two genes have been identified that regulate the pattern of neuroblast quiescence and proliferation. ana, which has been previously described by Ebens and coworkers (Ebens, A., Garren, H., Cheyette, B. N. R. and Zipursky, S. L. (1993). Cell 74, 15-28), encodes a secreted glial glycoprotein that inhibits premature neuroblast proliferation. We previously showed that trolsd causes a dramatic drop in the number of dividing cells in the larval brain late in development. This study presents evidence that this decrease results from a failure to activate proliferation in the quiescent neuroblast population at the appropriate time. However, trolsd does not affect the maintenance of cell division in already dividing mushroom body neuroblasts. The quiescent optic lobe and thoracic neuroblasts affected by trolsd proliferate in a trol mutant background if they have been activated by a lack of the ana proliferation repressor, demonstrating that trolsd does not affect cellular viability, nor does trol represent a celltype-specific mitotic factor. This also shows that trol acts downstream of ana to activate proliferation of quiescent neuroblasts in an ana-dependent pathway, possibly by inactivating or bypassing the ana repressor. These results suggest that trol and ana are components of a novel developmental pathway for the control of cell cycle activation in quiescent neuroblasts.

Animals↗

Innervation of the larynx, pharynx, and upper esophageal sphincter of the rat.

We identified a 'semicircular' compartment of the rat thyropharyngeus muscle at the pharyngoesophageal junction and used the glycogen depletion method to determine how the fibers of this muscle (as well as all others of the pharynx and larynx) are innervated by different cranial nerve branches. The semicircular compartment appears anatomically homologous to the human cricopharyngeus muscle, an important component of the upper esophageal sphincter. While we found very little overlap in the muscle targets of the pharyngeal, superior laryngeal and recurrent laryngeal nerves within the pharynx and larynx, the semicircular muscle receives a dual, interdigitating innervation from two vagal branches: the pharyngeal nerve and a branch of the superior laryngeal nerve we call the dorsal accessory branch. After applying horseradish peroxidase to either of these two nerves, we compared the distribution and number of cells labeled in the brainstem. The dorsal accessory branch conveys a more heterogeneous set of efferent fibers than does the pharyngeal nerve, including the axons of pharyngeal and esophageal motor neurons and parasympathetic preganglionic neurons. The observed distribution of labeled motor neurons in nucleus ambiguus also leads us to suggest that the semicircular compartment is innervated by two subsets of motor neurons, one of which is displaced ventrolateral to the main pharyngeal motor column. This arrangement raises the possibility of functional differences among semicircular compartment motor neurons correlated with the observed differences in brainstem location of cell bodies.

Animals↗