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Biomedical subjects

J S Li

Publications and source records attributed to J S Li.

At least 19 recordsLinked to original sources

Immunocytochemical localization of mu-opioid receptor in primary afferent neurons containing substance P or calcitonin gene-related peptide. A light and electron microscope study in the rat.

Co-expression of mu-opioid receptor-like immunoreactivity (MOR-LI) with substance P (SP)- or calcitonin gene-related (CGRP)-LI was observed in rat trigeminal and dorsal root ganglion neurons. In particular, MOR-LI was found in axon terminals with SP- or CGRP-LI in laminae I and II of the medullary and spinal dorsal horns. MOR may be implicated in modulation of release of SP and CGRP from primary sensory afferents.

Animals

Taurine-activated chloride currents in the rat sacral dorsal commissural neurons.

The electrophysiological and pharmacological properties of taurine (Tau)-activated Cl- currents (ITau) were investigated in the dissociated rat sacral dorsal commissural nucleus (SDCN) neurons using the nystatin perforated patch recording configuration under voltage-clamp conditions. The reversal potential of ITau was close to the Cl- equilibrium potential. The ITau was not affected by a preceding GABA response but cross-desensitized by a preceding glycine (Gly) response. Strychnine (STR), picrotoxin (PIC), bicuculline (BIC) and Zn2+ suppressed the ITau in a concentration-dependent manner. The pharmacology of the ITau and Gly-induced response (IGly) was similar, though Zn2+ inhibition on ITau differed from that on IGly in being much slower in recovery. Serotonin potentiated the ITau via protein kinase C. The results indicate that both Tau and Gly act on a strychnine-sensitive site to open the same Cl- channels in the SDCN neurons, and suggest that Tau may act as a functional neurotransmitter in the mammalian SDCN.

Algorithms

Co-localization of mu-opioid receptor-like immunoreactivity with substance P-LI, calcitonin gene-related peptide-LI and nitric oxide synthase-LI in vagal and glossopharyngeal afferent neurons of the rat.

Co-localization of mu-opioid receptor (MOR)-like immunoreactivity (-LI) with substance P (SP)-LI, calcitonin gene-related peptide (CGRP)-LI and nitric oxide synthase (NOS)-LI in the nodose, petrosal and jugular ganglia was examined in the rat by a double immunofluorescence histochemical method. About 0.6%, 41% and 95% of neurons with MOR-LI, respectively, in the nodose, petrosal and jugular ganglia showed SP-LI; about 2%, 51% and 66% of MOR-like immunoreactive neurons displayed CGRP-LI in the nodose, petrosal and jugular ganglia, respectively. In addition, about 59% of MOR-like immunoreactive neurons in the nodose ganglia displayed NOS-LI, whereas no NOS-LI was detected in the petrosal or jugular ganglion. These data provide evidence for co-localization of MOR-LI with SP-LI, CGRP-LI and NOS-LI in the vagal and glossopharyngeal afferent neurons, and suggest that MOR may regulate the release of SP, CGRP and nitric oxide from the visceral primary afferent terminals in the nucleus of the solitary tract of the rat.

Animals

Direct projections from the periaqueductal gray to pontine micturition center neurons projecting to the lumbosacral cord segments: an electron microscopic study in the rat.

Direct projections from the periaqueductal gray (PAG) to the pontine micturition center neurons directly projecting to the lumbosacral cord segments were observed electron microscopically in the rat by a double labeling method. Biotinylated dextran amine (BDA) was injected into the PAG and horseradish peroxidase (HRP) was injected into the lumbosacral cord segments. After injection of BDA into the ventrolateral part of the PAG, many BDA-labeled axons were seen light microscopically in Barrington's nucleus; a moderate number of them were found in the pontine tegmental region just ventral to Barrington's nucleus (D-region [Ding, Y-Q., Takada, M., Tokuno, H. and Mizuno, N., J. Comp. Neurol., 357 (1996) 318-330]). On the other hand, after injection of BDA into the dorsolateral part of the PAG, only a few BDA-labeled axons were seen in Barrington's nucleus or the D-region. BDA-labeled axon terminals were electron microscopically confirmed to be in synaptic contact with HRP-labeled dendrites and somata in Barrington's nucleus and the D-region. The results indicate that the ventrolateral part of the PAG is implicated in regulation of the micturition reflex.

Animals

Substance P receptor (NK1)-immunoreactive neurons projecting to the periaqueductal gray: distribution in the spinal trigeminal nucleus and the spinal cord of the rat.

Substance P receptor (SPR)-immunoreactive neurons projecting to the periaqueductal gray (PAG) were examined in the rat spinal trigeminal nucleus and spinal cord by a retrograde tracing method combined with immunofluorescence histochemistry. After injection of Fluoro-gold (FG) into the PAG, SPR-immunoreactive neurons labeled with FG were observed mainly in the lateral spinal nucleus and lamina I of the medullary and spinal dorsal horns and additionally in laminae V and X of the spinal cord.

Animals

Effect of chronic treatment with two different ET(A) selective endothelin receptor antagonists on blood pressure and small artery structure of deoxycorticosterone acetate (DOCA)-salt hypertensive rats.

Chronic treatment with a combined ET(A) and ET(B) endothelin receptor antagonist blunts hypertension development and small artery hypertrophy in deoxycorticosterone acetate (DOCA)-salt treated rats, in which endothelin-1 is overexpressed in endothelial cells of blood vessels. To determine whether ET(A) receptor antagonism played a predominant role in these findings, in this study the effects of two orally active ET(A) selective endothelin receptor antagonists, A-127722.5 and LU 135252, were evaluated on blood pressure and small artery structure in DOCA-salt hypertensive rats. Rats received A-127722.5 (30 mg/kg/day) or LU 135252 (50 mg/kg/day) in their drinking water since induction of hypertension. Whereas three of 10 untreated DOCA-salt hypertensive rats died, in the two treated groups none died and all appeared healthier. Systolic blood pressure of treated DOCA-salt hypertensive rats, measured with the tail cuff method, was lower than that of untreated DOCA-salt hypertensive rats by a mean of 20 mm Hg (P < .01) after 4 weeks of treatment with A-127722.5 and by 14 mm Hg (P < .01) with LU 135252. Cardiac and aortic relative weights were unaffected by treatment with either agent. Small arteries of the mesenteric, coronary, renal, and femoral vasculature, examined under standardized conditions after mounting on a wire myograph, were found to exhibit significant inward hypertrophic remodeling in DOCA-salt hypertensive rats. DOCA-salt hypertensive rats treated with A-127722.5 had a significantly smaller media width and media-to-lumen ratio in the four vascular beds examined, and rats treated with LU 135252 showed these findings in mesenteric and renal small arteries. These results demonstrate that chronic ET(A) selective antagonism induces similar effects to those of combined ET(A)/ET(B) receptor antagonists in DOCA-salt hypertensive rats; namely, mild reduction in development of hypertension and blunting of small artery morphological changes, and also appears to improve survival. These results suggest a role of ET(A) receptors in the endothelin dependent component of blood pressure elevation in DOCA-salt hypertensive rats, and in the small artery morphological changes present in this model of experimental hypertension.

Animals

Double-negative (CD4-CD8-) TCRalphabeta+ cells in patients with systemic lupus erythematosus.

Massive accumulation of CD4-CD8-TCRalphabeta+ cells in secondary lymphoid organs is characteristic of lupus-prone MRL/lpr mice. However, the role of these double negative T cells (DNT) in human lupus patients receive only limited attention. Herein, we investigate the frequency of DNT in the peripheral blood mononuclear cells of forty seven Chinese patients with systemic lupus erythematosus (SLE) and forty four normal individuals. DNT were measured with dual-fluorescence flow cytometry. The results showed that DNT only constituted a very minor subset of lymphocytes both in patients and normals, it normally did not exceed 2% of the lymphocyte population. Compared with normal subjects, patients with SLE had slightly increased levels of DNT within the total lymphocyte population (0.66+/-0.45% vs 0.51+/-0.33%) or within TCRalphabeta+ population (1.14+/-0.88% vs 0.88+/-0.54%). The difference, however, did not reach statistical significance. The levels of DNT correlated neither with the titers of anti-DNA antibodies in sera nor with the presence of active and severe lupus nephritis in SLE patients. Longitudinal follow-up of six patients at the stages of active and inactive nephritis revealed similar levels of DNT in the same individual. The preliminary results suggest that circulating DNT do not appear to play a critical role in Chinese patients with SLE.

Adolescent

Effects of AT1 and AT2 angiotensin receptor antagonists in angiotensin II-infused rats.

Angiotensin II (Ang II) appears to exert its contractile and growth-promoting effects through the AT1 receptor subtype, whereas the AT2 subtype may have growth-inhibitory and proapoptotic properties. Recently, some data have challenged this emerging concept. To clarify the role of AT1 and AT2 receptors, we treated Wistar rats that were infused with Ang II (120 ng/kg/min subcutaneously by osmotic minipump), with the AT1 antagonist losartan (10 mg/kg/d in the drinking water) and the AT2 antagonist PD123319 (30 mg/kg/d subcutaneously by osmotic minipump) for 21 days. At the end of the study, tail-cuff systolic blood pressure was 106+/-2.8 mm Hg in untreated rats and 108+/-2.0 mm Hg in rats infused with Ang II that received losartan, whereas it rose to 158+/-4.9 mm Hg in Ang II-infused rats and 158+/-3.0 mm Hg in rats infused with Ang II rats and PD123319 (the two latter groups P<.01 versus the two other groups). Heart weight, and aorta cross-section/body weight ratio were higher in Ang II-infused rats than in controls and were significantly reduced in Ang II-infused rats that received losartan (P<.05). Wire-myograph-mounted coronary, renal, mesenteric, and femoral small arteries from Ang II-infused rats and Ang II-infused rats receiving PD123319 had a greater media, media cross-section, and media/lumen ratio than vessels from untreated or Ang II-infused rats treated with losartan. These results support the concept that in Wistar normotensive rats infused for 3 weeks with angiotensin II, growth in the heart, aorta, and coronary, renal, mesenteric, and femoral small arteries is mediated by the AT1 receptor; the results show little evidence of a role of AT2 receptors in mediating angiotensin II effects in this experimental paradigm.

Administration, Oral

17-Imidazolyl, pyrazolyl, and isoxazolyl androstene derivatives. Novel steroidal inhibitors of human cytochrome C17,20-lyase (P450(17 alpha).

We recently described a number of inhibitors of P450(17 alpha), the key enzyme of androgen biosynthesis. Here, we report the synthesis and activity of novel 17-imidazolyl, pyrazolyl, and isoxazolyl androstene derivatives as potential agents for the treatment of prostatic cancer. A number of 17-(4'-Imidazolyl) derivatives were prepared by condensing the corresponding 17-ketol acetate side chain with aldehyde and ammonium hydroxide. The 17 beta-(4'imidazolyl) derivatives (2a, 2e, 4a, 4c) were found to be potent inhibitors of human testicular P450(17 alpha), with greater activity than ketoconazole. The juxtaposition between the imidazole ring and the steroid D ring appears to be important in contributing inhibitory properties, Compounds having a 17 beta-(2'-imidazolyl) ring (9a, 10) or a 20 beta-(2'-imidazolyl) ring (12), instead of the 17 beta-(4'-imidazolyl) ring (2a, 4a), are weak inhibitors. Among the 17-(4'-imidazolyl) derivatives, introduction of the 17 alpha-hydroxy group (4b) and 16 alpha,17 alpha-epoxide group (2d) diminished potency (2a-->2d; lC50 66-->430 nM; 4a-->4b; lC50 58-->1200 nM), while the 16,17 double bond increased the inhibitory activity by almost three times in the 5-en-3 beta-ol inhibitors (2a-->2e; lC50 60-->24 nM). There was virtually no difference in the inhibitory activity in the 4-en-3-one inhibitors (4a-->4c; IC50 58-->50 nM). The introduction of a methyl (2b) or phenyl group (2c) on the 2'-position of 4'-imidazolyl ring caused a dramatic decrease in the potency. As to modification of the A,B rings, the 3-acetate (2f, 2g) decreased the potency almost 3-fold compared with the 3-alcohol (2e-->2f, IC50 24-->75 nM; 2a-->2g, 66-->199 nM) and the conversion from the 5-en-3 beta-ol into the 4-en-3-one hardly affected the potency. As expected, 4c was more potent than 2e for the rat p450(17 alpha). 17-(3'Pyrazolyl)-(14b) and 17-(5'-isoxazolyl)-androsta-5,16-dien-3 beta-ol (15b) were also potent inhibitors of P450(17 alpha), whereas the 17-(2'-imidazolyl) compound (9b) was one of the most potent inhibitor in this series. However, their 16-saturated counterparts (9a, 14a, 15a) were weak inhibitors. The 17 beta-(3'-isoxazolyl)- (16) and 17 beta-(5'-methyl-3'-oxazolyl)androst-5-en-3 beta-ol (18) were also inactive. The introduction of a methyl of phenyl group on the nitrogen of the pyrazolyl ring of 14b [see 14c, 14d, and 14e] also caused some loss of inhibition for P450(17 alpha). Compounds 2e, 4a, 4c, 9b, 14d, 17a, and 17b are among the most potent inhibitors of human P450(17 alpha) so far reported.

Androstenes

Immunoaffinity column cleanup procedure for analysis of ivermectin in swine liver.

A simple and sensitive method for the analysis of ivermectin (22,23-dihydroavermectin B1) in swine liver based on immunoaffinity column cleanup is described. The immunosorbent was prepared by coupling polyclonal anti-ivermectin antibodies to carbonyl diimidazole-activated Sepharose CL-4B. After extraction with methanol, ivermectin was cleaned up on an immunoaffinity column, and determined by reversed-phase liquid chromatography with UV absorbance detection at 245 nm. Recoveries of ivermectin from fortified samples of 5-10 micrograms kg-1 levels ranged 85-102%, with coefficients of variation of 6-12%. The limit of detection was 2 micrograms kg-1 in a 5-g samples.

Animals

Role of right ventricular and pulmonary functional abnormalities in limiting exercise capacity in adults with congenital heart disease.

This study evaluates right ventricular (RV) and pulmonary function during exercise in adults with congenital heart disease (CHD). Thirty-one patients with CHD involving the right side of the heart underwent symptom-limited bicycle exercise testing with simultaneous expired gas analysis and measurement of RV ejection fraction (EF). Twenty-one age-matched normal controls underwent the identical exercise protocol. Maximal oxygen consumption was lower in the CHD than in normal controls (19.5 +/- 6.4 vs 30.5 +/- 0.8 ml/kg/min, p = 0.0001 patients vs controls). Both heart rate (156 +/- 25 vs 171 +/- 13 beats/min, p = 0.01) and oxygen pulse (9.3 +/- 3.7 vs 12.3 +/- 3.7 ml/beat, p = 0.01), an indirect measure of stroke volume, were found to be lower in the CHD group at peak exercise. Pulmonary dysfunction was evidenced in the CHD group by decreased forced expiratory volume, forced vital capacity and maximum voluntary ventilation, and by a higher ventilation/expired carbon dioxide ratio at peak exercise (37.2 +/- 6.9 vs 33.0 +/- 5.4, p = 0.02), suggesting an increase in dead space ventilation. Maximal oxygen consumption was lower in patients whose RVEF decreased with exercise (17.6 +/- 5.4 vs 22.8 +/- 6.4 ml/kg/min, p = 0.03 "decrease RVEF" group vs "increase RVEF" group). Maximal oxygen consumption correlated with the change in RVEF only in the group whose RVEF decreased with exercise (r = 0.5, p = 0.03). In the group that had increased RVEF with exercise, maximal oxygen consumption correlated with forced expiratory volume (r = 0.7, p = 0.02). Thus, adults with CHD have a reduced functional capacity compared with normal controls. This phenomenon appears to be associated with both RV and pulmonary abnormalities.

Adult

GABAergic synapses on mu-opioid receptor-expressing neurons in the superficial dorsal horn: an electron microscope study in the cat spinal cord.

A double-immunocytochemical electron microscope study was performed in the cat to examine whether GABAergic axons might be in synaptic contact with spinal neurons expressing mu-opioid receptor (MOR) in laminae I and II of the spinal dorsal horn at the lumbar cord segments. Structures showing MOR-like immunoreactivity (-LI) and those showing GABA-LI were labeled, respectively, with diaminobenzidine/peroxidase-reaction products and immunogold particles. Approximately one-third of dendritic profiles with MOR-LI in laminae I and II were postsynaptic to axon terminals with GABA-LI; about one-fourth of somatic profiles with MOR-LI were also postsynaptic to axon terminals with GABA-LI. The results suggest that activation of MOR on postsynaptic neurons may modulate effects which are induced by GABA released from presynaptic neurons.

Animals

Enhancement of artificial juxtacrine stimulation of insulin by co-immobilization with adhesion factors.

Insulin was co-immobilized with a cell adhesion factor--fibronectin or polyallylamine--on a surface-hydrolyzed poly(methyl methacrylate) film. Chinese hamster ovary cells overexpressing human insulin receptors were cultured on the film in the absence of serum or soluble proteins. While insulin immobilization did not affect cell adhesion, insulin immobilized on fibronectin-immobilized film reduced the adhesion. Addition of the tetrapeptide Arg-Gly-Asp-Ser (RGDS) inhibited cell adhesion onto fibronectin-immobilized films while cell adhesion onto polyallylamine-immobilized films was not inhibited by RGDS. Small amounts of immobilized insulin (1 to 10% of the amount of free insulin required to achieve cell growth acceleration) were sufficient to stimulate cell proliferation. The maximal mitogenic effect of immobilized insulin was greater than that of free insulin. In addition, co-immobilization with the adhesion factor remarkably enhanced the mitogenic effect. The phosphorylation of the receptor with free insulin attained the maximum degree very rapidly but ceased quickly. On the other hand, the receptor phosphorylation with immobilized insulin was accompanied by a longer induction period and lasted a longer period of time than that with free insulin. Insulin co-immobilization on fibronectin or polyallylamineimmobilized films reduced the induction period by enhancement of cell adhesion. The early and long-lasting receptor activation might have been caused by the greater mitogenic effect of co-immobilized biosignaling polypeptides.

Animals

Effect of short-term treatment of SHR with the novel calcium channel antagonist mibefradil on function of small arteries.

Treatment of spontaneously hypertensive rats (SHR) and Wistar-Kyoto control rats (WKY) for at least 12 weeks with calcium channel antagonists is associated with regression of structural hypertensive changes in the heart and in conduit and small arteries. To establish whether structural or functional changes of small arteries could be corrected with shorter periods of specific antihypertensive treatment, SHR and WKY were treated for 4 weeks with the novel calcium channel blocker mibefradil. Blood pressure rise was significantly reduced by mibefradil treatment in SHR to 165 +/- 1 mm Hg compared to a systolic blood pressure of 183 +/- 2 mm Hg in untreated SHR (P <.01). Aortic hypertrophy in SHR was slightly reduced by treatment, but small artery hypertrophy in 4 vascular beds (mesenteric, renal, coronary, and femoral) was unaffected by administration of mibefradil for 4 weeks. Mibefradil treatment resulted in normalization of endothelium-dependent relaxation in mesenteric small arteries, with disappearance of acetylcholine-induced contractions, although hypertrophy and remodeling of these small arteries were not significantly affected by treatment. In WKY rats, treatment had no effect on either structure or function of small arteries. These results demonstrate that treatment with the calcium antagonist mibefradil may induce an improvement in altered endothelial function even before regression of cardiovascular hypertrophy and remodeling takes place under treatment, indicating that normalization of abnormal small artery endothelial function in SHR under antihypertensive therapy may be independent of correction of altered small artery structure.

Animals

A preliminary report: effects of zinc and micronutrient repletion on growth and neuropsychological function of urban Chinese children.

OBJECTIVE: Zinc is essential for growth and cognition of experimental animals. Past research found zinc repletion improved growth of stunted Chinese children. Therefore we measured effects of zinc repletion on growth and neuropsychological functions of children. DESIGN: Double-blind randomized controlled treatment trial. SETTING: Elementary schools in low income districts of Chongqing, Qingdao and Shanghai. SUBJECTS: Three hundred-seventy-two 6 to 9 year old first graders. INTERVENTIONS: Treatments were 20 mg zinc, 20 mg zinc with micronutrients, or micronutrients alone. The micronutrient mixture was based on guidelines of the US NAS/NRC. Treatments were assigned to classrooms of 40 or more children each, and administered by teachers 6 days per week for 10 weeks. MEASURES OF OUTCOME: Changes in knee height and neuropsychological functions. RESULTS: Zinc alone had the least effect on growth while zinc with micronutrients had the largest effect; micronutrients alone had an intermediate effect. Zinc-containing treatments improved neuropsychological functions, but micronutrients alone had little effect. CONCLUSIONS: The findings confirm the essentiality of zinc for growth of children, and show, for the first time, the essentiality of zinc for neuropsychological functions of children. In addition, the need for repletion of other potentially limiting nutrients in studies examining the effects of specific nutrients on growth and neuropsychological functions was confirmed.

Analysis of Variance

Enhancement of the mitogenic effect by artificial juxtacrine stimulation using immobilized EGF.

Mouse epidermal growth factor (EGF) was covalently conjugated with the water-soluble polymer, poly(acrylic acid) (EGF-PAA), or with the water-insoluble polymer, surface-hydrolyzed poly(methyl methacrylate) (EGF-PMMA). Immobilized EGF (EGF-PMMA) stimulated DNA synthesis in Chinese hamster ovary cells overexpressing EGF receptors in amounts that were 5 to 10% of those of free EGF required for comparable effects. In addition, the maximal mitogenic effect of EGF-PMMA was greater than that of unconjugated EGF or EGF-PAA. EGF, EGF-PAA, and EGF-PMMA induced the autophosphorylation of EGF receptors and the stimulation of mitogen-activated protein kinase. However, whereas the onset of these effects was delayed with EGF-PMMA, they persisted for much longer than those of EGF and EGF-PAA. Unlike EGF and EGF-PAA, EGF-PMMA was not associated with cells after their removal from culture and did not induce receptor internalization. Culturing cells with PMMA-immobilized EGF thus represents a model system for studying "juxtacrine" stimulation of cells by membrane-bound growth factors.

Acrylic Resins

Effect of AT1 angiotensin-receptor blockade on structure and function of small arteries in SHR.

The structure and function of small arteries of different vascular beds in spontaneously hypertensive rats (SHRs) are altered relative to Wistar-Kyoto (WKY) control rats, and these differences may be blunted under treatment with angiotensin-converting enzyme inhibitors. To determine whether this effect of angiotensin-converting enzyme inhibitors was caused by the interruption of the renin-angiotensin system, our experiments were conducted with an AT1 angiotensin-receptor antagonist to evaluate its ability to induce regression of hypertrophy of resistance arteries in SHRs. The result of treatment of SHRs with losartan, an orally active selective angiotensin AT1 receptor antagonist was examined at a low (20 mg/kg/day) and a high (60 mg/kg/day) oral dose in SHRs once blood pressure had been elevated for some time. SHRs were treated for 12 weeks with losartan. Blood pressure was significantly reduced by losartan treatment from 210 +/- 2 mm Hg in untreated SHRs to 181 +/- 1 mm Hg (low dose) and 156 +/- 4 mm Hg (high dose) (p < 0.01). Cardiac and aortic hypertrophy were dose-dependently reduced in treated SHRs. Coronary, renal, mesenteric, and femoral small arteries (luminal diameter, 200-250 microm) studied on an isometric wire myograph and pressurized mesenteric small arteries examined under isobaric conditions exhibited significant hypertrophy and inward remodeling in SHRs in comparison to WKY rats. Losartan treatment resulted in a dose-dependent reduction in the media thickness and mediato-lumen ratio in small arteries from the four vascular beds studied on the wire myograph and in pressurized mesenteric small arteries. Endothelium-dependent relaxation studied in pressurized arteries was enhanced, and acetylcholine-induced endothelium-dependent contractions studied on the wire myograph were abolished in losartan-treated SHRs relative to untreated SHRs. In WKY rats, treatment had no effect. These results demonstrate that treatment with the selective angiotensin II receptor antagonist losartan, even at doses that reduce blood pressure only moderately, induces regression of cardiovascular hypertrophy and of endothelial dysfunction in genetic hypertension in the rat.

Angiotensin Receptor Antagonists

Coexistence of mu-opioid receptor-like and substance P-like immunoreactivities in the cat dorsal root ganglionic neurons.

Coexistence of mu-opioid receptor (MOR)-like immunoreactivity (LI) and substance P (SP)-LI in the neurons of the cat dorsal root ganglia (DRG) was examined by a double immunofluorescence histochemical method. Approximately 91% of SP-LI neurons in the DRG showed MOR-LI. However, SP-LI was exhibited in approximately 28% of the neurons labeled with MOR-LI. These morphological findings indicated that the MOR exist on most of the primary afferent SP-containing terminals, and suggest that MOR may regulate SP release from the primary afferent terminals in the cat dorsal horn.

Afferent Pathways