Journal:PMC:1

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activity. <scene name='Journal:PMC:1/Cv4/4'>Tyr-Pro can also form a H-bonded virtual ring and peptide turn which is consistent with this proposition.</scene>
activity. <scene name='Journal:PMC:1/Cv4/4'>Tyr-Pro can also form a H-bonded virtual ring and peptide turn which is consistent with this proposition.</scene>
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'''Conclusion'''. A unified theory based on the stereochemistry of a common aromatic-heterocyclic relationship in opioids
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'''Conclusion'''. A unified theory based on the stereochemistry of a common aromatic-heterocyclic relationship in opioids and opioid peptides is presented. This theory is supported by five propositions which include experimental data derived from the literature and stereochemical observations from the author’s perspective. Some of the support for the propositions explains new relationships about steric hindrance and optical activity of opioids. This theory could be important for future analgesic drug design.
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and opioid peptides is presented. This theory is supported by five propositions which include experimental data derived from the literature and stereochemical observations from the author’s perspective. Some of the support for the propositions explains new relationships about steric hindrance and optical activity of opioids. This theory could be important for future analgesic drug design.
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</StructureSection>
</StructureSection>
<references/>
<references/>
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[[Category:Opioid]]

Current revision

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  1. Joel S. Goldberg, Perspectives in Medicinal Chemistry 2010:4 1-10, Stereochemical Basis for a Unified Structure Activity Theory of Aromatic and Heterocyclic Rings in Selected Opioids and Opioid Peptides doi:http://dx.doi.org/10.4137/PMC.S3898

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