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Dow Corning cylindrical mold cast
3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are <t>cylindrical</t> constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).
Cylindrical Mold Cast, supplied by Dow Corning, 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/cylindrical+mold+cast/cylindrical+mold+cast/pmc06908826-67-9-15
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cylindrical mold cast - by Bioz Stars, 2026-09
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1) Product Images from "3D Bioengineered Tissue Model of the Large Intestine to Study Inflammatory Bowel Disease"

Article Title: 3D Bioengineered Tissue Model of the Large Intestine to Study Inflammatory Bowel Disease

Journal: Biomaterials

doi: 10.1016/j.biomaterials.2019.119517

3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are cylindrical constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).
Figure Legend Snippet: 3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are cylindrical constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).

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Article Title: 3D bioengineered tissue model of the large intestine to study inflammatory bowel disease.
Article Snippet: Hollow channels were formed in silk scaffolds using a cylindrical mold cast comprised of polydimethylsiloxane (Dow Corning, Midland, MI) following previous protocols [22].



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Dow Corning cylindrical mold cast
3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are <t>cylindrical</t> constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).
Cylindrical Mold Cast, supplied by Dow Corning, 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/cylindrical+mold+cast/cylindrical+mold+cast/pmc06908826-67-9-15
Average 90 stars, based on 1 article reviews
cylindrical mold cast - by Bioz Stars, 2026-09
90/100 stars
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3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are cylindrical constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).

Journal: Biomaterials

Article Title: 3D Bioengineered Tissue Model of the Large Intestine to Study Inflammatory Bowel Disease

doi: 10.1016/j.biomaterials.2019.119517

Figure Lengend Snippet: 3D scaffold systems for intestinal tissue engineering were fabricated used silk fibroin. (A) Inner scaffolds are cylindrical constructs with an outer Ø of 6 mm, inner Ø of 2 mm, and length of 8 mm. (B) Outer scaffolds are wider cylindrical constructs capable of enclosing the inner scaffold with an outer Ø of 10 mm, inner Ø of 6 mm, and length of 8 mm. (C) Silk scaffold system with inner and outer scaffold combined (D) Dimensions of inner and outer scaffolds allow sliding of the inner scaffold into the hollow center of the outer scaffold. (E) Representative tress-strain curves of both outer and inner scaffolds (F) SEM cutaway of the interface between the film and sponge (scalebar: 200 μm) (G) Interconnected pores in the spongey bulk of scaffolds (scalebar: 100 μm) (H) Nanopores in the film (scalebar: 2 μm). (I) Aggregate diameters of nanopores (n=201) averaged at 767 nm (s.d. = 233 nm).

Article Snippet: Hollow channels were formed in silk scaffolds using a cylindrical mold cast comprised of polydimethylsiloxane (Dow Corning, Midland, MI) following previous protocols [ 22 ].

Techniques: Construct