PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 23, 2026Small1 citations

Bioengineered In Vitro 3D Cancer Models: A New Paradigm in Ethical and Predictive Oncology Research Toward Successful Pre‐Clinical Drug Screening

View Full Paper
CJChitra JaiswalBBBibrita BharSSSaki Sugihara

Key Points

  • The aim is to highlight the advantages of bioengineered in vitro 3D cancer models in improving drug screening accuracy and ethical standards.
  • Review of various bioengineering techniques for creating 3D cancer models.
  • Evaluation of model effectiveness in toxicity testing and drug response prediction.
  • Discussion of tumor microenvironment and its impact on therapeutic outcomes.
  • Bioengineered 3D models provide better mimicry of tumor conditions compared to traditional 2D and animal models.
  • Such models enhance the predictive accuracy for drug responses and facilitate faster drug development.
  • Integration of diverse technologies leads to improved scalability and reproducibility in drug screening.

Abstract

The pharmaceutical industry is confronting a significant challenge due to the high rate of drug attrition, largely because of reliance on 2D cell culture and animal models for pre-clinical validation. From this perspective, in vitro 3D cancer models offer a transformative tumor mimicry platform by enabling tunable and precise control over spatial organization and microenvironmental cues. Emerging advanced technologies such as 3D bioprinting, microfluidics, and multi-organ-on-a-chip systems have further enhanced the utility of these models for toxicity screening and accurate drug response prediction. This review comprehensively explores the various aspects of heterogeneity inherent within TME and their pivotal role in tumor progression, and determines the therapeutic outcomes. Special emphasis is placed on discussing diverse bioengineering techniques, evaluating their respective advantages and limitations, and the importance of integrative approaches to overcome the existing challenges. By recapitulating multifaceted aspects of the TME through hybrid bioengineering techniques, these platforms hold immense promise to improve predictive accuracy of pre-clinical anticancer drug screening and accelerate the timeline for novel drug development. Overall, the adoption of bioengineered in vitro 3D cancer models offers a humane alternative with enhanced reproducibility and scalability compared to traditional models, thereby advancing ethical oncology research in alignment with the 3Rs principle.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Jaiswal et al. (2026) studied this question.

synapsesocial.com/papers/69e9b8d485696592c86ebe84https://doi.org/10.1002/smll.202513199
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Development of a 3D in vitro human-sized model of cervical dysplasia to evaluate the delivery of ethyl cellulose-ethanol injection2024 · 6 citations
  2. 2Comparison of primary and passaged tumor cell cultures and their application in personalized medicine2024 · 21 citations
  3. 3Triple-Negative Breast Cancer2010 · 4,244 citations
  4. 4Development of a human three-dimensional organotypic skin-melanoma spheroid model for in vitro drug testing2013 · 166 citations
  5. 5Collagen reorganization at the tumor-stromal interface facilitates local invasion2006 · 1,832 citations