<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://web.spiber.se/wp-sitemap.xsl" ?>
<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9"><url><loc>https://web.spiber.se/uncategorized/hello-world/</loc><lastmod>2022-06-10T16:28:39+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/n-terminal-nonrepetitive-domain-common-to-dragline-flagelliform-and-cylindriform-spider-silk-proteins/</loc><lastmod>2022-09-12T09:24:11+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/macroscopic-fibers-self-assembled-from-recombinant-miniature-spider-silk-proteins/</loc><lastmod>2022-09-12T15:30:44+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/major-ampullate-spidroins-from-euprosthenops-australis-multiplicity-at-protein-mrna-and-gene-levels/</loc><lastmod>2022-09-12T15:31:13+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/structural-properties-of-recombinant-nonrepetitive-and-repetitive-parts-of-major-ampullate-spidroin-1-from-euprosthenops-australis-implications-for-fiber-formation/</loc><lastmod>2022-09-12T15:31:37+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/tissue-response-to-subcutaneously-implanted-recombinant-spider-silk-an-in-vivo-study/</loc><lastmod>2022-09-12T15:32:07+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/engineered-disulfides-improve-mechanical-properties-of-recombinant-spider-silk/</loc><lastmod>2022-09-12T15:34:27+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-as-matrices-for-cell-culture/</loc><lastmod>2022-09-12T17:09:38+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/self-assembly-of-spider-silk-proteins-is-controlled-by-a-ph-sensitive-relay/</loc><lastmod>2022-09-12T17:18:32+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/sterilized-recombinant-spider-silk-fibers-of-low-pyrogenicity/</loc><lastmod>2022-09-12T17:10:25+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/a-ph-dependent-dimer-lock-in-spider-silk-protein/</loc><lastmod>2022-09-12T17:10:46+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/spider-silk-proteins-recent-advances-in-recombinant-production-structure-function-relationships-and-biomedical-applications/</loc><lastmod>2022-09-12T17:11:05+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/functionalisation-of-recombinant-spider-silk-with-conjugated-polyelectrolytes/</loc><lastmod>2022-09-12T17:11:23+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/current-progress-and-limitations-of-spider-silk-for-biomedical-applications/</loc><lastmod>2022-09-12T17:11:46+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/ph-dependent-dimerization-of-spider-silk-n-terminal-domain-requires-relocation-of-a-wedged-tryptophan-side-chain/</loc><lastmod>2022-09-12T17:12:06+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-matrices-for-neural-stem-cell-cultures/</loc><lastmod>2022-09-12T17:12:25+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-with-cell-binding-motifs-for-specific-adherence-of-cells/</loc><lastmod>2022-09-12T17:12:48+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-genetically-functionalized-with-affinity-domains/</loc><lastmod>2022-09-12T17:13:10+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/spider-silk-for-xeno-free-long-term-self-renewal-and-differentiation-of-human-pluripotent-stem-cells/</loc><lastmod>2022-09-12T17:15:02+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/pancreatic-islet-survival-and-engraftment-is-promoted-by-culture-on-functionalized-spider-silk-matrices/</loc><lastmod>2022-09-12T17:15:26+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/rational-design-of-spider-silk-materials-genetically-fused-with-an-enzyme/</loc><lastmod>2022-09-12T17:15:46+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/functionalized-silk-assembled-from-a-recombinant-spider-silk-fusion-protein-z-4repct-produced-in-the-methylotrophic-yeast-pichia-pastoris/</loc><lastmod>2022-09-12T17:16:11+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/efficient-passage-of-human-pluripotent-stem-cells-on-spider-silk-matrices-under-xeno-free-conditions/</loc><lastmod>2022-09-12T17:16:36+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silk-matrices-promote-formation-of-insulin-secreting-islet-like-clusters/</loc><lastmod>2022-09-12T17:16:57+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/genetic-fusion-of-single-chain-variable-fragments-to-partial-spider-silk-improves-target-detection-in-micro-and-nanoarrays/</loc><lastmod>2022-09-12T17:17:13+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/a-fibronectin-mimetic-motif-improves-integrin-mediated-cell-biding-to-recombinant-spider-silk-matrices/</loc><lastmod>2022-09-12T17:17:33+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/self-assembly-of-recombinant-silk-as-a-strategy-for-chemical-free-formation-of-bioactive-coatings-a-real-time-study/</loc><lastmod>2022-09-12T17:17:54+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/ultrastrong-and-bioactive-nanostructured-bio-based-composites/</loc><lastmod>2022-10-07T09:11:18+00:00</lastmod></url><url><loc>https://web.spiber.se/news-events/my-hedhammar-awarded-by-the-swedish-fund-for-research-without-animal-experiments/</loc><lastmod>2022-10-07T09:36:45+00:00</lastmod></url><url><loc>https://web.spiber.se/news-events/spiber-technologies-ab-and-biolamina-ab-sign-an-exclusive-sale-and-marketing-deal-for-the-unique-biosilk-product/</loc><lastmod>2022-11-25T13:18:13+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/efficient-protein-production-inspired-by-how-spiders-make-silk/</loc><lastmod>2022-10-07T09:11:46+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silk-silk-interactions-between-silkworm-fibroin-and-recombinant-spider-silk-fusion-proteins-enable-construction-of-bioactive-materials/</loc><lastmod>2022-10-07T09:12:14+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/structuring-of-functional-spider-silk-wires-coatings-and-sheets-by-self-assembly-on-superhydrophobic-pillar-surfaces/</loc><lastmod>2022-10-07T09:12:38+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-functionalized-with-a-motif-from-fibronectin-mediates-cell-adhesion-and-growth-on-polymeric-substrates-by-entrapping-cells-during-self-assembly/</loc><lastmod>2022-10-07T09:13:03+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-as-mediator-for-one%e2%80%90step-chemical%e2%80%90free-surface-biofunctionalization/</loc><lastmod>2022-10-07T09:13:26+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/a-spidroin-derived-solubility-tag-enables-controlled-aggregation-of-a-designed-amyloid-protein/</loc><lastmod>2022-10-07T09:13:51+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-functionalized-silkworm-silk-matrices-as-potential-bioactive-wound-dressings-and-skin-grafts/</loc><lastmod>2022-10-07T09:14:12+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/bioactivation-of-spider-silk-with-basic-fibroblast-growth-factor-for-in-vitro-cell-culture-a-step-toward-creation-of-artificial-ecm/</loc><lastmod>2022-11-25T11:30:53+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/genetically-engineered-mucoadhesive-spider-silk/</loc><lastmod>2022-10-07T09:15:04+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/interfacial-behavior-of-recombinant-spider-silk-protein-parts-reveals-cues-on-the-silk-assembly-mechanism/</loc><lastmod>2022-10-07T09:15:25+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/assembly-of-functionalized-silk-together-with-cells-to-obtain-proliferative-3d-cultures-integrated-in-a-network-of-ecm-like-microfibers/</loc><lastmod>2022-10-07T09:15:49+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/structure-of-the-n-terminal-domain-of-euprosthenops-australis-dragline-silk-suggests-that-conversion-of-spidroin-dope-to-spider-silk-involves-a-conserved-asymmetric-dimer-intermediate/</loc><lastmod>2022-10-07T09:16:10+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/bioactive-silk-coatings-reduce-the-adhesion-of-staphylococcus-aureus-while-supporting-growth-of-osteoblast-like-cells/</loc><lastmod>2022-10-07T09:16:34+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/vegfr2-specific-ligands-based-on-affibody-molecules-demonstrate-agonistic-effects-when-tetrameric-in-the-soluble-form-or-immobilized-via-spider-silk/</loc><lastmod>2022-10-07T09:16:56+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/assembly-of-fn-silk-with-laminin-521-to-integrate-hpscs-into-a-three-dimensional-culture-for-neural-differentiation/</loc><lastmod>2022-10-07T09:17:17+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-forms-tough-and-elastic-nanomembranes-that-are-protein%e2%80%90permeable-and-support-cell-attachment-and-growth/</loc><lastmod>2022-10-07T09:17:36+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/cyclic-expansion-compression-of-the-air-liquid-interface-as-a-simple-method-to-produce-silk-fibers/</loc><lastmod>2022-10-07T09:17:54+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/single-cell-transcriptomics-captures-features-of-human-midbrain-development-and-dopamine-neuron-diversity-in-brain-organoids/</loc><lastmod>2022-11-25T11:50:00+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silk-scaffolding-drives-self-assembly-of-functional-and-mature-human-brain-organoids/</loc><lastmod>2022-11-25T12:58:50+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/functionalized-silk-promotes-cell-migration-into-calcium-phosphate-cements-by-providing-micropores-and-cell-adhesion-motifs/</loc><lastmod>2022-11-25T12:59:26+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/fibrillar-nanomembranes-of-recombinant-spider-silk-protein-support-cell-co-culture-in-an-in-vitro-blood-vessel-wall-model/</loc><lastmod>2022-11-25T11:52:18+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/integration-of-primary-endocrine-cells-and-supportive-cells-using-functionalized-silk-promotes-the-formation-of-prevascularized-islet-like-clusters/</loc><lastmod>2022-11-25T12:33:38+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-coatings-functionalized-with-enzymes-targeting-bacteria-and-biofilms/</loc><lastmod>2022-11-25T12:32:40+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/surface-functionalization-of-ptfe-membranes-intended-for-guided-bone-regeneration-using-recombinant-spider-silk/</loc><lastmod>2022-11-25T12:34:13+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silkworm-silk-scaffolds-functionalized-with-recombinant-spider-silk-containing-a-fibronectin-motif-promotes-healing-of-full-thickness-burn-wounds/</loc><lastmod>2022-11-25T12:35:23+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silkworm-silk-matrices-coated-with-functionalized-spider-silk-accelerate-healing-of-diabetic-wounds/</loc><lastmod>2022-11-25T12:45:56+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/scalable-production-of-monodisperse-bioactive-spider-silk-nanowires/</loc><lastmod>2023-01-30T13:16:56+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/silk-assembly-against-hydrophobic-surfaces%e2%94%80modeling-and-imaging-of-formation-of-nanofibrils/</loc><lastmod>2023-05-30T13:16:26+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/development-and-characterization-of-a-recombinant-silk-network-for-3d-culture-of-immortalized-and-fresh-tumor-derived-breast-cancer-cells/</loc><lastmod>2023-06-08T10:12:59+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/in-vitro-blood-brain-barrier-model-based-on-recombinant-spider-silk-protein-nanomembranes-for-evaluation-of-transcytosis-capability-of-biomolecules/</loc><lastmod>2023-06-08T10:13:38+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/self-assembly-of-rgd-functionalized-recombinant-spider-silk-protein-into-microspheres-in-physiological-buffer-and-in-the-presence-of-hyaluronic-acid/</loc><lastmod>2024-10-02T10:35:39+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/structural-conversion-of-the-spidroin-c-terminal-domain-during-assembly-of-spider-silk-fibers/</loc><lastmod>2024-10-02T10:37:11+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/standalone-single-and-bi-layered-human-skin-3d-models-supported-by-recombinant-silk-feature-native-spatial-organization/</loc><lastmod>2025-06-23T13:25:23+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/nanofibrillar-basement-membrane-mimic-made-of-recombinant-functionalized-spider-silk-in-custom-made-tissue-culture-inserts/</loc><lastmod>2024-11-25T14:32:38+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/site-specific-functionalization-of-recombinant-spider-silk-using-enzymatic-sortase-coupling/</loc><lastmod>2025-03-13T10:17:32+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/a-fibronectin-fn-silk-3d-cell-culture-model-as-a-screening-tool-for-repurposed-antifibrotic-drug-candidates-for-endometriosis/</loc><lastmod>2025-03-13T10:17:20+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/3d-culture-in-functionalized-fn-silk-networks-facilitate-proliferation-differentiation-and-phenotypic-stability-of-mature-human-primary-cells-and-stem-cells/</loc><lastmod>2025-09-22T14:03:12+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-functionalized-with-a-cd40-agonist-shows-improved-capability-to-activate-human-b-cells-in-vitro-a-novel-module-for-cancer-immunotherapy/</loc><lastmod>2025-09-22T14:06:39+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/recombinant-spider-silk-membranes-promote-human-renal-epithelial-differentiation-and-function/</loc><lastmod>2026-02-23T14:10:45+00:00</lastmod></url><url><loc>https://web.spiber.se/publications/an-optimized-protocol-for-efficient-derivation-of-pancreatic-islets-from-multiple-human-pluripotent-stem-cell-lines/</loc><lastmod>2026-04-20T11:51:56+00:00</lastmod></url></urlset>
