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February 26, 20260 citations

Oral Peptide Nano-Formulations for Breast Cancer: An Enhancer-Centric, Regulatory-Ready Path to Clinical Translation.

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DSDilpreet SinghBSB.K. SinghRBRohit Bhatia

Key Points

  • The aim is to assess oral peptide nano-formulations that enhance absorption, facilitating their use in long-term breast cancer management.
  • Evaluated various oral peptide nano-formulations incorporating molecular permeation enhancers.
  • Analyzed challenges related to gastrointestinal barriers affecting peptide absorption.
  • Discussed regulatory alignment and manufacturability for clinical translation.
  • Identified key enhancer classes that improve peptide absorption in gastrointestinal environments.
  • Demonstrated potential for enhanced patient adherence and quality of life through oral delivery.
  • Highlighted the importance of chronic-use safety in peptide formulation.

Abstract

Breast cancer is increasingly managed as a long-term condition, intensifying the need for therapies that are effective, tolerable, and suitable for chronic administration. Peptide-based therapeutics offer high molecular specificity and favorable safety profiles; however, their clinical utility remains largely limited by reliance on parenteral delivery. Oral administration is strategically attractive for improving patient adherence, quality of life, and healthcare efficiency, yet peptide drugs face formidable gastrointestinal barriers, including enzymatic degradation, restricted epithelial permeability, and substantial pharmacokinetic variability. These challenges may be further exacerbated by treatment-related gastrointestinal dysfunction in oncology populations. This review critically evaluates oral peptide nano-formulations that incorporate molecular permeation enhancers with established regulatory precedence as a pragmatic approach to achieving clinically meaningful oral absorption in breast cancer. Rather than emphasizing formulation novelty, the article adopts a translational, industry-oriented perspective that prioritizes regulatory alignment, chronic-use safety, manufacturability, and CMC robustness. Mechanistic and translational aspects of key enhancer classes-including medium-chain fatty acids, bile-derived agents, and surfactant-based enhancers-are examined, with particular attention to epithelial reversibility, dose-response nonlinearity, gastrointestinal tolerability, and exposure consistency. Evidence supports an enhancer-centric paradigm which primarily serves to protect peptides and co-localize peptide-enhancer exposure at the intestinal absorption site.

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Cite This Study

Singh et al. (2026) studied this question.

synapsesocial.com/papers/699fe3af95ddcd3a253e7c60https://doi.org/10.1002/psc.70091
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Also Consider

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  1. 1Nanotechnology Enabled Advances in Oral Delivery of Therapeutic Peptides: Mechanistic Insights for Translation to Clinic2024 · 1 citations
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  3. 3Engineering Peptides for Oral Delivery: Structural Design, Barrier Modulation, and Emerging Therapeutic Technologies2026 · 2 citations
  4. 4Emerging Technologies for Oral Peptide Delivery: From Bioinspired Systems to Smart Device-Assisted Drug Delivery2026
  5. 5Peptide-Loaded Nanoparticles: A Precision Approach to Breast Cancer Treatment2025