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T Lundeberg

Publications and source records attributed to T Lundeberg.

At least 127 records · Page 7Linked to original sources

Intrathecal and systemic R-phenylisopropyl-adenosine reduces scratching behaviour in a rat mononeuropathy model.

The aim of the present study was to investigate the effect of intravenous or intrathecal (i.t.) administration of R-phenylisopropyladenosine (R-PIA), a selective A1 adenosine receptor agonist, on spontaneous scratching behaviour, a phenomenon presumably related to pain in a mononeuropathy model (sciatic nerve ligation) in rats. The acute effect of daily i.t. R-PIA injections was studied up to 21 days following nerve ligation. The results demonstrate that both i.v. (30 nmol) and i.t. (3 nmol) R-PIA, in doses not producing any motor impairment, significantly reduces scratching behaviour in this animal model. The mechanism of action for this presumed antinociceptive effect is suggested to occur at the spinal cord level.

Adenosine↗

Oxytocin increases nociceptive thresholds in a long-term perspective in female and male rats.

Oxytocin (0.1 and 1.0 mg/kg s.c.) given to male rats during 5 days, increased tail-flick latency when measured 1 (P < 0.05) and 7 days (0.1 mg/kg, P < 0.05; 1.0 mg/kg, P < 0.01) after the last injection. The effect was gone 2 weeks after the end of the treatment. If an additional injection of oxytocin was given 10 days after a previous 5 day treatment period, the significant difference persisted after 3 weeks (P < 0.05). Tail-flick latency was significantly delayed also in oxytocin-treated females when measured 1 week after the treatment period (P < 0.05). Naloxone, but not an oxytocin antagonist, temporarily antagonised the oxytocin induced delay in withdrawal latency. This indicates that oxytocin may act by increasing the activity of opioid mechanisms.

Animals↗

Modification of lymphoid and brain nerve growth factor levels in systemic lupus erythematosus mice.

In the present work we investigated the production of nerve growth factor (NGF) in the brain and peripheral tissues of female NZB/W F1 mice, a well characterized model of murine lupus. Our results indicate that while no significant difference in the NGF content was observed in the sera and tissues of NZB/W mice and its parental strains during the first months of life, the levels of circulating NGF and the NGF content in the kidneys significantly increase in the autoimmune mice during the development of the disease. The NGF-producing brain regions showed a decrease in NGF concentration in 8 month-old NZB/W mice. Moreover, we found a modification of the NGF concentration in the spleens of autoimmune mice at 5 and 8 months. Our data support the hypothesis of a correlation between NGF and the inflammatory state of systemic lupus erythematosus (SLE) and indicate that NGF could have a role in the pathogenesis of this disease.

Aging↗

A model for experimental induction of acute temporomandibular joint inflammation in rats: effects of substance P(SP) on neuropeptide-like immunoreactivity.

This is a study of neurokinin A (NKA)-, calcitonin gene-related peptide (CGRP)- and neuropeptide Y (NPY)- like immunoreactivity(-LI) in the cerebrospinal fluid (CSF), plasma and perfusates (PF) from the temporomandibular joints (TMJs) of the rat during acute inflammation. Substance P (10(-5) M, 0.01 ml) was injected into the right TMJ of the rat. The TMJs of the control rats, were injected with 0.01 ml saline. CSF, plasma and PF from TMJs were taken at 2, 6 and 24 hrs following injection. The neuropeptide-LI level was analysed by specific radioimmunoassays and compared with control values. Unilateral injection of SP into the rat TMJ resulted in a general increase in the concentration of NKA-, CGRP- and NPY-LI in the TMJ PF at 2, 6 and 24 hrs following injection. In the CSF NKA- and CGRP-LI was increased leaving the NPY-LI unaffected. In general no changes in peptide concentrations were seen in plasma. The results indicate that SP directly or indirectly induces a local release of peptides through an action at sensory and sympathetic neurons.

Animals↗

The calcitonin gene-related peptide antagonist CGRP8-37 increases the latency to withdrawal responses bilaterally in rats with unilateral experimental mononeuropathy, an effect reversed by naloxone.

The present study was performed in rats with experimental mononeuropathy after left common sciatic nerve constriction. A bilateral decrease in hindpaw withdrawal latency to thermal and mechanical stimulation was observed after unilateral ligation of the left common sciatic nerve; however, it was more pronounced on the lesioned side. Compared with sham-operated rats, the content of calcitonin gene-related peptide-like immunoreactivity was significantly decreased in the left dorsal horn of the spinal cord and left dorsal root ganglia in rats with mononeuropathy. Blocking the receptor of calcitonin gene-related peptide, by intrathecal injection of 5 or 10 nmol of calcitonin gene-related peptide (8-37), induced a significant bilateral increase in hindpaw withdrawal latency to both thermal and mechanical stimulation which, however, was significantly less pronounced in mononeuropathic rats than in intact rats. The effect of calcitonin gene-related peptide (8-37) was reversed by intrathecal administration of the opioid antagonist naloxone. The contribution of calcitonin gene-related peptide and its receptors to transmission of presumed nociceptive information appears to be reduced in the sciatic nerve constriction model. The decrease in reflex responsiveness induced by calcitonin gene-related peptide (8-37) was counteracted by naloxone, indicating that opioids control the net effect of excitation in the spinal cord circuitry induced by calcitonin gene-related peptide and possibly other co-released neurotransmitters.

Animals↗

The cellular localization of the neuropeptides substance P, neurokinin A, calcitonin gene-related peptide and neuropeptide Y in guinea-pig vestibular sensory organs: a high-resolution confocal microscopy study.

Four neuropeptides, substance P, neurokinin A, calcitonin gene-related peptide and neuropeptide Y, were detected by radioimmunoassay in guinea-pig vestibular end-organs. High-resolution confocal microscopy visualization of immunofluorescence staining was used to determine the cellular localization of these peptides. Substance P- and neurokinin A-like immunoreactivities were found to co-exist in afferent fibers innervating the peripheral regions of both the utricular and ampullar sensory organs. The immunoreactivity was more concentrated in the distal ends of the calyceal-shaped nerve endings that innervate type I sensory cells. While in the guinea-pig, nerve calyces and type I cells are distributed in both the central and peripheral regions of the sensory epithelia, immunoreactive calyces were found only in the peripheral regions. Calcitonin gene-related peptide-like immunoreactivity was localized in small bouton endings situated at the level of the base of the hair cells. These boutons were in a position to make axosomatic contacts with type II sensory cells and axodendritic contacts with afferent nerve endings. Calcitonin gene-related peptide immunoreactivity co-existed with choline acetyltransferase immunoreactivity. The localization and shape of these boutons identified them as the axonal endings of efferent vestibular fibers. Neuropeptide Y-like immunoreactivity was not observed in the actual sensory epithelium but in the underlying connective tissue, where it was located in varicose fibers along blood vessels. The synaptic position of the tachykinins is clearly distinct from that of calcitonin gene-related peptide. This segregation distinguishes the vestibular end-organs from most peripheral tissues where these peptides are co-localized. The tachykinin-immunoreactive afferent fibers are postsynaptic to the hair cells. If, as in somatic sensory endings, these fibers can be triggered to release the neuropeptides by an axon reflex type of activation, then the tachykinins could interfere directly with the function of type I and type II vestibular hair cells. Calcitonin gene-related peptide co-exists with acetylcholine in the efferent axonal endings that are presynaptic to type II hair cells and to afferent fibers. Calcitonin gene-related peptide can thus interfere by direct synaptic action with type II hair cells only. It may also regulate the activity of the tachykinin-containing afferents.

Animals↗

Effects of adjuvant on neuropeptide-like immunoreactivity in experimentally induced temporomandibular arthritis in rats.

Substance P (SP)-, neurokinin A (NKA)-, calcitonin gene-related peptide (CGRP)- and neuropeptide Y (NPY)-like immunoreactivities (-LI) were examined in cerebrospinal fluid (CSF), plasma and temporomandibular joint (TMJ) perfusates in rats 1 and 12 h after inoculation at the base of the tail (0.05 ml) or injection into the right TMJ (0.01 ml) of heat-killed Mycobacterium butyricum in paraffin oil. In the rats inoculated at the base of the tail (polyarthritic rats), there was a significant increase of CGRP-LI and NKA-LI. The changes in neuropeptide-LI were not as marked in the CSF of rats injected with adjuvant in one TMJ (monoarthritic rats) as in the polyarthritic group. Instead, the most significant changes in the monoarthritic rats were seen in the perfusates of both TMJs. The increases in SP-, NKA-, CGRP- and NPY-LI were significant for both TMJs and more pronounced than in the polyarthritic rats. The results show that inoculation of adjuvant at the base of the tail induces significant changes of neuropeptide-LI predominantly in CSF, whilst an intra-articular injection induces bilateral changes in neuropeptide-LI in joint perfusate. Therefore, two different neural mechanisms may be involved early in adjuvant-induced poly- and monoarthritis.

Animals↗

Stroking of the abdomen causes decreased locomotor activity in conscious male rats.

The specific aim of the present study was to determine if stroking in conscious rats can influence spontaneous locomotor behavior in an open-field arena. For this purpose, conscious rats were held across the scapula and the ventral side of the abdomen was stroked at a pressure of 100-150 mm H2O and at a speed of approximately 20 cm/s. The stimulation frequency was approximately 40 strokes/min and the duration 2, 5, and 10 min. Animals held for 10 min served as controls. There was a significant decrease in rearing and locomotion and a significant increase in peripheral activity in the open-field arena after the treatment. Maximal effects were obtained after 5 min of stroking. These effects were consistent with a stroking-induced sedative effect similar to that seen in this open-field arena model following neuroleptics or large doses of oxytocin.

Animals↗

Oxytocin causes a long-term decrease of blood pressure in female and male rats.

The aim of the present study was to investigate the long-term effects of oxytocin (OXY) on blood pressure (BP) and heart rate (HR) in conscious female and male rats. For this purpose, subcutaneous (SC) (0.01, 0.1, and 1 mg/kg) or intracerebroventricular (ICV) (1 microgram/kg) injections of OXY were given during 5-day periods. BP and HR were measured daily. A significant decrease in BP, without affecting HR, compared to saline-treated controls was seen in response to 0.1 (males: p < 0.01, females: p < 0.001) and 1 mg/kg (p < 0.001) of OXY given SC. BP gradually returned to preexperimental levels within 10 days after the last injection in male rats but, in females, the significant lowering of BP remained unchanged during this period. Also OXY ICV (1 microgram/kg) decreased BP (p < 0.05 after one day, p < 0.001 after 5 days of injections). This effect was still present 8 days after the last injection (p < 0.05). These results indicate that OXY may induce a long-term lowering of BP.

Animals↗

Is the pretreatment effect of low dose Freund's adjuvant on adjuvant arthritis due to an activation of the nervous system?

It has been recently shown that pretreatment with a low dose of Freund's adjuvant decreases the severity of adjuvant arthritis in rats. To study the involvement of the central and peripheral nervous systems in the pretreatment effect, concentrations of substance P (SP)-, neurokinin A (NKA)-, calcitonin gene-related peptide (CGRP)- and neuropeptide Y (NPY)-like immunoreactivities (-LI) were measured in the cerebrospinal fluid, plasma and synovial fluid 2 and 24 h after a single s.c. injection of 0.05 mg Freund's adjuvant. Increased concentrations of CGRP-LI were found in the cerebrospinal fluid, plasma and synovial fluid. NPY-LI was decreased in the cerebrospinal fluid while NKA-LI was decreased in plasma. In the synovial fluid, SP-LI was increased at 24 h and NKA-LI was increased at 2 h following treatment. Our results indicate that part of pretreatment effect of low dose of subcutaneous Freund's adjuvant in the rat may be attributed to neurogenic mechanisms.

Animals↗

A model for experimentally induced temperomandibular joint arthritis in rats: effects of carrageenan on neuropeptide-like immunoreactivity.

Substance P(SP)-, neurokinin A (NKA)-, calcitonin gene-related peptide (CGRP)- and neuropeptide Y (NPY)-like immunoreactivity (-LI) was studied in rats' cerebrospinal fluid (CSF), plasma and perfusates (PF) from the temporomandibular joints (TMJs) at 2, 6 and 24 h following 0.01 ml injection of 2% carrageenan (CAR) into the right TMJ. SP-, NKA-, CGRP- and NPY-LI were significantly increased in both TMJ perfusates of the treated groups compared to controls. Generally an injection with CAR into the right TMJ induced a similar influence of the concentration of SP-, NKA-, CGRP- and NPY-LI in the CSF, plasma and PF at 2, 6 and 24 h following injection. However, the most pronounced changes in neuropeptide-LI occurred intra-articularly in the joint fluid, which indicates that both the sensory and sympathetic nervous system are activated in this joint following osteoarthritis induction by carrageenan.

Animals↗

Studies on cutaneous blood flow in the mammary gland of lactating rats.

The mechanisms that regulate mammary blood flow during lactation are not fully understood. In the present study laser Doppler flowmetry (LDF) was used to measure blood flow in the cutaneous microvessels of the mammary gland of lactating rats. The effects of suckling on blood flow were examined, as were those of local injection of oxytocin (0.5-5 mU) and the vasoactive peptides calcitonin gene-related peptide (CGRP; 0.1-10 pmol), vasoactive intestinal polypeptide (VIP; 0.4-20 pmol) and neuropeptide Y (NPY; 1-40 pmol). Blood flow responses to suckling varied depending on how much time had lapsed since the previous suckling. In rats with milk in the gland, suckling caused an initial increase in blood flow. In connection with milk let-down, the blood flow decreased, but was followed by a second increase. In recently suckled rats with no milk in the gland the increase in blood flow corresponded to the number of pups suckling. Oxytocin injections also had varying effects on mammary blood flow depending on how recently suckling had taken place. In non-suckled rats with milk in the gland, oxytocin injections caused a rise in blood flow that was interrupted by a fall during milk ejection. In recently suckled rats, all doses of oxytocin caused an increase in blood flow of similar magnitude. However, the effect of the higher doses had a longer duration. CGRP and VIP injections caused a dose-dependent increase in mammary blood flow regardless of when suckling last occurred. NPY injections caused a dose-dependent decrease in blood flow.

Animals↗

Comparison of vascular effects of calcitonin gene-related peptide and lidocaine on human veins.

Arterial and venous constriction during microsurgery are among the leading causes of flap failure. So far, pharmacologic tools have been proposed only for arterial constriction, and local anesthetics are commonly used to counteract the vascular spasm. The purpose of this study was to investigate the vascular effects of two known arterial vasodilators on human veins, in order to evaluate the possibility of their potential use during microsurgery. In vitro experiments were performed on 31 greater saphenous vein (SV) rings obtained from 20 patients and on 12 cephalic vein (CV) rings from 7 patients. The rings were mounted in organ baths and their isometric contractile activity was measured. Experiments were conducted by cumulatively adding calcitonin gene-related peptide (CGRP) or lidocaine to the organ baths. The endothelium was mechanically removed in 18 SV rings and in 6 CV rings. Results demonstrated that in vitro CGRP produced vasodilation only; no constrictive effects were seen. Lidocaine produced a biphasic response with contraction at low concentrations (1.5 x 10(-5) M, 1.5 x 10(-3) M) and release of the maximal contraction at higher concentrations, similar to that observed in arteries. Removal of the endothelium did not significantly affect contractile activity in either CGRP- or lidocaine-treated vessels. The data supported the conclusion that CGRP could be used to relieve venous constriction, and it is suggested that further studies on the clinical use of CGRP in microsurgery is warranted.

Calcitonin Gene-Related Peptide↗

Calcitonin gene-related peptide in experimental ischemia. Implication of an endogenous anti-ischemic effect.

Ischemia resulting from flap harvesting and vascular manipulation during microsurgery may be responsible for flap ischemic sufferance and, ultimately, necrosis. Recently, the regulatory role of the sensory nervous system in ischemia has attracted much interest. Calcitonin gene-related peptide (CGRP), a neuropeptide, is a naturally occurring vasodilator with no constrictive effects. In the present study, we developed a model of partial, chronic ischemia in the rat epigastric flap and investigated the effects of ischemia on concentrations of CGRP-like immunoreactivity (-LI) in ischemic skin and in different regions of the rat brain (striatum, hippocampus, pituitary, hypothalamus, and frontal and occipital cortex). A neurovascular island flap based on the superficial epigastric vessels was raised in 10 animals. Ischemia of the flap was obtained by ligating the feeding artery so that the blood flow was reduced to 25% of the normal circulation. An electromagnetic Doppler positioned on the artery was used to monitor the blood flow reduction. Ten nonoperated animals were used as controls. Ten days after the operation, CGRP-LI was significantly increased in five of six brain regions analyzed (striatum excepted). Significantly decreased concentrations of CGRP-LI were found in seven ischemic flaps, as opposed to the control group. In the remaining three flaps, no significant changes in CGRP concentration were observed. The highest blood flux values (detected using a laser Doppler) in the flaps correlated positively with the highest concentrations of CGRP-LI in the flap tissue. The results of the present study suggest that endogenous CGRP may be involved in the adaptive response to ischemia.

Animals↗

Effects of repeated sensory stimulation (electro-acupuncture) and physical exercise (running) on open-field behaviour and concentrations of neuropeptides in the hippocampus in WKY and SHR rats.

The effects of repeated sensory stimulation (electro-acupuncture) and physical exercise (running) on open-field behaviour and on hippocampal concentrations of neuropeptide Y, neurokinin A, substance P, galanin and vasoactive intestinal peptide (VIP)-like immunoreactivities were studied in WKY (wistar-Kyoto) and SHR (spontaneously hypertensive) rats. Significantly higher concentrations of substance P-like immunoreactivity, neurokinin A-like immunoreactivity and neuropeptide Y-like immunoreactivity were found in the hippocampus immediately after 3 weeks of treatment (electro-acupuncture and running), but not 1 week after the last (tenth) changes in neuropeptide concentrations were similar in the two rat strains. Open-field behaviour was significantly reduced during the treatment period in both strains. There were significant negative correlations between behaviour and neuropeptide concentrations in SHR rats, suggesting interdependency with sympathetic activity. It is proposed that the effects of electro-acupuncture and physical exercise in rats are related to increases in neuropeptide Y, neurokinin A and substance P in the hippocampus.

Animals↗

Intrathecal CGRP8-37-induced bilateral increase in hindpaw withdrawal latency in rats with unilateral inflammation.

1. Recent work in our laboratory has demonstrated that intrathecal administration of a selective antagonist of calcitonin gene-related peptide (CGRP), CGRP8-37, increased the hindpaw withdrawal latency (HWL) to thermal stimulation and hindpaw withdrawal threshold (HWT) to pressure in normal rats, and that these effects were more pronounced than in rats with mononeuropathy. 2. The present study was performed to investigate the effects of intrathecal administration of CGRP8-37 on the HWL and HWT in rats with unilateral hindpaw inflammation induced by subcutaneous injection of carrageenin. The effect of naloxone was also studied. 3. Subcutaneous injection of 0.1 ml of carrageenin into the plantar region of the left hindpaw induced a significant increase in the volume of the ipsilateral hindpaw (P < 0.001), and significant bilateral decreases of the HWL to thermal stimulation (ipsilateral: P < 0.001; contralateral: P < 0.01) and HWT to pressure (ipsilateral: P < 0.001; contralateral: P < 0.01). 4. Intrathecal administration of 10 nmol of CGRP8-37, but not of 1 or 5 nmol, induced a significant bilateral increase in the HWL and HWT in rats with experimentally induced inflammation (thermal test: P < 0.001; mechanical test: P < 0.001). 5. The effect of intrathecal administration of 10 nmol CGRP8-37 on HWL and HWT was significantly more pronounced in intact rats than in rats with experimentally induced inflammation (ipsilateral: P < 0.001; contralateral: P < 0.001). 6. The effect of CGRP8-37 on withdrawal responses in the inflamed paw was partly reversed by intrathecal injection of naloxone at a dose of 88 nmol in the thermal (ipsilateral: P < 0.01; contralateral: P = 0.14) and mechanical tests (ipsilateral: P < 0.05; contralateral: P = 0.60). 7. A significant bilateral increase in the concentration of CGRP-like immunoreactivity in the perfusate of both hindpaws was demonstrated 24 h after unilateral injection of carrageenin (ipsilateral: P < 0.001; contralateral: P < 0.05). There was also an increase in the amount of CGRP-like immunoreactivity in the cerebrospinal fluid (P < 0.001), but not in plasma (P = 0.75). 8. The present study demonstrates that acute experimentally-induced unilateral hindpaw inflammation, induces bilateral increases in the amount of CGRP-like immunoreactivity in hindpaw perfusates. Intrathecal administration of CGRP8-37 increased the HWL to thermal stimulation and HWT to pressure bilaterally. 9. The results indicate that CGRP plays a role in the transmission of presumed nociceptive information in the spinal cord of rats with experimentally induced inflammation. Furthermore, our findings suggest that opioids can modulate CGRP-related effects in the spinal cord.

Animals↗

The effect on joint fluid concentration of neuropeptide Y by intra-articular injection of glucocorticoid in temporomandibular joint arthritis.

Twenty-two patients (29 joints) with temporomandibular joint (TMJ) arthritis of specific or unspecific nature were given one intra-articular glucocorticoid (GC) injection. The effect on subjective symptoms and clinical signs in the craniomandibular system and on joint aspirate concentration of neuropeptide Y-like immunoreactivity (NPY-LI) was evaluated at follow-up visits 2-3 or 4-6 weeks after treatment. In the patients with specific inflammatory joint disease the treatment resulted in an improvement of symptoms and clinical signs and in a reduction in the TMJ level of NPY-LI 2-3 weeks after treatment. In the patients with unspecific inflammatory joint disease there was also an improvement in the clinical variables and a reduction in the NPY-LI level after 2-3 weeks, but not on a statistically significant level. The results of this study show that intra-articular GC treatment causes a short-term decrease of the TMJ fluid level of NPY-LI in patients with specific inflammatory joint disease, while symptoms and signs improve.

Adult↗

A model for the study of experimentally induced temporomandibular arthritis in rats: the effect of human recombinant interleukin-1 alpha on neuropeptide-like immunoreactivity.

To study the interaction between human recombinant interleukin-1 alpha and the nervous system, substance P-, neurokinin A-, calcitonin gene-related peptide-, and neuropeptide Y-like immunoreactivity in the cerebrospinal fluid, plasma, and temporomandibular joint (TMJ) perfusates of rats during acute experimental monarthritis were examined. The right TMJs of the experimental rats were injected with 0.01 mL of human recombinant interleukin-1 alpha. The right TMJs of control rats were injected with 0.01 mL of saline. Cerebrospinal fluid, plasma, and perfusates from the right TMJs were obtained at 2, 6, and 24 hours following injection, and neuropeptide-like immunoreactivity was analyzed by specific radioimmunoassays. Values of neuropeptide-like immunoreactivity for the experimental rats were compared with those of the control rats. In the experimental group, substance P-, neurokinin A-, and calcitonin gene-related peptide-like immunoreactivities were increased in cerebrospinal fluid compared to those of the control group. In plasma, no changes in neuropeptide-like immunoreactivities rose significantly in the TMJ perfusates. Most pronounced changes in neuropeptide Y-like immunoreactivity occurred intra-articularly in the TMJ perfusates. The results indicate that the contribution of the nervous system to human recombinant interleukin-1 alpha-induced monarthritis is most pronounced in the affected joint.

Animals↗