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Featured researches published by Lakomy M.


Cell and Tissue Research | 1995

The distribution and co-localization of immunoreactivity to nitric oxide synthase, vasoactive intestinal polypeptide and substance P within nerve fibres supplying bovine and porcine female genital organs.

Mariusz Majewski; Waldemar Sienkiewicz; Jerzy Kaleczyc; Bernd Mayer; Czaja K; Lakomy M

The distribution of nitric oxide synthase-immunoreactive (NOS-IR) axons and their relationship to structures immunoreactive to vasoactive intestinal polypeptide (VIP), substance P (SP) and tyrosine hydroxylase (TH) were studied by means of the nicotinamide adenine dinucleotide phosphate-diaphorase (NADPH-d) technique or double-labelling immunofluorescence in the genital organs of cow and pig. Relevant neurons were also investigated in the pig. NOS-containing neural structures were TH-immunonegative in bovine or porcine genital organs, or in the studied ganglia. In the bovine ovary, NOS-IR nerves were neither VIP-IR nor SP-IR, whereas in the pig, most NOS-containing axons were also VIP-IR. The oviduct was supplied by single NOS/VIP- or NOS/SP-containing nerves, whereas in the uterus, NOS-IR axons were moderate in number, often being immunoreactive for VIP or SP. Numerous NOS/VIP-IR and NOS/SP-IR nerves were found in the vagina of both species. In all tissues studied, NOS-IR axons were mainly related to vascular smooth muscle. Most of the neurons of the paracervical ganglia and some neurons in dorsal root ganglia exhibited strong NOS activity. Only single neurons in sympathetic ganglia were NADPH-d-positive. Most nitrergic neurons in the autonomic ganglia were VIP-IR but SP-immunonegative. The sensory neurons were mostly NOS/SP-IR, whereas only single neurons co-expressed NOS and VIP immunoreactivity.


Cell and Tissue Research | 1995

Distribution and immunohistochemical characteristics of neurons in the porcine caudal mesenteric ganglion projecting to the vas deferens and seminal vesicle

Jerzy Kaleczyc; Jean-Pierre Timmermans; Mariusz Majewski; Lakomy M; D.W. Scheuermann

Combined retrograde tracing (using fluorescent tracer Fast Blue) and double-labelling immunofluorescence were used to study the distribution and immunohistochemical characteristics of neurons in the porcine caudal mesenteric ganglion projecting to the vas deferens and seminal vesicle. The distribution and immunohistochemical properties of neurons projecting to both organs were similar. As revealed by retrograde tracing, Fast Blue-positive neurons were located within the left and right ganglia, with a distinct predominance in the ipsilateral one. In the ipsilateral ganglion, the majority of the neurons were located caudally, along the dorso-lateral ganglionic border, suggesting a somatotopic organization of the ganglion. Immunohistochemistry revealed four populations of retrogradely labelled neurons (from the largest to the smaller one): tyrosine hydroxylase-positive/neuropeptide Y-negative (TH+/NPY-), TH+/NPY+, TH-/NPY-, TH-/NPY+. With respect to their surrounding nerve fibres, two subpopulations of the dye-labelled neurons could be distinguished. The small one consisted of solitary neurons receiving a strong calcitonin gene-related peptide- and Leu5-enkephalin-, and a less intense vasoactive intestinal peptide-immunoreactive innervation. The remaining neurons were poorly supplied by singular nerve fibres containing some of the investigated peptides. We conclude that the caudal mesenteric ganglion should be considered as a prominent source of adrenergic and/or NPY-positive innervation for the porcine male reproductive tract.


Histochemistry and Cell Biology | 1999

Immunohistochemical properties of nerve fibres supplying accessory male genital glands in the pig. A colocalisation study.

Jerzy Kaleczyc; Jean-Pierre Timmermans; Mariusz Majewski; Lakomy M; D.W. Scheuermann

Abstract Immunohistochemical studies have been performed to investigate the occurrence and coexistence of two catecholamine-synthesising enzymes, tyrosine hydroxylase and dopamine-β-hydroxylase, and several neuropeptides, including neuropeptide Y, vasoactive intestinal polypeptide, Leu5-enkephalin, somatostatin, calcitonin gene-related peptide and substance P, in nerve fibres supplying porcine accessory genital glands, the seminal vesicles, prostate (body and the disseminated part) and bulbourethral glands. Three major populations of nerve fibres supplying non-vascular elements of the glands have been distinguished (from the largest to the smallest one): (1) noradrenergic fibres, the majority of which contain Leu5-enkephalin, neuropeptide Y or, to a lesser extent, somatostatin, (2) non-noradrenergic, putative cholinergic fibres containing vasoactive intestinal polypeptide, neuropeptide Y and/or somatostatin and, (3) non-noradrenergic, presumably sensory fibres, containing calcitonin gene-related peptide and substance P. Whilst the coexistence patterns within nerves supplying particular glands are similar, the density of innervation varies between the organs. The innervation of the seminal vesicles and prostatic body is more developed than that of the disseminated part of the prostate and bulbourethral glands. The majority of noradrenergic fibres related to blood vessels contain neuropeptide Y only, while the non-noradrenergic nerves contain mainly vasoactive intestinal polypeptide. The possible function and origin of particular nerve fibre populations are discussed.


Acta Histochemica | 1995

Peptidergic innervation of the bovine vagina and uterus

Lakomy M; Jerzy Kaleczyc; Mariusz Majewski; Waldemar Sienkiewicz

The distribution of neuropeptide Y, substance P, vasoactive intestinal polypeptide, Leu5-enkephalin, bombesin/gastrin-releasing peptide, calcitonin gene-related peptide, somatostatin, cholecystokinin and catecholamine synthesizing enzymes, tyrosine hydroxylase and dopamine-beta-hydroxylase was studied immunohistochemically in nerve fibres supplying the bovine vagina and uterus. The nerves containing tyrosine hydroxylase or dopamine-beta-hydroxylase and neuropeptide Y-immunoreactivity were particularly numerous in both organs. Substance P, vasoactive intestinal polypeptide and Leu5-enkephalin-containing nerves were less numerous whereas somatostatin and calcitonin gene-related peptide-immunoreactive nerves occurred occasionally. Bombesin/gastrin-releasing peptide and cholecystokinin immunoreactivities were not present in nervous fibers of the bovine uterus and vagina. Generally, the immunoreactive nerve terminals, fibers, networks or nerve bundles were present below the serous membrane, between smooth muscle cells of muscular layers, around blood vessels, in the submucosal layer and below the luminal epithelium of the uterus and cervix.


Folia Histochemica Et Cytobiologica | 1993

Adrenergic innervation of the epididymis, vas deferens, accessory genital glands and urethra in the boar.

Jerzy Kaleczyc; Mariusz Majewski; Całka J; Lakomy M


Folia Histochemica Et Cytobiologica | 1997

Noradrenergic and peptidergic innervation of the testis and epididymis in the male pig

Lakomy M; Jerzy Kaleczyc; Mariusz Majewski


Folia Histochemica Et Cytobiologica | 1995

Occurrence and coexistence of some neuropeptides in nerve fibers supplying the bovine ovary and its extrinsic blood vessels.

Jerzy Kaleczyc; Mariusz Majewski; Lakomy M; Waldemar Sienkiewicz


Folia Histochemica Et Cytobiologica | 1996

Peptidergic innervation of the porcine oviduct studied by double-labelling immunohistochemistry

Czaja K; Jerzy Kaleczyc; Waldemar Sienkiewicz; Mariusz Majewski; Lakomy M


Folia Histochemica Et Cytobiologica | 1996

Galanin, substance P and calcitonin gene - related peptide are colocalized in some afferent neurons innervating the porcine ovary

Mariusz Majewski; Zenon Pidsudko; Jerzy Kaleczyc; Heym C; Lakomy M


Folia Histochemica Et Cytobiologica | 1994

Immunohistochemical localization of neuropeptides in nerve fibers of the porcine vagina and uterine cervix.

Lakomy M; Häppölä O; Mariusz Majewski; Jerzy Kaleczyc

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Jerzy Kaleczyc

University of Agriculture

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Czaja K

University of Warmia and Mazury in Olsztyn

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J. Kaleczyc

University of Warmia and Mazury in Olsztyn

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Zenon Pidsudko

University of Warmia and Mazury in Olsztyn

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Krzysztof Wasowicz

University of Warmia and Mazury in Olsztyn

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