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Anna Risings forskargrupp

Our research is mainly focused on using spider silk technology for various ̽»¨¾«Ñ¡ applications.

En grupp glada människor i en trappa framför en byggnad.
Anna Rising's group. In the picture: Benjamin Schmuck, Frederic Riviere, Anna Rising, Johan Reimegård, Gabriele Greco, Viktoria Langwallner, Tomas Bohn Pessatti, Olga Shilkova, Urmimala Chatterjee and Sumalata Sonavane.
Biomimetic spinning of artificial spider silk

Our research

We use spider silk technology for bio̽»¨¾«Ñ¡ applications. One line of our research concerns making artificial spider silk fibers and hydrogels for use in regenerative medicine. We have successfully cultured a large number of different human stem cells on our scaffolds and shown that the cells van be differentiated in the three-dimensional environment of the spider silk scaffold.

Another line of research is focused on the development of large-scale production methods for making artificial silk fibers for the fiber industry. The silk fibers we produce are sustainable and can be spun without the use of harsh solvents and high temperatures, unlike widely used petroleum-based fibers.

A third line of research concerns the use of a spider silk protein domain for efficient production of proteins and peptides. This technology can be used to produce valuable proteins but also to immobilize these in the hydrogels or fibers – thereby making bioactive materials.  

Our lab is located at ̽»¨¾«Ñ¡ and at the ).

Formation of artificial spider silk

Artificial spider silk reeled

The videos above are from Andersson, Jia et al., Nat Chem Biol. 2017.

Biomimetic spinning

The video above is from Schmuck et al. Materials Today. 2021.

Some of our research problems

  • Will we be able to mimic the mechanical properties in natural spider silk fibers, in artificially made spider silk fibers? 
  • Will we be able to replace damaged tissues and organs by using artificially produced spider silk as implants?
  • Will we be able to produce valuable and aggregation prone proteins with low solubility by using Nature's own solubility increasing domain (NT)?

News from the group

Publikationer

Utvalda publikationer

  • Review: CHEMICAL REVIEWS. 2023;123(5):2155-2199
    Rising A; Harrington MJ
  • Article: NATURE COMMUNICATIONS. 2022;13(1):4695
    Arndt T; Jaudzems K; Shilkova O; Francis J; Johansson M; Laity PR; Sahin C; Chatterjee U; Kronqvist N; Barajas-Ledesma E; Kumar R; Chen G; Stromberg R; Abelein A; Langton M; Landreh M; Barth A; Holland C; Johansson J; Rising A
  • Article: ADVANCED FUNCTIONAL MATERIALS. 2022;32(23):2200986
    Arndt T; Greco G; Schmuck B; Bunz J; Shilkova O; Francis J; Pugno NM; Jaudzems K; Barth A; Johansson J; Rising A
  • Article: MATERIALS TODAY. 2021;50:16-23
    Schmuck B; Greco G; Barth A; Pugno NM; Johansson J; Rising A
  • Article: ACS NANO. 2021;15(2):1952-1959
    Johansson J; Rising A
  • Article: ACS BIOMATERIALS SCIENCE & ENGINEERING. 2021;7(2):462-471
    Arndt T; Laity PR; Johansson J; Holland C; Rising A
  • Journal article: COMMUNICATIONS MATERIALS. 2021;2(1):43
    Greco G; Arndt T; Schmuck B; Francis J; Backlund FG; Shilkova O; Barth A; Gonska N; Seisenbaeva G; Kessler V; Johansson J; Pugno NM; Rising A
  • Article: BIOMACROMOLECULES. 2020;21(6):2116-2124
    Gonska N; Lopez PA; Lozano-Picazo P; Thorpe M; Guinea GV; Johansson J; Barth A; Perez-Rigueiro J; Rising A
  • Article: SCIENTIFIC REPORTS. 2020;10(1):235
    Abelein A; Chen G; Kitoka K; Aleksis R; Oleskovs F; Sarr M; Landreh M; Pahnke J; Nordling K; Kronqvist N; Jaudzems K; Rising A; Johansson J; Biverstal H
  • Article: RESPIRATORY RESEARCH. 2019;20(1):245
    Ahlstrom JZ; Massaro F; Mikolka P; Feinstein R; Perchiazzi G; Basabe-Burgos O; Curstedt T; Larsson A; Johansson J; Rising A
  • Article: ANGEWANDTE CHEMIE-INTERNATIONAL EDITION. 2017;56(41):12571-12575
    Otikovs M; Andersson M; Jia Q; Nordling K; Meng Q; Andreas LB; Pintacuda G; Johansson J; Rising A; Jaudzems K
  • Article: NATURE COMMUNICATIONS. 2017;8:15504
    Kronqvist N; Sarr M; Lindqvist A; Nordling K; Otikovs M; Venturi L; Pioselli B; Purhonen P; Landreh M; Biverstal H; Toleikis Z; Sjoberg L; Robinson CV; Pelizzi N; Jornvall H; Hebert H; Jaudzems K; Curstedt T; Rising A; Johansson J
  • Article: NATURE CHEMICAL BIOLOGY. 2017;13(3):262-264
    Andersson M; Jia Q; Abella A; Lee X-Y; Landreh M; Purhonen P; Hebert H; Tenje M; Robinson CV; Meng Q; Plaza GR; Johansson J; Rising A
  • Article: NATURE CHEMICAL BIOLOGY. 2015;11(5):309-315
    Rising A; Johansson J
  • Article: BIOMATERIALS. 2014;35(30):8496-8502
    Wu S; Johansson J; Damdimopoulou P; Shahsavani M; Falk A; Hovatta O; Rising A
  • Article: PLOS BIOLOGY. 2014;12(8):e1001921
    Andersson M; Chen G; Otikovs M; Landreh M; Nordling K; Kronqvist N; Westermark P; Jornvall H; Knight S; Ridderstrale Y; Holm L; Meng Q; Jaudzems K; Chesler M; Johansson J; Rising A
  • Review: ACTA BIOMATERIALIA. 2014;10(4):1627-1631
    Rising A
  • Article: BIOMATERIALS. 2012;33(31):7712-7717
    Lewicka M; Hermanson O; Rising AU

Medarbetare och kontakt

Gruppledare

Alla medarbetare i gruppen

Part of the group that works outside of KI:

Sumalata Sonavane, PhD student, SLU
Viktoria Langwallner, PhD student, SLU
Gabriele Greco, Postdoc, SLU
Tomas Bohn Pessatti, Postdoc, SLU

Johan Reimegård, consultant, NBIS, SciLife Lab

Nyckelord:
Biomaterialvetenskap Medicinsk bioteknologi (Inriktn. mot cellbiologi (inkl. stamcellsbiologi), molekylärbiologi, mikrobiologi, biokemi eller biofarmaci)
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Karin Vikström
2025-04-01