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Biomedical subjects

H Jiang

Publications and source records attributed to H Jiang.

At least 235 records · Page 13Linked to original sources

[Influence of androgen on Bcl-2 mRNA expression in BPH tissue].

OBJECTIVE: To study the expression of Bcl-2 mRNA in BPH tissue and the influence of androgen. METHODS: The circulating testosterone level of BPH patients and rats was decreased by administration of medroxyprogesterone and stilbestrol as well as castration. Using RNA dot blot hybridization technic, we detected the Bcl-2mRNA expression in human BPH tissue and rat prostate under different level of androgen. RESULTS: The average dot IOD (integrated optical density, IOD) value ratio of the untreated patient group to the treated group was 1.71 (P < 0.01). There was an decrease of intensity of Bcl-2 mRNA expression in the latter group compared with the former group. The ratio of the normal rat prostates to the castrated rat prostates was 1.28 (P < 0.05). The Bcl-2 mRNA expression was decreased after castration. CONCLUSIONS: The expression of Bcl-2 plays a role in the development of BPH. The decrease of prostatic cell death is important in the BPH pathogenesis. Apart from promoting the proliferation of prostatic epithelia and stroma cells, androgen might prohibit apoptosis by increasing the expression of Bcl-2 in BPH development.

Androgens↗

[Transurethral electrovaporization-ablation of superficial bladder carcinoma].

OBJECTIVE: To observe short-term curative effect of transurethral electrovaporization-ablation of superficial bladder carcinoma. METHODS: 82 cases of superficial bladder carcinoma were treated using transurethral electrovaporization-ablation. RESULTS: The mean operative time was 36 min. One patient was complicated with extraperitoneal bladder perforation. No patients experienced TUR syndrome and severe hemorrhage. During the follow up for 2-18 months, 3 patients had recurrence respectively at 7, 8 and 10 months after the operation. CONCLUSIONS: Cut-electrode had vaporization and ablation with smooth surface of the wound and speed. The advantage includes safety, few complication, evident efficacy, and short hospitalization.

Adult↗

[A report of two Chinese familial Budd-Chiari syndrome].

OBJECTIVE: To investigate the etiology of two Chinese familial Budd-Chiari syndrome (BCS). METHOD: Four patients with familial BCS (from A and B families), and the other 41 family members were detected by angiography, ultrasound Dopler, etiology analysis and Factor V Leiden (FvL) mutation analysis. RESULT: Four BCS patients were proved by angiography, 2 by ultra sound Dopler in family A. Ten members in family A were varicosis in low extremeties. FvL mutation was detected in 4 of 6 patients and 2 normal family members. A II(2), A III(7, 11, 15,) B II(10) and B III(5) had FvL mutation. The FvL mutations were compatible with Mendel hereditary law. CONCLUSION: FvL mutation may be one of main risk factors and varicosis in low extremeties may be another risk factors for familial BCS.

Adolescent↗

[Nitric oxide and cytokines in otitis media with effusion].

OBJECTIVE: To study the role of cytokines and nitric oxide (NO) in the pathogenesis of secretory otitis media (SOM). METHODS: The content of NO, interleukin-8 (IL-8) and tumor necrosis factor alpha (TNF-alpha) in blood plasma and middle ear effusion (MEE) were measured in 58 (80 ears) patients with secretory otitis media and in 23 normal subjects, respectively. RESULTS: NO, IL-8 and TNF-alpha were found in 100%, 82.2% and 71.4% of MEE respectively. NO, IL-8 or TNF-alpha of blood plasma in the SOM group was higher than those in the normal control group (P < 0.05). The concentration of NO, IL-8 or TNF-alpha in MEE was remarkably higher than those in blood plasma (P < 0.01). It revealed that the shorter the course, the higher the concentration of IL-8 in MEE (P < 0.01), and the longer the course, the higher the concentration of NO or TNF-alpha in MEE (P < 0.05). IL-8 concentration of MEE in serous fluid group was remarkably higher than that in the mucous fluid group (P < 0.01), and the concentration of NO or TNF-alpha of MEE in the mucous fluid group was higher than that in the serous fluid group (P < 0.05). NO level of MEE was positively correlated with TNF-alpha (r = 0.696 P < 0.01). CONCLUSION: NO IL-8 and TNF-alpha might be important mediators in MEE secretion in SOM. IL-8 might participate in the defensive reaction of organism during the early stages of SOM, and play a role in serous effusion secretion. NO and TNF-alpha might be closely related to the persistence of SOM, and might be a mediator of mucin secretion in SOM.

Adolescent↗

Study on modified cold storage method of rat livers with self-made hyd solution.

OBJECTIVE: To investigate the cold preservation effect of rat livers by modified storage method with self-made HYD solution. METHODS: The modified method was that the vascular bed of rat livers was expanded with an additional 20 to 40ml self-made HYD solution/100g liver. After removing the liver, the extra HYD solution expressed as % liver weight was entrapped via portal infusion by tying off the supra-and infra hepatic inferior vena cava. According to the amount of extra HYD solution, 40 rats were randomly divided into four groups including: control group with conventional storage method, 20% group, 30% group and 40% group. The preservation effect of modified storage method with that of conventional storage method by using isolated perfused rat liver model was compared. RESULTS: Bile production and all the indices of hepatic microcirculation including portal perfusion pressure, endothelin-1 in the effluent, trypan blue distribution time and histology in modified method groups were significantly superior to those in control group (P < 0.05). The liver enzymes in 30% group were markedly lower than those in control group (P < 0.05). The preservation effect of rat liver in 30% group was the best among the modified method groups. CONCLUSION: The modified cold stage method is effective and may have potential for clinical application for liver preservation.

Alanine Transaminase↗

Difference of rejection in single versus combined pancreas and kidney transplantation in rats.

OBJECTIVE: To investigate the difference of rejection in single versus combined pancreas and kidney transplantation in rats. METHODS: Allograft models including simultaneous pancreas and kidney (SPK) transplant and pancreas or kidney transplant alone were established in SD-Wistar rats, rejections of pancreas and kidney in different models were compared morphologically and functionally. RESULTS: Mean survival time (MST) of pancreas was significantly prolonged in SPK than in pancreas transplant alone (PTA) (11.5 days vs. 9.2 days, P < 0.05). Incidence of interstitial pancreatic rejection at gade II and grade III was much obvious in PTA than in SPK (42.9% vs. 12.5% at grade II and 28.6% vs 6.3% at grade II , P < 0.05). No significant difference was found in MST between SPK and kidney transplant alone( KTA). Administration of cyclosporine A prolonged the MST of pancreas and kidney, without altering the tendency stated above. CONCLUSIONS: In SPK, the function of pancreas is protected by kidney hence the severity of rejection is reduced, whereas the function of kidney is not protected by pancreas. It suggests that different organs differ in immunoallergization and immunoregulation, and immune response tend to attack organs with greater immunoactivity, those organs with minor one could be protected. Cyclosporine A is effective on prolonging the MST of pancreas and kidney.

Animals↗

[Study on midazolam used for awake blind intubation of maxillofacial surgery].

OBJECTIVE: To provide clinical data for midazolam to be used as an assistant drug for awake tracheal intubation. METHODS: 40 cases for maxillofacial surgery were selected and divided into 2 groups randomly with each group 20 cases. All cases received awake intubation using blind tracheal intubation instrument 5 minutes before intubation, patients in group 1 were administered fentanyl 4 microg/kg and midazolam 0.04 mg/kg by vein,patients in group 2 were only injected fentanyl 4 microg/kg. The changes of sedation score (Ramsay score), bispectral analysis of electroencephalogram (BIS), heart rate (HR), mean artery pressure (MAP), respiration rate (RR), blood oxygen saturation of pulse (SpO(2)) and the incident rate of amnesia in the two groups at T1 (before administering drug), T2 (just before starting intubation), T3 (when oesophagus tracheal introducer was just located properly), T4 (when light cable was just inserted into tracheal) and T5 (when tracheal tube was just inserted into tracheal) were observed. RESULTS: (1) To be compared with T1, Ramsay score increased and BIS decreased obviously (P<0.05) in group 1 after T2. (2) To be compared with T1, MAP and HR rose significantly (P<0.05) in group 2 after T3. (3) After T3, RR was obviously lower than T1 (P<0.05) in the two groups,but there was no change in SpO(2). The incident rate of amnesia for intubation procedure was 65% in group 1, and it was remarkly greater than that in group 2 (P<0.05). CONCLUSION: Midazolam can produce a good effect of sedation and anterograde amnesia, it is a proper assistant drug for awake intubation.

Clinical Trial↗

[Evaluation of bispectral analysis of electroencephalogram in monitoring postanesthesia recovery of cleft palate surgery].

OBJECTIVE: To study the value of bispectral analysis of electroencephalogram in monitoring postanesthesia recovery of cleft palate surgery. METHODS: To select 30 cases who were administered general anesthesia for cleft palate surgery, to monitor their postanesthesia recovery using bispectral analysis of electroencephalogram,and to observe the change of BIS in the different stage of recovery. RESULT: BIS increased gradually (P<0.05) following the patient cumulation percentage also rose progressively in the different stage of recovery, the graph of patient cumulation percentage BIS shifted to right. There was a significant linear correlation (r=0.84, P<0.05) between BIS and recovery score. CONCLUSION: The study suggests that it is simple and reliable for BIS in monitoring postanesthesia recovery of cleft palate surgery.

English Abstract↗

PEG-3, a nontransforming cancer progression gene, is a positive regulator of cancer aggressiveness and angiogenesis.

Cancer is a progressive disease culminating in acquisition of metastatic potential by a subset of evolving tumor cells. Generation of an adequate blood supply in tumors by production of new blood vessels, angiogenesis, is a defining element in this process. Although extensively investigated, the precise molecular events underlying tumor development, cancer progression, and angiogenesis remain unclear. Subtraction hybridization identified a genetic element, progression elevated gene-3 (PEG-3), whose expression directly correlates with cancer progression and acquisition of oncogenic potential by transformed rodent cells. We presently demonstrate that forced expression of PEG-3 in tumorigenic rodent cells, and in human cancer cells, increases their oncogenic potential in nude mice as reflected by a shorter tumor latency time and the production of larger tumors with increased vascularization. Moreover, inhibiting endogenous PEG-3 expression in progressed rodent cancer cells by stable expression of an antisense expression vector extinguishes the progressed cancer phenotype. Cancer aggressiveness of PEG-3 expressing rodent cells correlates directly with increased RNA transcription, elevated mRNA levels, and augmented secretion of vascular endothelial growth factor (VEGF). Furthermore, transient ectopic expression of PEG-3 transcriptionally activates VEGF in transformed rodent and human cancer cells. Taken together these data demonstrate that PEG-3 is a positive regulator of cancer aggressiveness, a process regulated by augmented VEGF production. These studies also support an association between expression of a single nontransforming cancer progression-inducing gene, PEG-3, and the processes of cancer aggressiveness and angiogenesis. In these contexts, PEG-3 may represent an important target molecule for developing cancer therapeutics and inhibitors of angiogenesis.

Animals↗

Synthesis and acetylcholinesterase inhibitory activity of huperzine A-E2020 combined compound.

The synthesis of huperzine-E2020 combined compound (3) has been accomplished and the activities of 3 and the intermediates 12 and 13 to inhibit the activity of acetylcholinesterase have been measured. Conformation analyses and molecular docking studies of E2020 and the eight isomers of 12 were carried out. The results indicated that binding energies of all isomers of 12 with AChE was much lower than E2020 except for isomer RRZ, which might be the reason that the activity of 12 was lower than that of E2020. Interaction pattern of RRZ in AChE was also studied. Both binding energy and interaction pattern shows that the biological activity of RRZ might be higher than that of E2020.

Alkaloids↗

Cu/Zn SOD deficiency potentiates hearing loss and cochlear pathology in aged 129,CD-1 mice.

Copper/zinc superoxide dismutase (Cu/Zn SOD) is a first-line defense against free radical damage in the cochlea and other tissues. To determine whether deficiencies in Cu/Zn SOD increase age-related hearing loss and cochlear pathology, we collected auditory brainstem responses (ABRs) and determined cochlear hair cell loss in 13-month-old 129/CD-1 mice with (a) no measurable Cu/Zn SOD activity (homozygous knockout mice), (b) 50% reduction of Cu/Zn SOD (heterozygous knockout mice), and (c) normal levels of Cu/Zn SOD (wild-type mice). ABRs were obtained by using 4-, 8-, 16-, and 32-kHz tone bursts. Cochleas were harvested immediately after testing, and separate counts were made of inner and outer hair cells. Compared with wild-type mice, homozygous and heterozygous knockout mice exhibited significant threshold elevations and greater hair cell loss. Phenotypic variability was higher among heterozygous knockout mice than among wild-type or homozygous knockout mice. Separate groups of wild-type and homozygous knockout mice were examined for loss of spiral ganglion cells and eighth nerve fibers. At 13 months of age, both wild-type and knockout mice had significantly fewer nerve fibers than did 2-month-old wild-type mice, with significantly greater loss in aged knockout mice than in aged wild-type mice. Thirteen-month-old knockout mice also had a significant loss of spiral ganglion cells compared with 2-month-old wild-type mice. The results indicate that Cu/Zn SOD deficiencies increase the vulnerability of the cochlea to damage associated with normal aging, presumably through metabolic pathways involving the superoxide radical.

Aging↗

Systemic treatment with GPI 1046 improves spatial memory and reverses cholinergic neuron atrophy in the medial septal nucleus of aged mice.

Systemic treatment with GPI 1046, a non-immunosuppressive ligand of the immunophilin FKBP12 (FK-506-binding protein 12 kDa), has previously been shown to promote morphological recovery of the nigrostriatal dopaminergic projection after MPTP lesion in mice, and of lesioned sciatic nerve fibres after nerve crush in rats. In the present study, we investigated whether chronic systemic treatment with GPI 1046 could affect the decline of spatial learning and memory, and the atrophy of medial septal cholinergic neurons, associated with late senescence in C57 black mice. Three-month old (young) and 18-19-month old (aged) male C57BL/6N-Nia mice were first trained in a place learning task in the Morris water maze. Based on their performance relative to young controls, aged animals were then allocated to treatment groups (10 mg/kg GPI 1046, or vehicle). Retention of the spatial platform location was assessed after 3 weeks of dosing. We found that aged animals that had been dosed with GPI 1046 now performed at a significantly better level than their vehicle control group. Aged animals that had shown the greatest degree of impairment during training in the place learning task showed the greatest relative degree of improvement under treatment and were statistically indistinguishable from young, or aged unimpaired control animals. Cell volumes of cholinergic cells in the medial septal nucleus were assessed after an additional 10 months of dosing at 30 months of age, using stereological methods. We found that aged animals displayed a significant 34% decrease in volume of these cells relative to young controls. This atrophy was significantly reversed in aged GPI 1046-treated animals (13% shrinkage). We conclude that chronic systemic treatment with GPI 1046 positively affects memory mechanisms in the aged mouse, possibly by acting on the septohippocampal cholinergic system.

Aging↗

Cell cycle checkpoint abrogator UCN-01 inhibits DNA repair: association with attenuation of the interaction of XPA and ERCC1 nucleotide excision repair proteins.

UCN-01, an anticancer agent currently in Phase I clinical trials, has been found to potentiate the cytotoxicity of cisplatin (CDDP). Because mammalian cells remove CDDP-induced DNA adducts through the nucleotide excision repair (NER) pathway, we determined the effects of UCN-01 on NER by measuring its effects on the interaction of the repair factors XPA and ERCC1 and the phosphorylation/dephosphorylation of the repair proteins. The repair activity, as measured by an in vitro repair synthesis assay and an in vivo host-cell reactivation assay using A549 cells, was significantly reduced. Although expression of XPA and ERCC1 proteins was elevated in cells exposed to UCN-01, the treatment resulted in a decreased ERCC1 level in the Triton X-100-insoluble fraction of cell lysates. A pull-down assay using the MBP-XPA fusion protein showed a significant reduction in the binding of ERCC1 to XPA in nuclear extracts from UCN-01-treated cells compared with untreated cells, suggesting that UCN-01 reduced the XPA-ERCC1 interaction. Consistent with these data, lower repair incision activity was found in the cell extracts from UCN-01-treated cells. In vitro phosphorylation revealed that UCN-01 had no effect on the phosphorylation/dephosphorylation status of either XPA or ERCC1; however, UCN-01 caused dephosphorylation of an unidentified XPA-bound protein with an apparent molecular mass of 52 kDa. Taken together, these data demonstrate the NER-inhibitory action of UCN-01, which is associated with the inhibition of the XPA-ERCC1 interaction by UCN-01 and with the effect of UCN-01 on the phosphorylation/dephosphorylation of an XPA-bound, 52-kDa protein, the identity of which remains to be determined.

Alkaloids↗

Regulation of myelin-specific gene expression. Relevance to CMT1.

Schwann cells, the myelinating cells of the peripheral nervous system, are derived from the neural crest. Once neural crest cells are committed to the Schwann cell fate, they can take on one of two phenotypes to become myelinating or nonmyelinating Schwann cells, a decision that is determined by interactions with axons. The critical step in the differentiation of myelinating Schwann cells is the establishment of a one-to-one relationship with axons, the so-called "promyelinating" stage of Schwann cell development. The transition from the promyelinating to the myelinating stage of development is then accompanied by a number of significant changes in the pattern of gene expression, including the activation of a set of genes encoding myelin structural proteins and lipid biosynthetic enzymes, and the inactivation of a set of genes expressed only in immature or nonmyelinating Schwann cells. These changes are regulated mainly at the transcriptional level and also require continuous interaction between Schwann cells and their axons. Two transcription factors, Krox 20 (EGR2) and Oct 6 (SCIP/Tst1), are necessary for the transition from the promyelinating to the myelinating stage of Schwann cell development. Krox 20, expressed in myelinating but not promyelinating Schwann cells, is absolutely required for this transition, and myelination cannot occur in its absence. Oct 6, expressed mainly in promyelinating Schwann cells and then down-regulated before myelination, is necessary for the correct timing of this transition, since myelination is delayed in its absence. Neither Krox 20 nor Oct 6, however, is required for the initial activation of myelin gene expression. Although the mechanisms of Krox 20 and Oct 6 action during myelination are not known, mutation in Krox 20 has been shown to cause CMT1, further implicating this protein in the pathogenesis of this disease. Identifying the molecular mechanisms of Krox 20 and Oct 6 action will thus be important both for understanding myelination and for designing future treatments for CMT1. Point mutlations in the genes encoding the myelin proteins PMP22 and P0 cause CMT1A without a gene duplication and CMT1B, respectively. Although the clinical and pathological phenotypes of CMT1A and CMT1B are similar, their molecular pathogenesis is quite different. Point mutations in PMP22 alter the trafficking of the protein, so that it accumulates in the endoplasmic reticulum (ER) and intermediate compartment (IC). Mutant PMP22 also sequesters its normal counterpart in the ER, further reducing the amount of PMP22 available for myelin synthesis at the membrane, and accounting, at least in part, for its severe effect on myelination. Mutant PMP22 probably also activates an ER-to-nucleus signal transduction pathway associated with misfolded proteins, which may account for the decrease of myelin gene expression in Schwann cells in Trembler mutant mice. In contrast, absence of expression of the homotypic adhesion molecule, P0, in mice in which the gene has been inactivated, produces a unique pattern of Schwann cell gene expression, demonstrating that P0 plays a regulatory as well as a structural role in myelination. Whether this role is direct, through a P0-mediated adhesion pathway, or indirect, through adhesion pathways mediated by cadherins or integrins, however, remains to be determined. The molecular mechanisms underlying dysmyelination in CMT1 are thus complex, with pleitropic effects on Schwann cell physiology that are determined both by the type of mutation and the protein mutated. Identifying these molecular mechanisms, however, are important both for understanding myelination and for designing future treatments for CMT1. Although demyelination is the hallmark of CMT1, the clinical signs and symptoms of this disease are probably produced by axonal degeneration, not demyelination. (ABSTRACT TRUNCATED)

Animals↗

The absence of myelin P0 protein produces a novel molecular phenotype in Schwann cells.

In order to better understand the pathogenesis of demyelination in P0 knockout (P0-/-) mice, we analyzed the myelin gene expression and the localization of myelin proteins in P0 null mouse sciatic nerve. We have demonstrated that the severe demyelinating neuropathy of P0-knockout mouse is associated with changes in the program of myelin gene expression. Some changes in myelin gene expression occur early, others occur during adulthood. We also provide evidence that the absence of P0 is associated with changes in the localization of specific paranodal proteins in the peripheral nerve. These data suggest that P0 plays an important role, either directly or indirectly, in the program of Schwann cell gene expression and in the specific distribution of peripheral myelin proteins. Furthermore, myelin gene dysregulation and improper localization of paranodal proteins may account, in part, for the pathogenesis of demyelination in P0-knockout mice, as well as in human demyelinating peripheral neuropathy associated with mutations in the P0 gene.

Animals↗

Overcoming cellular immunity to prolong adenoviral-mediated gene expression in sciatic nerve.

In a previous report, we demonstrated that a first generation (E1- and E3-deleted) recombinant adenovirus can transduce expression of the E. coli lacZ gene into Schwann cells, both in vitro and in vivo, suggesting that this method might be useful for future therapy of peripheral neuropathy, including CMT1. Adenoviral-mediated gene transfer was limited, however, by demyelination and Wallerian degeneration at the site of virus injection, as well as by attenuation of viral gene expression over time. In our current work we have optimized adenoviral-mediated gene expression after intraneural injection into sciatic nerve. Using an improved injection protocol, peak expression of lacZ occurs between 10 and 14 days after injection of 2-week-old animals, decreases thereafter, and there is minimal associated tissue injury. In contrast, very few adenoviral-infected Schwann cells are found in nerves of adult animals 10 days after injection, probably due to immune clearance of viral-infected cells. Consistent with this notion, high levels of lacZ are found in sciatic nerve 30 days after injection of adult SCOD mice, which have a genetic defect in both cellular and humoral immunity, of adult beta 2 microglobulin-deficient mice (beta 2 M-/-), which have a genetic defect in cellular immunity, or of adult mice treated with the immunosuppressing agent FK506. In addition, adenoviral-infected Schwann cells co-cultured with axons in vitro, in the absence of a host immune response, ensheath axons and express lacZ for at least 8 weeks. These data thus demonstrate that expression of first generation recombinant adenovirus in sciatic nerve in adult mice, as in other tissues, is limited mainly by the host cellular immune response to the virus, which can be overcome by attenuation of host cell-mediated immunity. Adenoviral vectors might thus be used to modulate Schwann cell gene expression in patients with peripheral neuropathy after appropriate immunosuppression.

Adenoviridae↗

Nerve growth factor (NGF)-induced calcium influx and intracellular calcium mobilization in 3T3 cells expressing NGF receptors.

The neurotrophins have been implicated in the acute regulation of synaptic plasticity. Neurotrophin-stimulated presynaptic calcium uptake appears to play a key role in this process. To understand the mechanism of neurotrophin-stimulated calcium uptake, the regulation of calcium uptake and intracellular mobilization by nerve growth factor (NGF) was investigated using NIH 3T3 cells stably transfected with either the high affinity NGF receptor p140(trk) (3T3-Trk) or the low affinity NGF receptor p75(NGFR) (3T3-p75). In 3T3-Trk cells, NGF increased both calcium uptake and intracellular calcium mobilization. In 3T3-p75 cells, NGF increased calcium uptake but not intracellular calcium mobilization. K-252a alone increased intracellular calcium in 3T3-Trk cells but not in 3T3-p75 cells. Nifedipine, an inhibitor of calcium uptake through L-type calcium channels, inhibited the action of NGF on both 3T3-Trk cells and 3T3-p75 cells, indicating that both p140(trk) and p75(NGFR) receptors are linked to nifedipine-sensitive L-type calcium channels. These studies show that either NGF receptor will support increases in intracellular calcium but that p140(trk) does so by increasing both uptake and mobilization, whereas p75(NGFR) does so by increasing uptake only.

3T3 Cells↗

Genetic alteration of phospholipase C beta3 expression modulates behavioral and cellular responses to mu opioids.

Morphine and other micro opioids regulate a number of intracellular signaling pathways, including the one mediated by phospholipase C (PLC). By studying PLC beta3-deficient mice, we have established a strong link between PLC and mu opioid-mediated responses at both the behavioral and cellular levels. Mice lacking PLC beta3, when compared with the wild type, exhibited up to a 10-fold decrease in the ED(50) value for morphine in producing antinociception. The reduced ED(50) value was unlikely a result of changes in opioid receptor number or affinity because no differences were found in whole-brain B(max) and K(d) values for mu, kappa, and delta opioid receptors between wild-type and PLC beta3-null mice. We also found that opioid regulation of voltage-sensitive Ca(2+) channels in primary sensory neurons (dorsal root ganglion) was different between the two genotypes. Consistent with the behavioral findings, the specific mu agonist [D-Ala(2),(Me)Phe(4),Gly(ol)(5)]enkephalin (DAMGO) induced a greater whole-cell current reduction in a greater proportion of neurons isolated from the PLC beta3-null mice than from the wild type. In addition, reconstitution of recombinant PLC protein back into PLC beta3-deficient dorsal root ganglion neurons reduced DAMGO responses to those of wild-type neurons. In neurons of both genotypes, activation of protein kinase C with phorbol esters markedly reduced DAMGO-mediated Ca(2+) current reduction. These data demonstrate that PLC beta3 constitutes a significant pathway involved in negative modulation of mu opioid responses, perhaps via protein kinase C, and suggests the possibility that differences in opioid sensitivity among individuals could be, in part, because of genetic factors.

Animals↗