Search PubMedSearch

Biomedical subjects

J P Graves

Publications and source records attributed to J P Graves.

10 recordsLinked to original sources

Modulation of acetylcholine release in rabbit airways in vitro.

We investigated the effects of substance P (SP) and vasoactive intestinal peptide (VIP) on acetylcholine (ACh) released from nerve endings by electrical field stimulation (EFS) in rabbit airways in vitro. ACh release was directly measured using high-performance liquid chromatography with electrochemical detection. Airway smooth muscle (ASM) segments, dissected from the midtrachea down to the left mainstem bronchus, were obtained from New Zealand White rabbits and mounted in organ baths containing modified Krebs-Henseleit solution, physostigmine, and choline. EFS at 20 Hz was delivered for 15 min to define baseline ACh release (pmol per gram of tissue per minute). There were no significant regional differences in ACh release during these baseline studies. A second stimulation was then performed in the absence (control) and presence of one or more of the following substances: SP (10(-7) M), a nonpeptide antagonist of the NK1 receptor (10(-7) M CP-96,345; Pfizer), and VIP (10(-7) M). Results for ACh release are expressed as a percentage of the first stimulation (means +/- SE). SP significantly increased ACh release in all ASM segments. This effect was abolished by CP-96,345. VIP alone did not affect ACh release. However, it significantly decreased SP-induced ACh release in all ASM segments. We conclude that SP significantly increases ACh release, thus facilitating cholinergic neurotransmission; its effect is abolished by CP-96,345. VIP decreases SP-induced ACh release, indicating a modulatory effect on cholinergic neurotransmission.

Acetylcholine

Human respiratory syncytial virus affects nonadrenergic noncholinergic inhibition in cotton rat airways.

A dysfunction of the nonadrenergic noncholinergic inhibitory (NANCi) system has been invoked as a possible mechanism underlying or contributing to altered airway function. In the present study we assessed whether human respiratory syncytial virus (HRSV) infection affects the airways' neurally mediated contractile and relaxant (NANCi) responses in vitro. NANCi responses were studied on tracheal smooth muscle (TSM) segments obtained from young adult cotton rats, a well-established model for HRSV infection. To assess NANCi responses, TSM segments were removed and placed in tissue baths containing modified Krebs-Henseleit, atropine (1 x 10(-6) M) and propranolol (5 x 10(-6) M). After contraction with neurokinin A (1 x 10(-5) M), electrical field stimulation (EFS) was applied at stimulation frequencies ranging from 5 to 30 Hz. The NANCi responses were measured and expressed as the mean (+/- SE) percent relaxation. To evaluate neurally mediated contractile responses, full frequency response curves (0.5-30 Hz) to EFS were also performed. We found significantly decreased NANCi responses in TSM segments obtained from infected cotton rats (n = 12) compared with control animals (n = 9) (P < 0.002). Furthermore, the contractile responses to EFS were increased in infected animals compared with the control group (P = 0.0001). These findings demonstrate that HRSV infection leads to an enhanced contractile response to EFS and a significant decrease in NANCi response in cotton rat airways in vitro. This disruption of the neural control of airways may lead to the development of altered airway function.

Animals

SP-induced contraction of airway smooth muscle in normal and allergen-sensitized rabbits: mechanism of action.

We studied the mechanisms involved in the airway smooth muscle (ASM) contraction to substance P (SP) in normal (control) and allergen-sensitized (immune) rabbits as well as immune rabbits exposed to allergen via the airways (immune challenged). Cumulative concentration-response curves to SP (1 x 10(-9) to 1 x 10(-4) M) were performed in ASM segments in the absence and presence of atropine (10(-5) M) in vitro. The maximal contractile response (g tension/g tissue) at 10(-4) M SP and ASM contractions at various concentrations of SP were expressed as means +/- SE. We found no difference in the contractile response to SP between control and immune animals. ASM segments obtained from immune-challenged rabbits were more responsive to SP. Atropine shifted to the right the concentration-response curves and decreased the maximal ASM contraction at 10(-4) M SP in all three groups; this effect, however, was greater in immune-challenged tissues. These findings demonstrate an increased contractile response to SP in immune-challenged animals mediated by a more pronounced facilitation of cholinergic neurotransmission. We conclude that the final ASM response to SP is the result of a complex interaction between direct effects on ASM and indirect effects through modulation of cholinergic neurotransmission.

Allergens

Decrease in the airways' nonadrenergic noncholinergic inhibitory system in allergen sensitized rabbits.

A decrease in the airways' nonadrenergic noncholinergic inhibitory (NANC-i) system is one of the mechanisms that may contribute to allergen-induced changes in neural control within airways. We measured the airways' neurally mediated contractile and relaxant (NANC-i) responses in tracheal segments and left mainstem bronchus (LMB) from normal (control), immune (ragweed sensitized), and immune challenged rabbits. Immune rabbits were sensitized to mixed ragweed extract through parenteral injections from birth, while the immune challenged group had an additional airway exposure to aerosolized ragweed 48 hours prior to the in vitro studies. Neurally mediated contractile responses to electrical field stimulation (EFS) were increased in the immune challenged group, with the increase most significant in tracheal smooth muscle at a stimulation frequency of 20 Hz. To assess NANC-i responses, airway smooth muscle (ASM) segments from these groups were placed in tissue baths containing atropine (10(-6) M) and propranolol (5 x 10(-6) M). After contraction of the tissue with neurokinin A (NKA, 10(-5) M), the NANC-i response to EFS at 20 Hz was measured and reported as the mean (+/- SEM) percent relaxation. No significant differences were seen in the contractile responses of ASM segments to NKA among the three groups. The tracheal segments showed a significantly different NANC-i relaxation response among all groups: in the control group, 29.1 +/- 3.7; in the immune group 15.8 +/- 2.3%; and in the immune challenged group, 2.1 +/- 4.2%.(ABSTRACT TRUNCATED AT 250 WORDS)

Allergens

Maturation of nonadrenergic noncholinergic inhibitory system in normal and allergen-sensitized rabbits.

We investigated the functional existence of the nonadrenergic noncholinergic inhibitory (NANCi) system in developing rabbit airways in vitro. Furthermore, we evaluated the effect of parenteral exposure to a specific allergen (ragweed) on the maturation of this neural pathway. NANCi responses were studied on tracheal smooth muscle (TSM) segments obtained from normal and ragweed-sensitized New Zealand White rabbits at 1, 2, 4, and 12 wk of age. The TSM segments were removed and placed in tissue baths containing modified Krebs-Henseleit solution, atropine (1 x 10(-5) M), and propranolol (5 x 10(-6) M). After contraction with neurokinin A (1 x 10(-5) M), electrical field stimulation was applied at stimulation frequencies ranging from 5 to 30 Hz to determine the frequency that produced maximal relaxation. The NANCi response to EFS was measured and expressed as the mean (+/- SE) percent relaxation at 20 Hz, because this stimulation frequency gave the maximal NANCi response at each age studied. TSM segments obtained from control rabbits at 1 wk of age did not demonstrate a NANCi response at the frequencies of stimulation used. By contrast, a reproducible NANC relaxation was demonstrated in TSM from 2-, 4-, and 12-wk-old rabbits. The magnitude of this response was 27 +/- 4.7 (n = 10), 29 +/- 4.8 (n = 9), and 37 +/- 4% (n = 18), respectively. The same experiments performed on TSM segments obtained from ragweed-sensitized animals gave significantly decreased values of NANCi response. In 2-, 4-, and 12-wk-old rabbits, the NANCi responses were 11.5 +/- 3.4 (n = 9), 11 +/- 2 (n = 13), and 16 +/- 4.2% (n = 14).(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors

The effect of intravascular complement activation and brief episodes of hypoxia on protein in bronchoalveolar lavage fluid in C5 sufficient and deficient mice.

Our earlier investigations indicated that systemic complement activation with iv cobra venom factor (CVF) or infused zymosan-activated rabbit plasma or rabbit C5a does not significantly increase bronchoalveolar lavage albumin in rabbits (Am Rev Respir Dis 1982; 125:335-340); but that complement activation due to CVF combined with a brief episode of hypoxia increases lavage albumin and is associated with the presence of neutrophils for its expression (J Clin Invest 1985; 75:902-910). In order to determine if intravenous CVF and hypoxia cause similar alterations in mice, and to investigate the time course of the response as well as the importance of C5 fragments to the process, we challenged the B10.D2/nSn strain of C5 sufficient mice (C5+) and the congenic B10.D2/oSn strain of C5 deficient mice (C5-) with intravenous CVF, 15 min of 12% oxygen, or CVF followed by hypoxia. Neither C5+ nor C5- mice had significant increases in lavage protein after either CVF or hypoxia. However, the combined insults significantly increased lavage protein in C5+ but not C5- mice; polyacrylamide gel electrophoresis showed increased amounts of proteins of low and high molecular weights in lavage fluid from the C5+ strain. While the time course of abnormalities in mice was different from that in rabbits, both meclofenamate pretreatment and neutrophil depletion attenuated the increases in lavage protein after the combined insults in both animal species. Infusion of prostaglandin E2 (PGE2) with CVF in the C5+ mice also led to significant increases in lavage protein. We conclude that in mice, intravenous complement activation, as an isolated event, does not cause a significant increase in lavage protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The Drosophila suppressor of sable gene encodes a polypeptide with regions similar to those of RNA-binding proteins.

The nucleotide sequence of the Drosophila melanogaster suppressor of sable [su(s)] gene has been determined. Comparison of genomic and cDNA sequences indicates that an approximately 7,860-nucleotide primary transcript is processed into an approximately 5-kb message, expressed during all stages of the life cycle, that contains an open reading frame capable of encoding a 1,322-amino-acid protein of approximately 150 kDa. The putative protein contains an RNA recognition motif-like region and a highly charged arginine-, lysine-, serine-, aspartic or glutamic acid-rich region that is similar to a region contained in several RNA-processing proteins. In vitro translation of in vitro-transcribed RNA from a complete cDNA yields a product whose size agrees with the size predicted by the open reading frame. Antisera against su(s) fusion proteins recognize the in vitro-translated protein and detect a protein of identical size in the nuclear fractions from tissue culture cells and embryos. The protein is also present in smaller amounts in cytoplasmic fractions of embryos. That the su(s) protein has regions similar in structure to RNA-processing protein is consistent with its known role in affecting the transcript levels of those alleles that it suppresses.

Amino Acid Sequence

Comparison of the evolving histopathology of early and late cutaneous and asthmatic responses in rabbits after a single antigen challenge.

Histopathologic changes during the immediate cutaneous response (ICR) and late cutaneous response (LCR) to antigen challenge in allergic humans include dermal edema in the ICR (15 to 30 minutes) followed by increasing cellular infiltration in the LCR (6 hours and more). No description of the evolving histopathologic changes that occur during an immediate asthmatic response (IAR) followed by a late asthmatic response (LAR) exists in either clinical studies or animal models. We examined cutaneous and pulmonary histopathology at 1/2, 6, 24, and 48 hours as well as 7 days after simultaneous intradermal and aerosol antigen challenge of rabbits immunize with Alternaria tenuis extract. Nonimmunized rabbits challenged with Alternaria tenuis extract and immunized rabbits challenged with normal saline served as controls. Immediate wheal and flare responses followed by a LCR were seen in immunized but not control animals. Pulmonary function tests documented immediate and LAR in immunized but not control animals. Thirty minutes after antigen challenge of sensitized animals (ICR and IAR), both dermal sites and large airway submucosal sites had interstitial edema and vessel dilatation while small airways were essentially normal. At 6 hours after challenge, the dermal and large airway submucosal sites of immune animals (LCR and LAR) demonstrated a moderate mixed leukocyte infiltrate as well as residual edema. Additionally, bronchioles and pulmonary vessel adventitia from these responding animals had an intense and widespread leukocyte infiltration. At 24 and 48 hours, immune challenged animals but not controls had a marked mixed cellular infiltrate near skin vessels and near the bronchioles and pulmonary vessels with little or no residual interstitial edema. At 7 days, three of four animals showed resolution of the inflammation while the fourth showed minimal residual changes. Morphometric analysis of airway inflammation substantiated these qualitative observations and demonstrated that the granulocytes around airways of immune rabbits were a mixture of neutrophils and eosinophils at 6 hours, but were predominantly eosinophils at 48 hours. Immunofluorescent studies of skin and lung tissue did not demonstrate any granular or linear deposition of immunoglobulin or complement at the sites of inflammation, however, fibrin deposition was noted in the skin and lungs of immune rabbits. These observations show that immunized rabbits challenged with antigen develop cutaneous and pulmonary inflammation.(ABSTRACT TRUNCATED AT 400 WORDS)

Alternaria

The Oxfordshire mental handicap register.

A total of 2027 moderately or severely mentally handicapped people in Oxfordshire considered likely to require special services at some time have been identified for the Oxfordshire Mental Handicap Register. Prevalence rates for those aged 5 to 14 years are estimated to be 3.9 per 1000 home population and 4.14 per 1000 total population when hospital residents are included. Entry criteria are less strict than in other registers, however, and people are identified by general practitioners, health visitors, and hospital staff as well as through the more usual sources. The register is already proving useful when planning and providing services to those in need.

Adolescent