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January 23, 2026Targets16 citationsOpen Access

The Indole Scaffold in Biochemistry and Therapeutics: A Privileged Structure with Diverse Chemical, Biological, and Clinical Significance

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CDCristina Manuela DrăgoiANAlina-Crenguţa NicolaeIDIon-Bogdan Dumitrescu

Key Points

  • To analyze the indole scaffold's chemical versatility and its therapeutic significance in medicine.
  • Reviewed recent research on indole's chemical and biological properties.
  • Examined structure-activity relationships and pharmacokinetics of indole derivatives.
  • Discussed clinical applications and strategies for improved drug specificity and safety.
  • Indole derivatives show therapeutic potential in oncology, infectious diseases, and neurodegenerative disorders.
  • Indole is vital in neurochemical signaling and metabolic regulation.
  • Synthetic indole compounds demonstrate varied effects from enzyme inhibition to receptor modulation.

Abstract

The indole scaffold represents a privileged structural motif in medicinal chemistry, celebrated for its remarkable chemical versatility, biological ubiquity, and clinical relevance. This review provides a comprehensive analysis of the recent research on the indole nucleus, emphasizing its physicochemical properties, reactivity patterns, and capacity to interact with a wide array of biological targets. Found in key endogenous compounds such as serotonin and melatonin, indole serves as a cornerstone in neurochemical signaling, circadian regulation, and chrono-metabolic homeostasis. Beyond its physiological roles, synthetic indole derivatives have shown extensive therapeutic potential across diverse domains, including oncology, infectious diseases, neurodegenerative disorders, immunomodulation, and metabolic syndromes. The review explores structure–activity relationships (SAR), pharmacokinetics, and the molecular mechanisms by which indole-based compounds exert their tremendous effects, that are ranging from enzyme inhibition to receptor modulation. Special focus is given to current clinical applications and emerging strategies for enhancing drug specificity, bioavailability, and safety through indolic frameworks. Additionally, we highlight the translational potential of indole-containing molecules in personalized medicine, underscoring opportunities for future drug discovery. By integrating insights from medicinal chemistry, biochemistry, pharmacology, and clinical science, this review affirms the indole ring’s enduring value as a central scaffold in therapeutic innovation.

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Cite This Study

Drăgoi et al. (2026) studied this question.

synapsesocial.com/papers/69730f59c8125b09b0d1f1eehttps://doi.org/10.3390/targets4010004
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