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Sn-chlorin e6 antibacterial immunoconjugates. An in vitro and in vivo analysis.

Monoclonal antibody-Sn-chlorin e6 immunoconjugates were prepared by the site-selective covalent modification of the monoclonal oligosaccharide moiety. By carefully controlling the reaction conditions and introducing triethanolamine groups as axial ligands of the Sn moiety, conjugates with in vivo biodistribution properties similar to underivatized IgG were prepared. By varying the reaction conditions, conjugates were reproducibly prepared with a range of photosensitizer to mAb molar ratios from 1.6 to 10. Based on a competitive inhibition radioimmunoassay, conjugates prepared by this method showed selectivity and binding affinity comparable to the unmodified antibody. The immunoconjugates had only slightly lower singlet oxygen yields than that observed with the Sn-chlorin e6 precursor indicating that negligible aggregation or structural modification of the chromophores occurred during the synthesis process. In vitro cell killing experiments demonstrated that all conjugates possessed significant cytotoxic activity. Biodistribution studies in mice showed that conjugates prepared with axial ligands had significant serum retention 24 h after injection while conjugates prepared without the triethanolamine ligand were much more rapidly cleared. In vivo specificity was demonstrated using rats infected with Fisher immunotype I P. aeruginosa at a site in the left posterior thigh muscle. Target to background ratios exceeded 60 at 120 h after conjugate injection of the specific immunoconjugate, compared to a ratio of only 6 for a non-specific mouse IgG conjugate. Biodistribution patterns at 120 h post injection indicate that the conjugates were both biologically active and structurally intact.

Animals↗

The effect of etorphine on the secretion of endogenous catecholamines and total tritium evoked by nerve- and acetylcholine-stimulation in perfused rat adrenal glands.

Isolated perfused rat adrenal glands were prelabeled with 3H-norepinephrine and catecholamine secretion was evoked by nerve stimulation (10 Hz, supramaximal voltage for 30 seconds) or acetylcholine (ACh)(5.4 micrograms) injection. Nerve stimulation evoked significant increases in tritium (16371 +/- 2109 cpm) and catecholamine (11.5 +/- 1.0 ng norepinephrine [NE], 123.1 +/- 13.0 ng epinephrine [EP]) release from the adrenal medulla. ACh injection evoked catecholamine release, but failed to increase tritium release. In the presence of etorphine, the nerve stimulation-mediated release of tritium, NE and EP was inhibited. In contrast, the ACh-mediated release of NE but not EP was inhibited by etorphine. In a previous publication (1), we have shown that 3H-NE is taken up by sympathetic nerve endings contained in extra adrenal tissue removed along with the adrenal gland during the surgery, but not by chromaffin cells. Therefore, the inhibitory effect of etorphine on NE, EP and tritium release evoked by nerve stimulation suggests a functional role for opiate receptors on transmitter release from sympathetic and splanchnic nerve endings. However, the differential effect of etorphine on NE and EP release evoked by ACh injection indicates that opiate receptors on chromaffin cells modulates NE but not EP release.

Acetylcholine↗

The effect of iodine deficiency on thyroid function in the infant rat.

We have studied rats born to severely iodine-deficient mothers and subsequently maintained on a low-iodine diet (LID) from birth to 41 days. They were compared with controls born to mothers fed a high-iodine diet (HID). LID babies from birth on had large goiters, high thyroid labeled MIT/DIT ratios and radioiodine uptakes, high plasma TSH and low plasma T4 in comparison to HID controls. Thyroid labeled T3/T4 ratios were low in all babies at birth but were higher in the LID than HID babies from day 5 on and were greater than 1 after day 10, approximating the T3/T4 of the mothers. Coupling efficiency, as indicated by thyroid labeled (T3 + T4)/(MIT + DIT), was relatively low for the first 4 postnatal days for both the HID and LID babies and was associated with a lower plasma T4 than at later intervals. Injection of 0.05 mug 127I- simultaneously with 131I- caused an acute increase in labeled T4 and decrease in MIT formation in LID babies of all ages, but did not affect T3 synthesis. Doses of 127I- 20 times as large had no effect on labeled iodoamino acid synthesis in HID babies. Thyroid organic radioiodine content in newborn LID rats was 65% lower at 24 hr than at 4 hr after 131I injection, indicating that thyroid secretion was occurring. A few of the LID pups were "runts" approximately 60% the size of HID babies the same age. However, the overwhelming majority of LID babies maintained the same weight as HID controls from birth until weaning. After weaning, the LID babies grew at a slower rate than the HID controls. Relative thyroid weight, radioiodine metabolism and plasma TSH were no different in runts of various ages or in their mothers than in the "normal" LID controls. Adaptation was apparently adequate in the LID babies to maintain a nearly euthyroid state. We suggest that the low labeled T3/T4 ratio in the first few days of life in the LID babies may be due to a coupling deficiency in newborn rats resulting in a proportionately greater formation of iodotyrosines than of iodothyronines compared to older animals. This results in a greater intrathyroidal retention of iodine during intracellular thyroglobulin proteolysis and a more highly iodinated thyroglobulin in the LID babies than after normal coupling is achieved.

Animals↗

Influence of molecular structure and plasma hydrolysis on the metabolism of glutamine-containing dipeptides in humans.

Glutamine-containing dipeptides may serve as a source of glutamine in parenteral nutrition solutions. To study the metabolism of glycyl-L-glutamine (gly-gln) and L-alanyl-L-glutamine (ala-gln) bolus injections of both dipeptides (0.1 mmol/kg within 40 seconds) were performed in five healthy male volunteers. Furthermore, plasma hydrolase activity against both peptides was tested by in vitro incubation. Both peptides were rapidly cleared from plasma after injection; however clearance was significantly greater for ala-gln than for gly-gln (1,595 +/- 124 v 507 +/- 14 mL/min). Arterial concentrations of constituent amino acids rose after peptide injection, indicating hydrolysis of the peptides. Glutamine concentration, for example, rose from 573 +/- 29 to a maximum of 718 +/- 34 mumol/L after gly-gln and from 570 +/- 15 to 900 +/- 53 mumol/L after ala-gln injection. Both peptides were hydrolyzed by plasma hydrolases during in vitro incubation. Hydrolysis was greater for ala-gln than for gly-gln. Half-lives of ala-gln and gly-gln were 46 +/- 3 and 553 +/- 160 minutes, respectively. For both peptides, plasma hydrolysis was too low to contribute significantly to in vivo clearance. Our results indicate that gly-gln and ala-gln are suitable sources for glutamine in parenteral nutrition solutions. Furthermore, plasma hydrolases do not play a significant role in peptide metabolism. Both peptides therefore appear to be primarily metabolized via extracellular hydrolysis, presumably by hydrolases on the cell membranes and consecutive uptake of the liberated amino acid residues.

Adult↗

Antinociceptive effect of intrathecally-administered desipramine and zimelidine in rats.

The effect of intrathecally (i.th.) administered desipramine and zimelidine, in doses of 5, 10 and 50 micrograms, were investigated in the tail-flick test with simultaneous measurement of the temperature of the tail skin and in the increasing temperature hot-plate test. A constant negative correlation between the temperature of the tail skin and tail-flick latency, as described previously, was found. For all doses tested, desipramine induced longer tail-flick latencies, 10 min after injection than vehicle and the temperature of the tail skin tended to increase less in this group than in controls. After adjustment of the tail-flick latencies for the changes in the temperature of the tail skin, an antinociceptive effect of desipramine was still found. For zimelidine, only the largest dose (50 micrograms) was found to be antinociceptive, after adjustment for the tail skin temperature. In the increasing temperature hot-plate test, no antinociceptive effect of these antidepressants was found. For desipramine and zimelidine, the effect in the tail-flick test, 10 min after injection, indicates that the antinociceptive effect of these drugs may have, at least partly, a spinal site of action. In the increasing temperature hot-plate test, the response is integrated supraspinally. This may partly explain the lack of effect in this test when desipramine and zimelidine were administered intrathecally.

Analgesics↗

The role of conditioned taste aversion in the suppression of food intake by estradiol.

In three experiments, ovariectomized rats were given a familiar or novel diet prior to treatment with a brain-enhanced estradiol-chemical delivery system (E2-CDS, 1 mg/kg). Experiment 1 showed that food intake was suppressed in subjects receiving either diet, but animals given a novel diet initially showed a profound anorexia which eventually recovered to the moderate suppression of animals given the familiar diet. In Experiment 2, rats showed an aversion to a novel diet paired with the E2-CDS in a two-choice preference test given on Day 2 after the injection, indicating that the initial large reduction in intake was mediated by a conditioned taste aversion. However, no aversion was observed seven days after the E2-CDS, suggesting that the residual intake suppression was mediated by unconditioned aversion or appetite suppression. Experiment 3 showed that lengthening the postovariectomy time resulted in a taste aversion that persisted for a longer duration.

Animals↗

Effects of p-xylene inhalation on axonal transport in the rat retinal ganglion cells.

Although the solvent xylene is suspected of producing nervous system dysfunction in animals and humans, little is known regarding the neurochemical consequences of xylene inhalation. The intent of this study was to determine the effect of intermittent, acute, and subchronic p-xylene exposure on the axonal transport of proteins and glycoproteins within the rat retinofugal tract. A number of different exposure regimens were tested ranging from 50 ppm for a single 6-hr exposure to 1600 ppm 6 hr/day, 5 days/week, for a total of 8 exposure days. Immediately following removal from the inhalation chambers rats were injected intraocularly with [35S]methionine and [3H]fucose (to label retinal proteins and glycoproteins, respectively) and the axonal transport of labeled macromolecules to axons (optic nerve and optic tract) and nerve endings (lateral geniculate body and superior colliculus) was examined 20 hr after precursor injection. Only relatively severe exposure regimens (i.e., 800 or 1600 ppm 6 hr/day, 5 days/week, for 1.5 weeks) produced significant reductions in axonal transport; there was a moderate reduction in the axonal transport of 35S-labeled proteins in the 800-ppm-treated group which was more widespread in the 1600 ppm-treated group. Transport of 3H-labeled glycoproteins was less affected. Assessment of retinal metabolism immediately after isotope injection indicated that the rate of precursor uptake was not reduced in either treatment group. Furthermore, rapid transport was still substantially reduced in animals exposed to 1600 ppm p-xylene and allowed a 13-day withdrawal period. These data indicate that p-xylene inhalation decreases rapid axonal transport supplied to the projections of the rat retinal ganglion cells immediately after cessation of inhalation exposure and that this decreased transport is still apparent 13 days after the last exposure. This decreased supply of cellular materials to the axon and nerve ending regions could initiate the neuronal malfunction reported in solvent-exposed animals and humans.

Administration, Inhalation↗

Factors associated with the mass of venom expended by prairie rattlesnakes (Crotalus v. viridis) feeding on mice.

The purpose of this study was to assess through correlation analyses the various factors and consequences associated with the mass of venom injected by prairie rattlesnakes (Crotalus v. viridis) into their natural prey, deer mice (Peromyscus maniculatus). Fifty-seven predator-prey interactions were studied via slow motion videotape review. The mass of venom expended by snakes during biting was quantified by enzyme-linked immunosorbent assay (ELISA) of whole-animal homogenates. The quantity of venom expended was not related to size of prey; however, the range of mouse sizes (13-31 g) was quite narrow. Multiple bites of the same mouse were not associated with incremental increases in venom expenditure; only about 40% more venom was expended by striking prey a second time. The duration of fang contact and site of fang penetration had no discernible effects on venom expenditure. The site of fang penetration of prey appeared to be random, due to evasive actions of the mice. The components of striking (duration of launch, fang contact, and recoil, respectively) and distance of the strike were correlated and appeared to be influenced by the prey's reaction. After striking and releasing mice, the snakes did not attempt to relocate more quickly those prey which succumbed to venom relatively quickly. Both natural (snakebite) and artificial (syringe) injections indicated that the site of venom injection (e.g. anterior, posterior, muscle, vital organ) has a greater influence on subsequent mobility and survival of mice than the quantity of venom injected. It appears that some behavioral aspects of predation (especially the sequential components of striking) are flexible and responsive to prey reactions, while others (venom expenditure and poststrike immobility) are less subject to modification.

Animals↗

12(S)-hydroxy-5,8,10,14-eicosatetraenoic acid is a more potent neutrophil chemoattractant than the 12(R) epimer in the rat cornea.

12(R)-hydroxy-5,8,10,14-eicosatetraenoic acid [12(R)-HETE] is reported to be more potent than its epimer 12(S)-HETE as a chemoattractant for human neutrophils in vitro and following topical application to the skin. To assess the in vivo neutrophil chemoattractant potencies of 12(S)-HETE and 12(R)-HETE in the rat, we injected 1 microgram, 5 micrograms, or 10 micrograms of these eicosanoids into the corneal stroma. Rats were killed 12-15 hours after injection, and the number of neutrophils in the stroma was counted in a histological section of the cornea including the injection site. The number of neutrophils was significantly increased in corneas injected with 5 micrograms (+103% of control) or 10 micrograms (+456% of control) of 12(S)-HETE and in those injected with 10 micrograms of 12(R)-HETE (+111% of control). The neutrophilic infiltrate in corneas injected with 1 microgram or 5 micrograms of 12(S)-HETE was not significantly different from that in corneas injected with 1 microgram of leukotriene B4. The data for the 10 micrograms injections indicate that 12(S)-HETE is a more potent neutrophil chemoattractant than 12(R)-HETE in the rat cornea. Our results suggest that species or tissue specificity may determine the relative potencies of 12-HETE epimers as chemoattractants for neutrophils, and that 12(S)-HETE may be an important inflammatory mediator in the rat cornea.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

Acute intracerebroventricular injections of the mast cell degranulator compound 48/80 and behavior in rats.

The intracerebroventricular (ICV) injection of the mast cell degranulator Compound 48/80 (2.5-2.0 micrograms/kg) produced a marked behavioral syndrome in normotensive rats. The behaviors included head and body shakes, paw tremor, excessive grooming, unusual posture and gait, mild diarrhoea, piloerection, extreme agitation and irritability to touch, and a later phase of sedation. The highest doses (15 and 20 micrograms/kg) also produced catalepsy and episodes of "barrel rolling" (continuous rolling of 1-8 turns around the longitudinal axis). These behaviors were observed for approximately 15-30 min although the sedation and catalepsy were maintained for 90-120 min. A second ICV injection of the 10 micrograms/kg dose of Compound 48/80 given 2 hr after an initial injection of this dose, produced a much reduced response and the numbers of head and body shakes, and episodes of paw tremor and grooming were between 20-30% of those produced by the first injection. The reduced effect of the second injection indicates that the behavioral effects of Compound 48/80 may arise from the acute degranulation of mast cells rather than direct effects on neuronal populations or the cerebral vasculature.

Animals↗

The effect of ethanol on behavioral temperature regulation in mice.

Mice were injected with 20% ethanol in 0.9% NaCl, or with 0.9% NaCl without ethanol during sessions of behavioral thermoregulation in a tubular temperature gradient (ambient temperature range approximately 9-38 degrees C). Internal temperature was monitored with an implanted telemetry device. An imaging system recorded the position (selected temperature) of the mouse within the gradient every 5 sec. A dose of either 2.25 or 2.60 g ethanol/kg body wt. produced significantly lower body temperatures than control (NaCl) injections. The 2.60 g/kg dose produced significantly lower selected temperatures than either the NaCl or 2.25 g/kg injections. Doses of 2.75 g ethanol/kg and above incapacitated the mice, precluding accurate behavioral thermoregulation. Utilizing a thermoregulatory index to compare the responses following experimental and control injections indicated that 2.25 or 2.60 g ethanol/kg leads to a decrease in the regulated temperature of mice.

Animals↗

Microinjection studies of duck globin messenger RNA translation in human and avian cells.

Microinjection techniques were used for the study of the translation of heterospecific messenger RNAs in living cells. Duck globin messenger RNAs, in the form of polysomes, messenger ribonucleoprotein particles, or free mRNAs, were injected into cells of human origin (HeLa), and the subsequent appearance and accumulation of avian globin were measured by specific immunofluorescence techniques. Globin accumulated within a high proportion of HeLa cells for at least 25 hr following injection, indicating the intracellular stability of the heterospecific globin messenger RNA and the fact that mRNA initially associated with more complex structures could be translated in the HeLa cytoplasm. In similar experiments, duck reticulocyte polysomes were shown to be translated in duck embryo cells but not in embryonic chick liver cells. The latter, however, could be shown to withstand the microinjection procedure as judged by their capacity to respond normally to inducers and inhibitors of the synthesis of alpha-aminolevulinic acid synthetase. HeLa cells injected with duck hemoglobin divide at normal or nearly normal rates following the injection, but their globin content diminishes, in contrast with the increasing globin content of cells receiving duck reticulocyte polysomes, mRNP particles, or free mRNA.

5-Aminolevulinate Synthetase↗

Neural modulation of lysine vasopressin-induced changes of catecholamines in the adrenal medulla of the pigeon.

Lysine vasopressin was injected (0.25 IU/100 g body wt) intraperitoneally only once to unilaterally splanchnic denervated pigeons. Adrenomedullary catecholamine (CA) content was measured spectrofluorometrically 0.5, 4, 12, 24, 72, 144 and 216 h after administration. The findings revealed that in innervated glands, vasopressin caused 59-74% decrease of norepinephrine (NE) 4 and 24 h after administration while in denervated glands it resulted in 18-65% release of NE 0.5 to 144 h after injection. This indicates that the splanchnic nerve prevents early phase (up to 0.5 h) of vasopressin-induced release of NE. Vasopressin also caused decrease of Epinephrine (E) from both the innervated (68-73%) and denervated (69-74%) glands 0.5 and 4 h after injection indicating that the splanchnic nerve has no effect on vasopressin-induced release of E. Accelerated resynthesis of NE exceeding the control value (44-94%) was encountered 144 and 216 h after injection as compared to a slower increase (14%) in denervated glands 216 h after injection. Higher rate of resynthesis of E was encountered in the innervated glands 12 and 72 h after treatment. The findings clearly point out that the splanchnic nerve accelerates resynthesis of both NE and E induced by vasopressin.

Adrenal Medulla↗

Effects of the subcutaneous administration of enkephalins on tail-flick response and righting reflex of developing rats.

The s.c. administration of [Met5]-enkephalin to 10-day-old rats pretreated with the mixture of 3 peptidase inhibitors, amastatin, captopril and phosphoramidon, produced the inhibition of tail-flick response and loss of righting reflex. When infant rats were pretreated with the mixture of any combination of two peptidase inhibitors, however, the change in both the response and the reflex were not produced at all by enkephalin injection, indicating that 3 kinds of enzymes, amastatin-sensitive aminopeptidase(s), captopril-sensitive peptidyl dipeptidase A and phosphoramidon-sensitive endopeptidase 24.11, played an important role in the inactivation of enkephalin after its systemic administration. Additionally, the fact that the two enkephalin-induced effects were more effectively antagonized by naloxone, a relatively selective mu-opioid antagonist, than by naltrindole, a specific delta-antagonist, or by nor-binaltorphimine, a specific kappa-antagonist, showed that these two effects were produced by the interaction of enkephalin with mu receptors. Moreover the involvement of mu receptors in the production of these two effects was shown by the fact that the s.c. administration of [D-Ala2,N-Me-Phe4,Gly5-ol]-enkephalin, a selective mu agonist, also produced these two effects which were more effectively antagonized by naloxone than by naltrindole or nor-binaltorphimine. Since the magnitude of the two effects induced by enkephalins in 15-day-old rats was significantly lower than that in 10-day-old rats, and the two enkephalin-induced effects were not produced at all in 20-day-old rats, a maturation-induced decrease in the permeability of the blood-brain barrier against opioid peptides was indicated.

Aging↗

Biodistribution and pharmacokinetics of recombinant, human 125I-interleukin-2 in mice.

The pharmacokinetics and biodistribution of radioiodinated recombinant interleukin-2 (125I-IL-2) was studied after either intravenous (i.v.) or intraperitoneal (i.p.) injection into C57BL/6 mice. Beta-lactoglobulin radiolabeled with 131I served as a control protein. After i.v. injection, 125I-IL-2 preferentially accumulated in the liver and spleen. Liver accumulation was fast, peaking at 5 min, and was followed by rapid clearance. Spleen accumulation was slightly slower, peaking at 15 min. Blood values 1 min after i.v. injection were 22-34% of the injected doses (I.D.)/gram. These values declined quickly over the next hour. In contrast, after i.p. administration no organ showed specific uptake of 125I-IL-2. Blood values after i.p. injection were essentially constant over 3 h and were greater and more sustained than after i.v. administration. Kidney values for both 125I-IL-2 and 131I-beta-lactoglobulin, after either i.v. or i.p. injection, indicated that the major route of clearance for both compounds was rapid loss through the kidneys.

Animals↗

Metallothionein immunoreactivity in the liver and kidney of copper injected rats.

Adult male rats were injected intraperitoneally with copper sulphate in physiological saline (3 mg copper/kg body wt). Metallothionein-I (MT-I) levels in liver, kidney, plasma and red blood cells were measured by radioimmunoassay (RIA), prior to the injection and after 7, 16 and 24 h. Copper and zinc levels in liver and kidneys were also monitored. Concentrations of MT-I in liver and kidneys showed a rapid increase and remained elevated for 24 h. Copper concentrations also increased in both tissues but zinc levels remained constant in the kidney and rose only slightly in the liver. MT-I levels increased gradually in plasma but decreased in the red blood cells. Immunochemistry of liver and kidney, using the direct peroxidase technique with antiserum to rat MT-I, revealed an increase in staining in both tissues after copper administration, consistent with the RIA results. The change in distribution of immunoreactive material with time after copper injection indicates a role for MT in the sequestration and excretion of copper in acutely loaded animals.

Animals↗

Survival of murine carrier erythrocytes injected via peritoneum.

Carrier-red blood cells (C-RBC) can be administered by intraperitoneal injection (IP) in mice, and C-RBC survive in circulation as well as cells administered by intravenous injection (IV). There was no difference in the 24 hr post-injection organ distribution of normal RBC and C-RBC, an indication of the normalcy of C-RBC. Approximately 25% of the C-RBC remain in circulation 14 days post-injection indicating a 20-day half-life for C-RBC in mice. This alternate injection method for RBC also allows for extravascular targeting of RBC to peritoneal macrophages.

Animals↗

Separation of different types of afterpotentials following penicillin-induced paroxysmal depolarization shifts of neurons in the motor cortex of the rat.

Afterpotentials of penicillin-induced paroxysmal depolarization shifts (PDS) of neurones in the motor cortex of the rat in vivo were investigated with intracellular recordings. Following the PDS, 4 different types of afterpotentials were observed: fast afterhyperpolarizations with an average duration of 600 ms, fast afterdepolarizations with an average duration of 700 ms, slow afterhyperpolarizations with an average duration of 1.9 s and slow afterdepolarizations with an average duration of 1.8 s. The fast and slow afterpotentials could occur in various combinations with the exception of a fast afterhyperpolarization followed by a slow afterdepolarization. Neurones displaying afterdepolarizations had higher resting membrane potentials than those displaying afterhyperolarizations, i.e. the polarity of the afterpotential depended on membrane potential. Experiments with intracellular Cl- injection indicated that the fast but not the slow afterpotentials are associated with an increase in membrane Cl- conductance. The slow afterhyperpolarizations are suggested to result from a calcium-dependent or a synaptically generated potassium current.

Animals↗