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Updated: Jan 13, 2026

Delayed Intramyocardial Delivery of Stem Cells after Ischemia Reperfusion Injury in a Murine Model
Published on: September 3, 2020
Engineered Therapeutic Nanoplatforms for Ischemic Heart Disease Treatment Vis Cardiac Microenvironment Reprogramming
Hui Xiao1, Wenjia Zhang1, Jian Liu1
1School of Medicine and Health, Zhengzhou Research Institute, Key Laboratory of Microsystems and Microstructures Manufacturing (Ministry of Education), Harbin Institute of Technology, Harbin, China.
Abstract:
Ischemic heart disease (IHD), the leading cause of death worldwide, progresses through acute, transitional, and end-stage phases, forming a "oxidative stress-inflammation-fibrosis" vicious cycle. Current therapies face major limitations: reperfusion, crucial in the acute phase, fails to prevent secondary injury, while conventional pharmacotherapy is hindered by low bioavailability, off-target effects, systemic toxicity, and limited therapeutic efficacy. Although nanotechnology shows immense potential for targeted delivery and precise regulation of IHD pathology, a critical gap remains in existing reviews-namely, the lack of systematic analysis on how nanomaterials target stage-specific pathologies defined by distinct core mechanisms (acute oxidative stress, transitional inflammation, end-stage fibrosis) to achieve full-course intervention. This review addresses this gap by systematically outlining the core pathology and treatment bottlenecks of each IHD stage, critically evaluating recent advances in nanomaterial applications for stage-specific targeting and full-course intervention. Through in-depth analysis of current nanotherapy challenges and limitations, it proposes future research directions, providing a theoretical basis and design concepts for developing innovative nanotechnology-based IHD therapies and mechanistic research.

