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1. Purinergic nerves and purinoceptors: early perspectives

2. Evidence that NO acts as a redundant NANC inhibitory neurotransmitter in the guinea-pig isolated taenia coli

3. Evidence that adenosine triphosphate or a related nucleotide is the transmitter substance released by non-adrenergic inhibitory nerves in the gut

4. The effects of ATP and related nucleotides on visceral smooth muscle

6. Purine receptors: classification and properties

7. Identification and estimation of dopamine released from the anterior byssus retractor muscle of Mytilus californianus in response to nerve stimulation

8. Antagonism of the ATP component of sympathetic co-transmission in the rat vas deferens by AMP

9. Evidence for separate receptors for ATP and adenosine in the guinea-pig taenia coli

10. Adenosine causes contractions in spiral strips and relaxations in transverse strips of guinea-pig trachea: Studies on mechanism of action

11. Extrinsic pathways of the adrenergic innervation of the guinea-pig trachealis muscle

12. Identification of 5-hydroxytryptamine (serotonin) released from the anterior byssus retractor muscle of Mytilus californianus in response to nerve stimulation

13. Quantitative studies of the release of purine compounds following stimulation of non-adrenergic inhibitory nerves in the stomach

14. Antagonism of the effects of purinergic nerve stimulation and exogenously applied ATP on the guinea-pig taenia coli by 2-substituted imidazolines and related compounds

15. An integrated study of the effects of external calcium on sodium fluxes and metabolism in muscle

16. Potentiation of the effects of exogenously applied ATP and purinergic nerve stimulation on the guinea-pig taenia coli by dipyridamole and hexobendine

17. An unknown phosphate compound in muscle

18. An investigation of the identity of the transmitter substance released by non-adrenergic, non-cholinergic excitatory nerves supplying the small intestine of some lower vertebrates

19. Adenosine deaminase antagonizes inhibitory responses to adenosine and non-adrenergic, non-cholinergic inhibitory nerve stimulation in isolated preparations of guinea-pig trachea

20. Innervation of the lung of the Australian snake-necked tortoise, Chelodina longicollis

21. Nucleotide pyrophosphatase antagonizes responses to adenosine 5'-triphosphate and non-adrenergic, non-cholinergic inhibitory nerve stimulation in the guinea-pig isolated taenia coli

22. Comparison of the inhibitory effects on the guinea-pig taenia coli of adenine nucleotides and adenosine in the presence and absence of dipyridamole

23. Adrenergic and non-adrenergic inhibitory nerves in mammalian airways

24. Purine receptors in trachea: studies with adenosine deaminase and dipyridamole

26. Differences in responses of guinea-pig and rabbit airway smooth muscle to adrenaline and adrenergic nerve stimulation

28. Purine receptors in the trachea: is there a receptor for ATP?

29. Non-adrenergic, non-cholinergic nerves in mammalian airways: their function and the role of purines

30. Inferences on the Rapid Metabolism of Exogenously applied ATP in isolated Smooth Muscle Preparations using Pharmacological Studies

31. A sensitive method for the detection of adenine compounds separated by paper or thin-layer chromatography

32. A comparison of the excitatory and inhibitory effects of non-adrenergic, non-cholinergic nerve stimulation and exogenously applied ATP on a variety of smooth muscle preparations from different vertebrate species

33. The effect of high K+ solutions and fatty acid substrates on metabolic pathways in toad heart

34. Effects of alpha-methylnoradrenaline on cardiac metabolism

35. THE EFFECT OF AMITRIPTYLINE ON GLYCOGEN PHOSPORYLASE IN CARDIAC MUSCLE

36. INFERENCES ON THE RAPID METABOLISM OF EXOGENOUSLY APPLIED.ATP IN ISOLATED SMOOTH MUSCLE PREPARATIONS USING PHARMACOLOGICAL STUDIES: 179

37. 135 USE OF PURINE NUCLEOTIDE AND NUCLEOSIDE METABOLISING ENZYMES AS TOOLS TO DETERMINE THE PRESENCE OF PURINERGIC NERVE TRANSMISSION IN SMOOTH MUSCLE

38. 136 NUCLEOTIDE PYROPHOSPHATASE ANTAGONIZES CONTRACTIONS DUE TO THE TWITCH COMPONENT OF THE SYMPATHETIC NERVE RESPONSE AND TO APPLIED ATP IN THE GUINEA-PIG VAS DEFERENS

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