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Morphix Technologies smp based device
Synthesis and mechanism of a dual-responsive <t>SMP</t> <t>based</t> on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.
Smp Based Device, supplied by Morphix Technologies, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/smp+based+device/based+device+smp/pmc12874601-1423-9-12
Average 86 stars, based on 1 article reviews
smp based device - by Bioz Stars, 2026-10
86/100 stars

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Article Title: Body-responsive shape-memory polymers for biomedical applications

Journal: Bioactive Materials

doi: 10.1016/j.bioactmat.2025.12.054

Synthesis and mechanism of a dual-responsive SMP based on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.
Figure Legend Snippet: Synthesis and mechanism of a dual-responsive SMP based on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.

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Article Title: Body-responsive shape-memory polymers for biomedical applications
Article Snippet: As noted before, the first successful commercialization of an SMP-based device was Morphix®, which is FDA-cleared as a permanent implant [ , ].



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86
Morphix Technologies smp based device
Synthesis and mechanism of a dual-responsive <t>SMP</t> <t>based</t> on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.
Smp Based Device, supplied by Morphix Technologies, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/smp+based+device/based+device+smp/pmc12874601-1423-9-12
Average 86 stars, based on 1 article reviews
smp based device - by Bioz Stars, 2026-10
86/100 stars
  Buy from Supplier

90
Helmholtz Zentrum fur Infektionsforschung GmbH smp based medical devices
Synthesis and mechanism of a dual-responsive <t>SMP</t> <t>based</t> on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.
Smp Based Medical Devices, supplied by Helmholtz Zentrum fur Infektionsforschung GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/smp+based+device/smp+based+medical+devices/10__1002_slash_mame__201200341-13-1-14
Average 90 stars, based on 1 article reviews
smp based medical devices - by Bioz Stars, 2026-10
90/100 stars
  Buy from Supplier

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Synthesis and mechanism of a dual-responsive SMP based on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.

Journal: Bioactive Materials

Article Title: Body-responsive shape-memory polymers for biomedical applications

doi: 10.1016/j.bioactmat.2025.12.054

Figure Lengend Snippet: Synthesis and mechanism of a dual-responsive SMP based on PEG. A) Photographs and schematics of shape memory behavior in the PTHF-PEG network, showing two-step programming and recovery due to the crystalline segments of PTHF and PEG (scale bar: 1 cm). Reproduced with permission . Copyright 2021, American Chemical Society. B) Synthetic route of PEG-PLA multiblock copolymer through ring-opening polymerization in the presence of Sn(Oct) 2 as the catalyst. Reproduced with permission . Copyright 2024, Elsevier. C) Schematic illustration of the underlying mechanism of a PLA-PEG copolymer, illustrating the presence of PLA crystalline domains as well as shape recovery due to the temperature- and water-responsiveness of PEG upon exposure to these stimuli. Reproduced with permission . Copyright 2024, Elsevier.

Article Snippet: As noted before, the first successful commercialization of an SMP-based device was Morphix®, which is FDA-cleared as a permanent implant [ , ].

Techniques: