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Specialised sympathetic neuroeffector associations in rat iris arterioles

Published online by Cambridge University Press:  01 January 1998

SHAUN L. SANDOW
Affiliation:
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Australian National University Supercomputer Facility, Australian National University, A.C.T., Australia
DREW WHITEHOUSE
Affiliation:
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Australian National University Supercomputer Facility, Australian National University, A.C.T., Australia
CARYL E. HILL
Affiliation:
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Australian National University Supercomputer Facility, Australian National University, A.C.T., Australia
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Abstract

Vascular sympathetic neuroeffector associations have been examined in rat iris arterioles using serial section electron microscopy and reconstruction techniques. Examination of random sections showed that, of all profiles of varicosities (199) seen to lie closer than 4 μm to vascular smooth muscle cells, only a small proportion (29/199) were found in close association with vascular smooth muscle cells, where adjacent membranes were separated by less than 100 nm. However, serial section examination, from intervaricose region to intervaricose region, of 79 varicosities similarly observed lying within 4 μm of vascular smooth muscle cells showed that 54 formed close associations with vascular smooth muscle cells. In serial sections, all these varicosities were also closely associated with melanocytes and of the 25 remaining varicosities, 22 formed close associations with melanocytes alone, whilst 3 did not come into close association with any effector cell. The increased observation of close associations with vascular smooth muscle cells in serial sections, compared with random sections, is consistent with the demonstration that the area of contact only occupies, on average, a small percentage (5%) of the total surface area of the varicosity as seen in the 3-dimensional reconstructions. In both random and serial sections, close associations were observed between varicosities and vascular smooth muscle cells or melanocytes irrespective of whether fibres were present singly or in small nerve bundles. Three-dimensional reconstruction of associations of varicosities and vascular smooth muscle cells demonstrated several common features, such as accumulations of synaptic vesicles and loss of Schwann cell covering at the region of membrane facing the effector cell. The similarity in the appearance of the neuroeffector association seen in this study and those described in previous studies provides evidence for the existence of a common sympathetic neuroeffector association, irrespective of the receptor subtype involved in neurotransmission.

Type
Research Article
Copyright
© Anatomical Society of Great Britain and Ireland 1998

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