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10 merged results for "Silk-based biomaterials and applications"

Partial results: at least one source did not answer. Available results are shown rather than treating an upstream outage as zero matches.

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  1. Sugar Functionalization of Silks with Pathway-Controlled Substitution and Properties.

    Sahoo JK, Hasturk O, Choi J, Montero MM · 2021 · Advanced biology

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1002/adbi.202100388

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    • supportingOpen access status: Normalized open-access status: open. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  2. Silk Acid as an Implantable Biomaterial for Tissue Regeneration.

    Sun Z, Huang R, Lyu H, Yu X · 2023 · Advanced healthcare materials

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1002/adhm.202301439

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  3. Designing Silk Biomaterials toward Better Future Healthcare: The Development and Application of Silk-Based Implantable Electronic Devices in Clinical Diagnosis and Therapy.

    Lv Q, Li Q, Cao P, Wei C · 2025 · Advanced materials (Deerfield Beach, Fla.)

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1002/adma.202411946

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  4. Silk Biomaterials for Bone Tissue Engineering.

    Ding Z, Cheng W, Mia MS, Lu Q · 2021 · Macromolecular bioscience

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1002/mabi.202100153

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  5. Phospholipid-induced silk fibroin hydrogels and their potential as cell carriers for tissue regeneration.

    Laomeephol C, Guedes M, Ferreira H, Reis RL · 2020 · Journal of tissue engineering and regenerative medicine

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1002/term.2982

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  6. Silk fibroin and silk-based biomaterial derivatives for ideal wound dressings.

    Patil PP, Reagan MR, Bohara RA · 2020 · International journal of biological macromolecules

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.ijbiomac.2020.08.041

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    • supportingOpen access status: Normalized open-access status: open. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  7. Genetically engineered silk-based core-shell cytokine/sericin/carboxychitosan composite biomaterials for enhanced cell proliferation and medical applications.

    Tang X, Tian C, Zhang X, Chen Y · 2026 · International journal of biological macromolecules

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.ijbiomac.2025.149903

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  8. Dry Surface Treatments of Silk Biomaterials and Their Utility in Biomedical Applications.

    Lau K, Akhavan B, Lord MS, Bilek MM · 2020 · ACS biomaterials science & engineering

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1021/acsbiomaterials.0c00888

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  9. Concentric-mineralized hybrid silk-based scaffolds for bone tissue engineering in vitro models.

    Bosio VE, Rybner C, Kaplan DL · 2023 · Journal of materials chemistry. B

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1039/d3tb00717k

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    • supportingOpen access status: Normalized open-access status: open. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  10. Spider Silk for Tissue Engineering Applications.

    Salehi S, Koeck K, Scheibel T · 2020 · Molecules (Basel, Switzerland)

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/molecules25030737

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    • supportingOpen access status: Normalized open-access status: open. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer