Small molecule-mediated spatial targeting of mitochondria and the Golgi apparatus in cancer cells

Phanindra Kumar1, Asima Sahu1, Tripti Mishra1

  • 1Department of Chemistry, Indian Institute of Technology (IIT) Gandhinagar Palaj Gandhinagar Gujarat 382355 India Sudipta.basu@iitgn.ac.in.

RSC Medicinal Chemistry
|January 21, 2026
PubMed

Insights

New small molecules target cancer cell organelles. One molecule impairs mitochondria, inducing apoptosis, while another targets the Golgi apparatus, triggering autophagy, offering potential cancer therapies.

Area of Science:

  • Cell Biology
  • Chemical Biology
  • Cancer Research

Background:

  • Mitochondria and Golgi apparatus (GA) play crucial roles in cancer.
  • Dysregulation of these organelles contributes to cancer progression.
  • Limited understanding of mitochondria-GA cross-talk due to lack of specific targeting tools.

Purpose of the Study:

  • To develop chemical tools for spatial organelle-specific targeting.
  • To investigate mitochondria-GA cross-talk in cancer.
  • To explore potential cancer therapeutics based on organelle targeting.

Main Methods:

  • Synthesis of a library of protonated 3-methoxy-pyrrole-based small molecules.
  • Screening in HeLa (cervical) and HCT-116 (colon) cancer cells.
  • Utilizing nanoparticle self-assembly and organelle localization studies.

Main Results:

  • A lead molecule (7f) localized to mitochondria, causing impairment, ROS generation, and apoptosis induction.
  • A derivative (compound 9) localized to the GA, triggering autophagy.
  • Structural modifications dictated organelle-specific localization and function.

Conclusions:

  • 3-methoxy-pyrrole-based small molecules are effective chemical biology tools.
  • These molecules can dissect spatial and functional dynamics of mitochondria-GA interplay.
  • Potential implications for targeted cancer therapeutics by exploiting organelle cross-talk.

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