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Biomedical subjects

A H Pullen

Publications and source records attributed to A H Pullen.

10 recordsLinked to original sources

Presynaptic terminal loss from alpha-motoneurones following the retrograde axonal transport of diphtheria toxin.

Intercostal motoneurones intoxicated following intraneural injection of diphtheria toxin exhibited a progressive dilatation and fragmentation of Nissl body rough endoplasmic reticulum (rER), coupled with two different forms of presynaptic terminal response. Firstly, terminal dysjunction without prior degeneration, and secondly, Wallerian-type degeneration. Dysjunction was attributed to a toxin-related failure by the motoneurones to maintain postsynaptic site structure. Degeneration was considered to arise from toxicity in presynaptic neurones, either neighbouring motoneurones or local interneurones. Morphometry revealed that by 8 days, intoxicated motoneurones exhibited a 33% loss in terminal frequency, a 15% loss in residual presynaptic membrane, and a 43% loss in overall presynaptic input. The concomitant loss of synaptic sites was greater that the overall loss of presynaptic membrane, indicating a toxin-related deficiency of the maintenance of postsynaptic sites. Analyses of the relationship between changes in terminal numbers and the development of Nissl body abnormality in the postsynaptic motoneurone identified three groups of motoneurones: (i) those with normal presynaptic input and normal neuronal Nissl body rER; (ii) those showing a dramatic loss of presynaptic input and a marked dilatation and fragmentation of Nissl bodies; and (iii) neurones exhibiting a maintained or further loss of presynaptic input coupled with extreme dilatation and fragmentation of Nissl body rER with loss of Nissl body structure. These changes are discussed in context with the known molecular action of diphtheria toxin.

Animals

Ultrastructure of pre-synaptic input to motor neurons in Onuf's nucleus: controls and motor neuron disease.

Ultrastructural analyses of sphincteric motoneurons in Onuf's nucleus at S2 were undertaken in human spinal cord obtained 3-6 h post-mortem from three subjects with no neurological disease ('controls') and five in which death was due to motor neuron disease (MND). Neurons in specified locations within Onuf's nucleus of control subjects ranged between 17.8 and 71.7 microns diameter (mean 38.6 microns). Analyses of synaptology revealed five ultrastructural classes of presynaptic terminal synapsing with the neuronal surface membrane. When classified by size, vesicle morphology, and synaptic site structure these conformed to the S, F, T, M and C-terminals defining somatic motoneurons. No terminals characteristic of autonomic motoneurons were found. In MND subjects, neurons in Onuf's nucleus at S2 were preserved despite a paucity of neurons in medial and lateral motor nuclei and were of similar size range to those in control subjects. The morphological classes of pre-synaptic terminal found in controls, also characterized sphincteric motoneurons in MND subjects, including the C-type terminal. The presence of C-terminals indicates (i) that sphincteric motoneurons are somatic alpha-motoneurons, and (ii) that hypotheses explaining the survival of sphincteric motoneurons in MND on the basis of Onuf's nucleus being an extension of the pre-ganglionic parasympathetic nucleus, or having intrinsic autonomic properties are incorrect.

Adult

An in vitro brainstem preparation preserving peripheral auditory function.

We describe an in vitro preparation of the brainstem and auditory periphery of the turtle. Properties of cochlear nucleus units recorded from this preparation are consistent with studies of both behavioural responses and auditory nerve fibre activity. A modified preparation for in vitro HRP tracing is also described.

Acoustic Stimulation

Morphometric evidence from C-synapses for phased Nissl body response in alpha-motoneurones retrogradely intoxicated with diphtheria toxin.

Diphtheria toxin (DTX) kills cells by inactivating ribosomal translocation and when used to retrogradely intoxicate cat intercostal motoneurones produces marked morphological alterations in Nissl bodies, including those specifically sited postsynaptic to C-type axon terminals. Here, qualitative examinations of 'intoxicated' postsynaptic Nissl bodies reveal a progressive structural alteration marked by rER dilatation, rER lamellae fragmentation but retention of both the highly ordered multilamellate organization and ribosomal attachment until final stages of Nissl body dissolution. Morphometric results identified 3 broad phases to the postintoxication response which differed in the degree of rER cisternal dilation, and the numerical and spatial relationships between rER-lamellae, rER-bound ribosomes and rER-associated polyribosomes. These phases reflect the known molecular basis of diphtheritic toxicity and contrast with the fast developing Nissl body reaction associated with the neurotoxin ricin which also invokes ribosomal dysfunction and has been used to mimic certain features of motor neurone disease. The cytopathology of DTX and ricin are compared in the Discussion.

Animals

Quantitative synaptology of feline motoneurones to external anal sphincter muscle.

Motoneurones innervating the cat external anal sphincter muscle were labelled retrogradely following intramuscular injections with horseradish peroxidase (HRP). Labelled motoneurones were examined by correlative light and electron microscopy (LM and EM) with special regard to a qualitative and morphometric analysis of the axon terminals resident on the neuronal membrane. By LM, labelled motoneurones were (1) ipsilateral to the injections; (2) all in S1-S2; (3) found only in the superior dorsomedial region of Onuf's nucleus; and (4) exhibited a broad spectrum of diameters (25-72 micron, mean 47.4 +/- 11.3 micron). By EM, axon terminals on the neuronal membrane when classified according to size, vesicle shape, and synaptic complex ultrastructure conformed to the S-, F-, T-, M-, and C-type terminals previously described for cat lumbosacral motoneurones. C-terminals confirmed these sphincteric motoneurones to be skeletomotor. Pooled data from midnuclear sections through 15 random labelled motoneurones (20-64-micron diameter) revealed that S- and F-type terminals predominated, with numerically few M and C types. Notwithstanding their low frequency (0.3/100 micron membrane) C-terminals contributed 1% of the mean areal coverage by terminals, which implies a potentially larger synaptic influence relative to other terminal types. Linear relationships occurred between terminal frequency (or cover) and motoneurone diameter. While motoneurones greater than 40 micron in diameter exhibited all five terminal types, labelled motoneurones less than or equal to 30 micron generally possessed only S-, F-, and occasional T-type terminals, and in this respect resembled gamma motoneurones.

Anal Canal

Feline 'C'-type terminals possess synaptic sites associated with a hypolemmal cistern and Nissl body.

Previous findings suggest that axosomatic 'C'-type terminals on rat spinal motoneurones possess 'active' synaptic sites associated with the characteristic subsynaptic cistern and postsynaptic Nissl body, but 'C'-terminals in cat do not. A re-examination of feline 'C'-terminals undertook to compare the synaptic ultrastructure in aldehyde-fixed material stained by either osmium or ethanolic phosphotungstic acid (E-PTA). In agreement with previous findings osmicated cat 'C'-terminals failed to reveal synaptic complexes in regions possessing the subsynaptic cistern ('cisternal regions'). In contrast, cisternal regions of E-PTA stained 'C'-terminals exhibited a linear array of presynaptic dense projection all opposed by a single extended postsynaptic density which abutted directly onto both postsynaptic membrane and the cistern. This close topographical relationship is suggested to be functionally significant in the trans-synaptic trophism previously demonstrated for feline 'C'-terminals.

Animals

The distribution and relative sized of fibre types in the extensor digitorum longus and soleus muscles of the adult rat.

Histochemical fibre types classified in sections stained for succinic dehydrogenase (sdh) and myosin ATPase at pH 9.4, were found to be distributed in a consistent manner within the extensor digitorum longus (EDL) and 4 soleus muscles of the adult rat. Simple morphometric techniques applied to complete transverse sections of both muscles showed that the relative distributions and proportions of fibre types along their deep to superficial, and medial to lateral, axes varied accoording to the histochemical method used for fibre typing. Similar differences occurred when the relative ranges of size exhibited by each fibre type were compared in sections stained for SDH and ATPase, and the discrepancies in fibre classification were confirmed by an analysis of individual fibres in serial sections. The findings are discussed in relation to those previosly reported for the EDL and soleus muscles of the rat.

Adenosine Triphosphatases

The distribution and relative sizes of three histochemical fibre types in the rat tibialis anterior muscle.

A quantitative study of the tibialis anterior muscle of the adult rat showed that the proportions of each 'histochemical' fibre type varied between adjacent regions along the deep to superficial and medial to lateral axes of the muscle. The distribution of fibre types classified with oxidative enzymes was similar to that using phosphorylase, but differed from that obtained with sections stained for myosin ATPase. This apparent discrepancy in classifation was confirmed by comparison of the ranges of fibre cross sectional areas for each fibre type classified on the basis of their oxidative enzme and ATPase activites, and by an independent analysis of individual fibres in serial sections stained for succinic dehydrogenase and ATPase.

Adenosine Triphosphatases

A parametric analysis of the growing CFHB (Wistar) rat.

Measurements of body weight and body, tail and hindlimb lengths were made at various times during the postnatal development of the CFHB-Wistar rat using simple techniques which avoided unnecessary stress being applied to the animal. All the graphical relationships studied using these measurements indicated that growth was divided into two phases which meet at 16 days. This was particularly noticeable when either body length or hindlimb length was plotted against either age or body weight. Body weight appeared to be a better indication of maturity than time; and linear relationships were found when measurements of body lengths were plotted against the square root of body weight. Curvilinear graphs were obtained when body weight was plotted on alternative scales. Results suggest that prior to 16 days metabolism is probably directed more towards attaining sufficient maturity to enable the animal to survive independently, than to increasing its stature; but after 16 days this situation is reversed.

Age Factors