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Related Concept Videos

Opioid Receptors: Overview01:22

Opioid Receptors: Overview

Opioid receptors, including the mu (μ, MOR), delta (δ, DOR), and kappa (κ, KOR) types, belong to the rhodopsin family of G protein-coupled receptors. These receptors are located throughout the central and peripheral nervous systems and in non-neuronal tissues such as macrophages and astrocytes. Opioid receptor ligands can be categorized into agonists or antagonists. Highly selective agonists include [d-Ala2, MePhe4, Gly(ol)5]-enkephalin or DAMGO for MOR, [D-Pen2, D-Pen5]-enkephalin or DPDPE for...
Cholinergic Receptors: Muscarinic01:25

Cholinergic Receptors: Muscarinic

The pharmacological actions of acetylcholine are elicited via its binding to two families of cholinergic receptors or cholinoceptors, namely, muscarinic and nicotinic receptors. Muscarinic receptors are G protein-coupled receptors and have five subtypes, M1–M5. All mAChR subtypes are activated by acetylcholine and blocked by the antagonist, atropine. 
The subtypes M1, M3, and M5 couple with the Gq subunit and activate the phospholipase C (PLC) activity, mobilizing intracellular Ca2+. Activation...
Cholinergic Antagonists: Chemistry and Structure-Activity Relationship01:29

Cholinergic Antagonists: Chemistry and Structure-Activity Relationship

Cholinergic antagonists bind to cholinergic receptors and limit the effects of acetylcholine and other cholinergic agonists. Based on the specific cholinergic receptor affinity, these antagonists are classified as muscarinic or nicotinic. Anticholinergics interrupt parasympathetic innervations while sympathetic innervations remain uninterrupted. Muscarinic antagonists are also called 'muscarinic antagonists', 'antimuscarinics', or 'parasympatholytics'. Nicotinic antagonists are called...
Alkenes via Reductive Coupling of Aldehydes or Ketones: McMurry Reaction01:22

Alkenes via Reductive Coupling of Aldehydes or Ketones: McMurry Reaction

The radical dimerization of ketones or aldehydes gives vicinal diols through a pinacol coupling reaction. However, the behavior of titanium metals used for the reaction as a source of electrons is unusual. When the reaction is carried out in the presence of titanium, diols can be isolated at low temperatures. Else titanium further reacts with diols, forming alkenes through the McMurry reaction.
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Cyclohexenones via Michael Addition and Aldol Condensation: The Robinson Annulation

Robinson annulation is a base-catalyzed reaction for the synthesis of 2-cyclohexenone derivatives from 1,3-dicarbonyl donors (such as cyclic diketones, β-ketoesters, or β-diketones) and α,β-unsaturated carbonyl acceptors. Named after Sir Robert Robinson, who discovered it, this reaction yields a six-membered ring with three new C–C bonds (two σ bonds and one π bond).
Pericyclic Reactions: Introduction01:17

Pericyclic Reactions: Introduction

Pericyclic reactions are organic reactions that occur via a concerted mechanism without generating any intermediates. The reactions proceed through the movement of electrons in a closed loop to form a cyclic transition state, where rearrangement of the σ and π bonds yields specific products.
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Related Experiment Video

Updated: Jun 16, 2026

A Direct, Regioselective and Atom-Economical Synthesis of 3-Aroyl-N-hydroxy-5-nitroindoles by Cycloaddition of 4-Nitronitrosobenzene with Alkynones
07:30

A Direct, Regioselective and Atom-Economical Synthesis of 3-Aroyl-N-hydroxy-5-nitroindoles by Cycloaddition of 4-Nitronitrosobenzene with Alkynones

Published on: January 21, 2020

Polycyclic indole alkaloid-type compounds by MCR.

Wei Wang1, Eberhardt Herdtweck, Alexander Dömling

  • 1University of Pittsburgh, Drug Discovery Institute, Pittsburgh, PA 15261, USA.

Chemical Communications (Cambridge, England)
|January 21, 2010
PubMed
Summary

Synthesize complex indole alkaloids efficiently using a novel two-step method. This approach combines the Ugi MCR and Pictet-Spengler reaction for rapid access to valuable polycyclic indole structures.

Area of Science:

  • Organic Chemistry
  • Medicinal Chemistry
  • Synthetic Chemistry

Background:

  • Polycyclic indole moieties are prevalent in numerous bioactive natural and synthetic products.
  • Traditional synthesis of these compounds often involves lengthy, multi-step procedures.
  • Developing efficient synthetic routes is crucial for accessing novel indole-based therapeutics.

Purpose of the Study:

  • To develop a streamlined and versatile method for synthesizing complex multicyclic indole alkaloid-type compounds.
  • To reduce the number of synthetic steps required for indole alkaloid synthesis.
  • To provide a flexible platform for generating diverse indole structures.

Main Methods:

  • Utilized a two-step synthetic strategy.
  • Incorporated the Ugi multicomponent reaction (MCR).

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14:11

Synthesis of pH Dependent Pyrazole, Imidazole, and Isoindolone Dipyrrinone Fluorophores using a Claisen-Schmidt Condensation Approach

Published on: June 10, 2021

  • Applied the Pictet-Spengler reaction for cyclization.
  • Main Results:

    • Achieved an efficient and flexible 2-step procedure.
    • Successfully synthesized complex multicyclic indole alkaloid-type compounds.
    • Demonstrated the utility of combining Ugi MCR and Pictet-Spengler reactions.

    Conclusions:

    • The developed 2-step method offers a significant improvement over traditional multi-step syntheses.
    • This approach provides rapid access to valuable polycyclic indole structures.
    • The methodology is adaptable for the synthesis of diverse indole alkaloid analogs.