2019
DOI: 10.1002/btm2.10147
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Injectable supramolecular polymer–nanoparticle hydrogels enhance human mesenchymal stem cell delivery

Abstract: Stem cell therapies have emerged as promising treatments for injuries and diseases in regenerative medicine. Yet, delivering stem cells therapeutically can be complicated by invasive administration techniques, heterogeneity in the injection media, and/or poor cell retention at the injection site. Despite these issues, traditional administration protocols using bolus injections in a saline solution or surgical implants of cellladen hydrogels have highlighted the promise of cell administration as a treatment str… Show more

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Cited by 74 publications
(123 citation statements)
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“…These values describe both gels’ abilities to remain solid-like under low stresses (i.e., before and after injection), therefore maintaining a solid gel structure after injection and preventing flow from the injection site, which facilitates the creation of a local inflammatory niche. 50 …”
Section: Results and Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…These values describe both gels’ abilities to remain solid-like under low stresses (i.e., before and after injection), therefore maintaining a solid gel structure after injection and preventing flow from the injection site, which facilitates the creation of a local inflammatory niche. 50 …”
Section: Results and Discussionmentioning
confidence: 99%
“… 29 , 47 , 48 In addition, PNP hydrogels are easily administered due to their shear-thinning and self-healing properties. 46 , 49 , 50 The fabrication process, which is easily scaled and therefore highly translatable, involves straightforward mixing of the polymer, NPs, and an aqueous solution of cargo. 47 , 51 This combination of unique properties makes PNP hydrogels ideal candidates for use as a vaccine delivery platform.…”
mentioning
confidence: 99%
“…Recently we developed a PNP hydrogel platform and demonstrated its injectability, two-stage release of therapeutic cargo, enhanced cell viability after injection, and efficacy in preventing post-surgical adhesions. 21,22,27,28 In these applications, the underpinning functionality is made possible by the intricate combination of viscoelasticity, flow properties, yield stress, and microstructure characteristic of PNP hydrogels. 21,22,27,28 These hydrogels are formed as nanoparticles are added to hydroxypropylmethylcellulose (HPMC) solutions, and the robustness of gelation can be tuned by attaching different hydrophobic pendant groups onto the HPMC chains.…”
Section: Introductionmentioning
confidence: 99%
“…21,22,27,28 In these applications, the underpinning functionality is made possible by the intricate combination of viscoelasticity, flow properties, yield stress, and microstructure characteristic of PNP hydrogels. 21,22,27,28 These hydrogels are formed as nanoparticles are added to hydroxypropylmethylcellulose (HPMC) solutions, and the robustness of gelation can be tuned by attaching different hydrophobic pendant groups onto the HPMC chains. This tunability creates a useful handle to modulate bulk properties crucial for each application, such as modulus, relative elasticity, and flow behaviour.…”
Section: Introductionmentioning
confidence: 99%
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