Cancer Cell-Selective Inhibition of Migration by Styrenic Catiomer Emulsions

Subhasish Sahoo1, Souma Ghosh1,2, Abdul Malik Areekkadan3

  • 1Department of Oils, Lipid Science & Technology, CSIR-Indian Institute of Chemical Technology, Hyderabad 500007, India.

PubMed

Insights

New styrenic catiomers promote normal cell healing and migration while simultaneously inhibiting cancer metastasis. This cost-effective, greener approach offers a dual strategy for anticancer therapy and tissue repair.

Area of Science:

  • Polymer Chemistry
  • Nanomedicine
  • Cancer Biology

Background:

  • Cancer metastasis is a primary cause of cancer-related deaths.
  • Effective and economical antimetastatic strategies are urgently needed.
  • Current therapies often lack specificity and can be toxic.

Purpose of the Study:

  • To develop a cost-effective and greener method for preparing amphiphilic catiomers.
  • To investigate the potential of these polymers in promoting normal cell migration and inhibiting cancer metastasis.
  • To elucidate the underlying molecular mechanisms of their action.

Main Methods:

  • Synthesis of amphiphilic catiomers with varying styrene content via a greener method.
  • Characterization of polymer self-assembly and cationic charge.
  • In vitro cytotoxicity assays on normal (HEK293) and cancer cell lines (MDAMB-231, B16F10, FaDu).
  • Confocal imaging and FACS for cellular uptake.
  • Scratch assays to evaluate cell migration.
  • Immunoblotting to analyze key migratory proteins (vimentin, TGF-β, E-cadherin).

Main Results:

  • Synthesized non-toxic amphiphilic catiomers with micellar self-assembly and cationic charge.
  • Polymers effectively incorporated into both normal and cancer cells.
  • Promoted significant wound healing and migration in normal HEK293 cells.
  • Inhibited migration in cancer cell lines (MDAMB-231, B16F10, FaDu).
  • Mechanistic studies showed upregulation of vimentin and TGF-β and downregulation of E-cadherin in normal cells, with the opposite trend in cancer cells.

Conclusions:

  • Styrenic catiomers demonstrate a dual function: promoting normal cell migration and wound healing while inhibiting cancer metastasis.
  • The cost-effective and greener synthesis method makes these polymers promising for therapeutic applications.
  • These findings offer a novel strategy for combined tissue repair and anticancer therapy.

Related Concept Videos

Cancer Cell Migration through Invadopodia01:35

Cancer Cell Migration through Invadopodia

Invadosome is a broad category of cell surface structures with proteolytic activity that  degrades the extracellular matrix (ECM). Invadosomes are present in normal cell types, including macrophages, endothelial cells, and neurons, as well as tumor cells. Although the macrophage podosomes and tumor cell invadopodia are classified as invadosomes, they have different structures, molecular pathways, and functions. Podosomes are short structures that last for a few minutes. However,...
2.3K
Chemotaxis and Direction of Cell Migration01:21

Chemotaxis and Direction of Cell Migration

Cells can detect chemical cues in their environment and reorganize the cytoskeleton to migrate toward them or away from them. This directional migration, called chemotaxis, is essential during embryogenesis and development, immune response, tissue repair and regeneration, and reproduction. These chemical cues can either attract or repel the cell's movement. For example, axon development is determined by a combination of chemoattractants and chemorepellents that direct the growing axon...
3.3K
Cytoskeletal Coordination in Cell Migration01:32

Cytoskeletal Coordination in Cell Migration

A migrating cell changes its shape during the cyclic events of attachment and detachment from the substratum and repositions the cell organelles correspondingly. These complex events are orchestrated by the dynamic cytoskeletal network comprising actin filaments, intermediate filaments, and microtubules. Cytoskeletal crosstalk — the direct and indirect communication between the different components — is crucial for this coordination. Direct communication involves various linker...
4.7K
Cell Migration01:19

Cell Migration

Cell migration is a process by which the cells move from one location to another, playing an essential role in embryological development, repair and regeneration, immune response, and metastasis. Cells migrate in response to chemical or mechanical signals generated by specific organs or tissues. The overall mechanism includes three steps - polarization, protrusion, and release. Polarization involves the formation of a distinct cell front and rear, which determines the direction of movement.
4.7K
Metastasis02:30

Metastasis

Metastasis is the spread of cancer cells from the original site to distant locations in the body. Cancer cells can spread via blood vessels (hematogenous) as well as lymph vessels in the body.
Epithelial-to-Mesenchymal Transition
The epithelial-to-mesenchymal transition or EMT is a developmental process commonly observed in wound healing, embryogenesis, and cancer metastasis. EMT is induced by transforming growth factor-beta (TGF-β) or receptor tyrosine kinase (RTK) ligands, which further...
5.5K
Cancer Stem Cells and Tumor Maintenance02:40

Cancer Stem Cells and Tumor Maintenance

Early diagnosis and treatment can often cure cancer. However, even with treatment, residual cells called cancer stem cells (CSC) might remain, often causing tumor recurrence. These cancer stem cells possess the potential for self-renewal and multi-lineage differentiation and are often responsible for the therapeutic resistance displayed in most cancers.
Cancer stem cells are thought to originate from tissue-specific normal stem cells or progenitor cells. The normal stem cells usually reside in...
4.9K