Factors Influencing Retention of Injected Biomaterials to Treat Myocardial Infarction

Maaike J.G. Schotman, Patricia Y.W. Dankers (Corresponding author)

Research output: Contribution to journalReview articlepeer-review

20 Citations (Scopus)
73 Downloads (Pure)

Abstract

Biomaterials that are commonly used for the attenuation of adverse remodeling or as regenerative treatment for myocardial infarction (MI), often have the capacity to release drugs in a sustained manner, providing strength and stability to the infarcted area, or mimic the extracellular matrix. Retention and redistribution of the injected biomaterials is a factor often overlooked, but plays a significant role in the effectiveness of the treatment. Wash-out of therapeutics from the cardiac area can lead to unwanted side-effects and can therefore add insult to injury. Here, the authors seek a deeper understanding on the mechanisms that play an important role in the retention of injected therapeutics, being: materials, drugs, or a combination thereof. Several factors influencing the therapeutic quantity retained at the target site are discussed; being the timing of injection after MI, cardiac pulsation, and injectate properties such as volume, mechanical properties, and tissue affinity. The importance of understanding is highlighted and these different parameters are taken into. More insight in these parameters can lead to an increase in therapeutic effectiveness, in addition to examination of indirect off-target effects.

Original languageEnglish
Article number2100942
Number of pages16
JournalAdvanced Materials Interfaces
Volume9
Issue number7
DOIs
Publication statusPublished - 2 Mar 2022

Bibliographical note

Funding Information:
The authors acknowledge the support from the Netherlands Cardiovascular Research Initiative: an initiative with support of the Dutch Heart Foundation, CVON2014‐27 REMAIN, and the Ministry of Education, Culture and Science (Gravity Programs 024.001.035 and 024.003.013). A part of the illustrations are made by the ICMS Animation Studio, TU/e.

Publisher Copyright:
© 2022 The Authors. Advanced Materials Interfaces published by Wiley-VCH GmbH.

Funding

The authors acknowledge the support from the Netherlands Cardiovascular Research Initiative: an initiative with support of the Dutch Heart Foundation, CVON2014‐27 REMAIN, and the Ministry of Education, Culture and Science (Gravity Programs 024.001.035 and 024.003.013). A part of the illustrations are made by the ICMS Animation Studio, TU/e.

FundersFunder number
Hartstichting, NederlandseCVON2014‐27 REMAIN
Ministerie van Onderwijs, Cultuur en Wetenschap024.003.013, 024.001.035

    Keywords

    • biomaterials
    • cardiac therapy
    • hydrogels
    • parameters
    • retention

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