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Biomedical subjects

R Crowe

Publications and source records attributed to R Crowe.

At least 19 recordsLinked to original sources

Peptide-containing neurons in different regions of the submucous plexus of human sigmoid colon.

Specimens of the sigmoid colon were obtained from male and female patients (n = 11) with carcinoma of the colon or rectum and studied immunohistochemically for vasoactive intestinal polypeptide-, somatostatin-, substance P-, neuropeptide Y-, calcitonin gene-related peptide-, met- and leu-enkephalin-, 5-hydroxytryptamine-, and dopamine beta-hydroxylase-containing nerves. In the subdivisions of the submucous plexus (namely, Schabadasch's, Meissner's, and the intermediate plexuses), substance P- and vasoactive intestinal polypeptide-immunoreactive nerve fibers were the most numerous, and equal densities of these nerves were found in all three layers. In contrast, few neuropeptide Y-, met-enkephalin-, leu-enkephalin-, calcitonin gene-related peptide-, somatostatin-, 5-hydroxytryptamine-, and dopamine beta-hydroxylase-immunoreactive nerves were found in these regions. The nerve cell bodies of the submucous plexus contained vasoactive intestinal polypeptide, substance P, leu-enkephalin, somatostatin, and 5-hydroxytryptamine but not neuropeptide Y, met-enkephalin, calcitonin gene-related peptide, and dopamine beta-hydroxylase. Vasoactive intestinal polypeptide-containing nerve cell bodies were found in all three subdivisions. Substance P-, leu-enkephalin-, and somatostatin-immunoreactive nerve cell bodies were found in Schabadasch's plexus and the intermediate region of the submucous plexus, but they were absent from Meissner's plexus; 5-hydroxytryptamine-containing nerve cell bodies were only observed in Schabadasch's plexus. The possible function of the neuropeptide-, dopamine beta-hydroxylase-, and 5-hydroxytryptamine-containing neurons in the different layers of the submucous plexus is discussed.

Adult

The innervation of the human prostate gland--the changes associated with benign enlargement.

Different regions of the prostate gland, namely prostatic capsule, peripheral prostate and central prostate (subdivided into proximal (near the bladder neck), distal (near the verumontanum) and midway between these areas) were obtained from 32 obstructed (stable obstructed, n = 8; unstable obstructed, n = 13; acute retention, n = 11) and five control patients. The innervation of these tissues was studied both histochemically to localise acetylcholinesterase activity and immunohistochemically for dopamine-beta-hydroxylase, 5-hydroxytryptamine, vasoactive intestinal polypeptide, neuropeptide Y, leu- and met-enkephalin, calcitonin gene-related peptide, substance P and somatostatin. In control patients the greatest density of nerves was found in the proximal central prostate, followed by the anterior capsule and distal central prostate, with the least density in the peripheral prostate. The greatest density of nerves were acetylcholinesterase positive and immunoreactive to neuropeptide Y followed (in decreasing order) by nerves immunoreactive to: vasoactive intestinal polypeptide and dopamine beta-hydroxylase; leu-enkephalin and 5-hydroxytryptamine; calcitonin gene-related peptide; met-enkephalin; substance P; somatostatin. In addition a group of periacinar 5-hydroxytryptamine-immunoreactive cells and ganglia containing acetylcholinesterase, dopamine beta-hydroxylase and all of the peptides studied except somatostatin were identified. In the prostate gland from obstructed patients there was a significant reduction in the density of acetylcholinesterase-positive nerves (p less than 0.001) when compared with the controls. A similar trend was found for dopamine beta-hydroxylase, 5-hydroxytryptamine and all of the putative neuropeptides in most areas of the prostate, the most notable exceptions being in the peripheral prostate, with an increase in dopamine beta-hydroxylase- and leu-enkephalin-immunoreactive nerves in all three groups of obstructed patients an an increase in vasoactive intestinal polypeptide- and calcitonin gene-related peptide-immunoreactive nerves in those presenting in urinary retention. The functional significance of these findings is discussed.

Acetylcholinesterase

Patients with lower motor spinal cord lesion: a decrease of vasoactive intestinal polypeptide, calcitonin gene-related peptide and substance P, but not neuropeptide Y and somatostatin-immunoreactive nerves in the detrusor muscle of the bladder.

Specimens of the detrusor muscle of the bladder from four patients with lower motor neurone lesion and three patients with carcinoma of the bladder used as "controls", were studied immunohistochemically for vasoactive intestinal polypeptide, neuropeptide Y, calcitonin-gene related peptide, substance P and somatostatin. The greatest density of nerves in the bladder from "control" patients contained neuropeptide Y, followed in a decreasing order by vasoactive intestinal polypeptide, calcitonin gene-related peptide, substance P and somatostatin. Neuropeptide Y- and vasoactive intestinal polypeptide-immunoreactive nerves were found throughout the smooth muscle and the base of the mucosa, while calcitonin gene-related peptide-, substance P- and somatostatin-immunoreactive nerves were found predominantly in nerve bundles with a few single fibres at the base of the mucosa. Vasoactive intestinal polypeptide-, neuropeptide Y- and calcitonin gene-related peptide-immunoreactive nerves were also located around blood vessels. In patients with lower motor neurone lesion, there was a decrease in the density of vasoactive intestinal polypeptide-, calcitonin gene-related peptide- and substance P-immunoreactive nerves, but there was little change in neuropeptide Y- or somatostatin-immunoreactive nerves. Urinary retention, bladder areflexia and deficient sensation may be directly linked to neuropeptide neuropathy in patients with lower motor neurone lesion.

Adult

The human penis: an unusual penetration of NPY-immunoreactive nerves within the medial muscle coat of the deep dorsal vein.

The deep dorsal penile vein was obtained from seven patients undergoing surgery for erectile dysfunction. The veins were studied histologically and immunohistochemically for serotonin, dopamine beta-hydroxylase, vasoactive intestinal polypeptide, neuropeptide Y, substance P, calcitonin gene-related peptide, somatostatin, and [Leu]- and [Met]enkephalin. Histologically, the deep dorsal vein was found to be a large muscular vein with a thin endothelial lining. The tunica media was composed of an inner longitudinally and an outer circularly arranged smooth muscle layer. Numerous vasa vasorum (up to 30 in a single transverse section) were found in the tunica adventitia. The greatest density of nerves supplying the deep dorsal vein and vasa vasorum were neuropeptide Y-immunoreactive nerves followed (in a decreasing order) by vasoactive intestinal polypeptide- and dopamine beta-hydroxylase-immunoreactive nerves. Substance P-, calcitonin gene-related peptide- and somatostatin-immunoreactive nerves, but not serotonin-, [Leu]- and [Met]enkephalin-immunoreactive nerves, were occasionally found around the deep dorsal vein. All these nerve fibers were confined to the adventitial-medial border except neuropeptide Y-immunoreactive nerves which in addition penetrated the tunica media to the subendothelial layer of the deep dorsal vein. In contrast, neuropeptide Y-immunoreactive nerves supplying the vasa vasorum were always confined to the adventitial-medial border. The possible function of the medial innervation of the deep dorsal vein by neuropeptide Y-immunoreactive nerves is discussed.

Adult

The human prostate gland: a histochemical and immunohistochemical study of neuropeptides, serotonin, dopamine beta-hydroxylase and acetylcholinesterase in autonomic nerves and ganglia.

Different regions of the prostate gland, namely the prostatic capsule, peripheral prostate, and proximal and distal central prostate, were obtained from 5 patients with carcinoma of the bladder and studied histochemically and immunohistochemically to localise acetylcholinesterase (AChE)-, dopamine beta-hydroxylase (DBH)-, serotonin- and peptide-containing nerves. Autonomic ganglia were found in all regions of the prostate studied. The greatest number of ganglia contained AChE and neuropeptide Y (NPY) followed (in decreasing order) by DBH; [Met]enkephalin (mENK) and [Leu]enkephalin (IENK); calcitonin gene-related peptide (CGRP) and vasoactive intestinal polypeptide (VIP); and serotonin, but not somatostatin. The greatest density of nerve fibres was found in the proximal central prostate, followed by the anterior capsule and distal central prostate, with the least in the peripheral prostate. The greatest number of nerve fibres contained ACh and NPY, followed in decreasing order by VIP and DBH; IENK, serotonin and CGRP; mENK; substance P and somatostatin. The functions of the neurotransmitter substances in the human prostate remain to be elucidated.

Acetylcholinesterase

The subserosal ganglia of the human taenia.

Specimens of the taenia from the sigmoid colon of female patients undergoing surgery for carcinoma of the rectum were studied histochemically and immunohistochemically for acetylcholinesterase (AChE) and for vasoactive intestinal polypeptide (VIP)-, substance P (SP)-, somatostatin (SOM)-, neuropeptide Y (NPY)-, calcitonin gene-related peptide (CGRP)- and Met-enkephalin (mENK)-immunoreactivity. Autonomic ganglia were observed on the serosal surface of the longitudinal muscle of the taenia. The subserosal ganglia contained SP-, mENK-, NPY-, SOM-, but not CGRP- or VIP-immunoreactive nerve fibres. In addition, they contained SP-, mENK- and NPY-, but not CGRP-, SOM- and VIP-immunoreactive nerve cell bodies (although CGRP- and VIP-immunoreactive nerve fibres were observed in the longitudinal muscle of the taenia). AChE-activity was found both in nerve fibres and nerve cell bodies in these ganglia. The greatest numbers of nerve cell bodies contained AChE, followed in decreasing order by SP, mENK and NPY. The possible function of the subserosal ganglia of the human taenia is discussed.

Acetylcholinesterase

Serotonin and 5-hydroxyindoleacetic acid are increased in the sigmoid colon in severe idiopathic constipation.

The distribution of serotonin and dopamine beta-hydroxylase was examined in sigmoid colon specimens from patients with severe idiopathic constipation and control patients with carcinoma of the rectum or colon. Specimens were divided into three regions: (a) the mucosa; (b) the myenteric and submucosal plexuses with the longitudinal and circular smooth muscles; and (c) the circular smooth muscle, for biochemical analysis of serotonin and 5-hydroxyindoleacetic acid (total indoles) and noradrenaline. In both groups of patients, serotonin- and dopamine beta-hydroxylase-like immunoreactivity was localized in nerves in the myenteric and submucosal plexuses, and a sparse innervation was observed in the circular muscle. In addition, intense serotonin-like fluorescence was present in a large number of enterochromaffin cells in the mucosa. Total indole levels were significantly increased in the mucosa (p less than 0.02) and circular muscle (p less than 0.05) of the constipated patients. In contrast, no changes in noradrenaline levels were observed in any of the regions studied. Altered levels of total indoles may thus contribute to severe idiopathic constipation. Analysis of biopsy specimens could be a useful tool in clinical diagnosis and future investigations of diseases of the gut.

Adult

Vasoactive intestinal polypeptide levels in sigmoid colon in idiopathic constipation and diverticular disease.

The distribution in the bowel wall of vasoactive intestinal polypeptide-, neuropeptide Y-, and substance P-containing nerve cell bodies and nerve fibers has been described in human sigmoid colon by immunohistochemical examination. In patients with chronic idiopathic constipation, diverticular disease, and in controls (of tissue taken from patients with carcinoma, from a site distant from the tumor that appeared macroscopically normal), the concentrations of vasoactive intestinal polypeptide, neuropeptide Y, and substance P have been measured by immunoassay in the following preparations of sigmoid colon: mucosa, whole colonic wall with mucosa dissected away, circular muscle, and taenia coli. In idiopathic constipation, the vasoactive intestinal polypeptide content of the whole wall minus mucosa was reduced when compared with controls (P less than 0.05) but was unaltered in the mucosa, circular muscle, and taenia coli. In diverticular disease, the vasoactive intestinal polypeptide content of the mucosa and whole wall minus the mucosal layer was increased when compared with control tissue (P less than 0.05 and P less than 0.02, respectively) but was unaltered in the circular muscle and taenia coli. Substance P and neuropeptide Y levels in all layers of colonic wall were unaltered in these two diseases. The disturbances in the normal neural content of vasoactive intestinal polypeptide in the bowel wall in idiopathic constipation and diverticular disease may initiate or contribute to the functional changes seen in these disorders.

Colon, Sigmoid

Adrenergic innervation of the striated muscle of the intrinsic external urethral sphincter from patients with lower motor spinal cord lesion.

The adrenergic innervation of smooth and striated muscle components of the intrinsic external urethral sphincter from patients with suprasacral lesions and detrusor-sphincter dyssynergia has been described previously, when no adrenergic nerves were found associated with striated muscle fibers. In our study the intrinsic external urethral sphincter from patients with lower motor neuron lesions and detrusor areflexia was studied histochemically using the glyoxylic acid method to visualize catecholamines. Varicose adrenergic nerves were demonstrated in the smooth muscle. Adrenergic nerve fibers also were found along the edge of individual striated muscle fibers as well as around striated muscle bundles. Blood vessels in both regions of the urethral sphincter were innervated by adrenergic nerves. We conclude that in patients with lower motor neuron lesions and detrusor areflexia there is a substantial invasion by adrenergic nerve fibers in relation to smooth and striated muscle in the urethra, although the function of the nerve fibers is not known.

Adrenergic Fibers

A histochemical and immunohistochemical study of the autonomic innervation of the lower urinary tract of the female pig. Is the pig a good model for the human bladder and urethra?

The detrusor muscle, bladder neck, proximal, middle and distal regions of the urethra of the female pig were studied by histochemical and immunohistochemical methods to localize catecholamine-containing, acetylcholinesterase-positive and peptide-containing nerves. The peptides examined included: vasoactive intestinal polypeptide, substance P, somatostatin, [Met]enkephalin, bombesin and gastrin. The greatest density of nerves was found in the smooth muscle of the distal urethra, followed by the bladder neck, middle urethra, and proximal urethra, with the least in the detrusor muscle. The greatest number of nerve fibres stained for acetylcholinesterase, followed by vasoactive intestinal polypeptide- and catecholamine-containing fibres. Substance P-immunoreactive nerve fibres were confined to the bladder neck and distal urethral regions. [Met]enkephalin-and gastrin-immunoreactive nerves were most dense in the distal urethra but absent in detrusor muscle, while somatostatin-immunoreactive nerve fibres were sparsely distributed throughout the lower urinary tract. No nerve fibres showing immunoreactivity to bombesin were found. Catecholamine-containing, acetylcholinesterase-positive, vasoactive intestinal polypeptide-, substance P-, [Met]enkephalin- and gastrin-immunoreactive nerves were also found on the adventitial-medial border of blood vessels in the pig urinary tract. In the intrinsic external urethral sphincter, located in the distal urethra, vasoactive intestinal polypeptide- and gastrin-immunoreactive nerve fibres were found bordering a small number of individual striated muscle fibres, while catecholamine-containing nerves were found predominantly in the connective tissue surrounding the striated muscle fibres. Dense populations of acetylcholinesterase-positive nerve fibres were found associated with the striated muscle fibres, with end plates on some of them. Intramural ganglia, composed of two to 30 neurones, were found in the bladder neck and middle and distal regions of the urethra. In the smooth muscle, and in the vicinity of the striated muscle regions of the intrinsic external urethral sphincter, there were small ganglia, containing two to three neurones, which were vasoactive intestinal polypeptide-, [Met]enkephalin- and somatostatin-immunoreactive. The results are compared to the autonomic innervation of the human bladder and urethra as previously described and it is concluded that the lower urinary tract of the pig is a good model for some features of the lower urinary tract of man, but a poor model for others.

Animals

An increase of vasoactive intestinal polypeptide-, but not neuropeptide Y-, substance P- or catecholamine-containing nerves in the iris of the streptozotocin-induced diabetic rat.

The distribution of adrenergic and vasoactive intestinal polypeptide-, neuropeptide Y- and substance P-immunoreactive nerves was studied histochemically and immunohistochemically in the irides of rats 8 weeks after the induction of diabetes with streptozotocin. In the control animals, catecholamine-containing, vasoactive intestinal polypeptide- and substance P-immunoreactive nerve fibres were found in the constrictor pupillae, dilator muscle and the ciliary processes. They also formed perivascular nerve plexuses of blood vessels in the dilator muscle. Neuropeptide Y-immunoreactive nerve fibres were only observed in the dilator muscle and ciliary processes. In the irides from diabetic animals, a considerable increase was observed in the fluorescence intensity and/or density of vasoactive intestinal polypeptide-immunoreactive nerves. Some varicosities of the vasoactive intestinal polypeptide-immunoreactive nerves appeared enlarged. In contrast, no apparent change in the density and/or fluorescence intensity of catecholamine-containing, neuropeptide Y- and substance P-immunoreactive nerve fibres was observed in the irides from diabetic animals when compared with controls. The results are discussed in relation to the symptoms of autonomic neuropathy of the irides in diabetes.

Adrenergic Fibers

Intramural ganglia in the human urethra.

The urethras from five patients with a thoracic or cervical spinal cord lesion and one patient with carcinoma of the bladder were studied immunohistochemically for neuropeptide Y and vasoactive intestinal polypeptide. Autonomic ganglia, containing two to 21 nerve cell bodies, were found in the smooth and striated muscle regions of the intrinsic external urethral sphincter; they were present rarely in the distal urethra and were absent from the prostatic urethra. Neuropeptide Y immunoreactivity was observed in some of the nerve cell bodies (diameter 25 to 50 microns). Vasoactive intestinal polypeptide immunoreactivity was observed in small cells (diameter 15 to 25 microns.) in the urethral smooth muscle and in the walls of blood vessels that resembled small intensely fluorescent cells but may be nerve cell bodies. Both neuropeptide Y- and vasoactive intestinal polypeptide-immunoreactive nerve fibres were found in the smooth muscle and around blood vessels in the urethra of all patients. Both types of peptide-containing nerves were found associated with striated muscle of the intrinsic external urethral sphincter in patients with spinal cord injury, but only vasoactive intestinal polypeptide-immunoreactive nerves were found in the patient with carcinoma of the bladder in this region. The functions of the autonomic ganglia and vasoactive intestinal polypeptide- and neuropeptide Y-immunoreactive nerves in the human urethra remain to be elucidated.

Fluorescent Antibody Technique

Spinal cord lesions at different levels affect either the adrenergic or vasoactive intestinal polypeptide-immunoreactive nerves in the human urethra.

The urethras from 1 patient with cervical (C1-2) and 2 patients with thoracic (T10) spinal cord lesions were studied histochemically and immunohistochemically for adrenergic and vasoactive intestinal polypeptide-immunoreactive nerves. Dense vasoactive intestinal polypeptide-immunoreactive but not adrenergic nerves were found in the urethral smooth muscle, around the blood vessels and at the base of the mucosa in the patients with thoracic lesions. In contrast, adrenergic but not vasoactive intestinal polypeptide-immunoreactive nerves were found associated with the smooth muscle of the urethra and around the blood vessels in the patient with a cervical lesion. In patients with cervical or thoracic lesions neither adrenergic nor vasoactive intestinal polypeptide-immunoreactive nerves were found around striated muscle fibers of the intrinsic external urethral sphincter. The results are discussed in relation to the possible function of these nerves in the urethra of patients with autonomic dysreflexia and detrusor-sphincter dyssynergia.

Adult

Histochemical and biochemical investigation of adrenergic, cholinergic and peptidergic innervation of the rat ventral prostate 8 weeks after streptozotocin-induced diabetes.

The gross anatomy and autonomic innervation of the ventral prostate glands was examined in control and streptozotocin-induced diabetic rats. The most striking finding was the consistent reduction in size and the gross atrophy of the prostates from diabetic rats. No change was detected in the total content of noradrenaline in the alveolar lobes or in the levels of vasoactive intestinal polypeptide, neuropeptide Y and substance P in the whole prostates of diabetic rats. However, histochemical and immunohistochemical investigations revealed localized reductions in density and/or fluorescence intensity of noradrenaline-containing nerve fibres and increased density and/or fluorescence intensity of vasoactive intestinal polypeptide- and neuropeptide Y-containing nerve fibres in the alveolar smooth muscle of a majority of diabetic animals. No changes in acetylcholinesterase-staining nerve fibres were seen. The adrenergic component of the autonomic nervous system in this gland appears to be particularly susceptible to change in diabetes.

Adrenergic Fibers

Neuropeptide Y- and vasoactive intestinal polypeptide-containing nerves in the intrinsic external urethral sphincter in the areflexic bladder compared to detrusor-sphincter dyssynergia in patients with spinal cord injury.

Specimens of urethra were obtained from patients with cervical and thoracic spinal cord lesion with detrusor-sphincter dyssynergia and from patients with lower motor neurone lesion with detrusor areflexia, undergoing transurethral sphincterotomy. Neuropeptide Y (NPY) and vasoactive intestinal polypeptide (VIP) in nerves associated with both the smooth and striated muscle components of the urethral sphincter were studied immunohistochemically and by immunoassay. In patients with detrusor-sphincter dyssynergia following cervical and thoracic spinal cord injury, NPY- and VIP-immunoreactive varicose nerve fibres were seen in both the smooth and striated muscle components of the urethral sphincter. In the smooth muscle, NPY- and VIP-immunoreactive nerves did not appear to have any particular orientation, but in the striated muscle region they were found to run along the length of individual muscle fibres. In patients with detrusor areflexia following lower motor neurone lesion, while the pattern, density and fluorescence intensity of NPY- and VIP-immunoreactive nerves in the smooth muscle of the sphincter mechanism appeared the same as seen in patients with detrusor-sphincter dyssynergia, there was a marked increase in the density of these nerves in the striated muscle region of the sphincter mechanism. Quantitation of the peptides by immunoassay was consistent with the histochemical findings, with significantly higher levels of both NPY and VIP in the striated muscle of patients with lower motor neurone lesion, compared to those with cervical and thoracic spinal cord lesion, p = 0.04. NPY and VIP levels in urethral smooth muscle were in the same range in lower motor neurone lesion patients and cervical and thoracic spinal cord lesion patients. We conclude that there are increased NPY- and VIP-containing fibres in striated muscle of the intrinsic external urethral sphincter in patients with areflexic bladder compared with those with detrusor-sphincter dyssynergia.

Adult

The seminal vesicle in eight and 16 week streptozotocin-induced diabetic rats: adrenergic, cholinergic and peptidergic innervation.

The autonomic innervation of the seminal vesicle from 8 and 16 week streptozotocin-induced diabetic rats and age-matched controls was studied by pharmacological, histochemical and immunohistochemical methods. Contractions in response to electrical field stimulation, which were abolished using prazosin (2 microM) or tetrodotoxin (one to 1.6 microM), and to noradrenaline were significantly increased in both eight and 16 week diabetic animals. The contractile response to acetylcholine was significantly increased in the 16 week diabetic rats only, when compared with controls. Although these responses were significantly increased, no difference was found in ED50 and EF50 values between control and diabetic rats. Vasoactive intestinal polypeptide (0.3 microM) had no effect on resting tension or nerve-mediated responses. In seminal vesicles from control animals, both vasoactive intestinal polypeptide-immunoreactive and acetylcholinesterase-containing nerves were localised around the folds of the columnar epithelium of secretory cells, in contrast to neuropeptide Y-immunoreactive and catecholamine-containing nerves which were found in the smooth muscle layers. In seminal vesicles from both eight and 16 week diabetic animals no difference was seen in distribution or density of acetylcholinesterase-containing nerves; there was an increase in density and fluorescence intensity of vasoactive intestinal polypeptide- and neuropeptide Y-immunoreactive nerves and a decrease in catecholamine-containing nerves compared with controls. The results are discussed in relation to autonomic neuropathy in diabetes.

Acetylcholine