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Honeybee silk proteins can be produced at high levels in recombinant systems, fabricated into materials, and are tolerant of amino acid modifications: properties that make them exciting templates for designing new functional materials. Here, we explore the properties of materials either made from silk-antimicrobial peptide (AMP) fusion proteins or silk containing entrapped AMPs or silver nanoparticles. Inclusion of AMP within the silk protein sequence did not affect our ability to express the proteins or process them into films. When AMP-silk proteins and cells were coincubated in solution, a reduction in cell numbers was observed after degradation of the chimeric protein to release a truncated version of the AMP. In films, the AMP was retained in the silk with leaching rates of <1% per day. Films containing silver nanoparticles were antimicrobial, with the silk preventing aggregation of nanoparticles and slowing the rate of dissolution of the particles.
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http://dx.doi.org/10.1021/acsomega.7b00694 | DOI Listing |
Open Res Eur
July 2025
University of Copenhagen, Globe Institute, 1353 Copenhagen, Øster Farimagsgade 5, Denmark.
Background: Natural history museum specimens of historical honey bees have been successfully used to explore the genomic past of the honey bee, indicating fast and rapid changes between historical and modern specimens, possibly as a response to current challenges. In our study we explore a potential untapped archive from natural history collections - specimens relating to historical beeswax.
Methods: We examine an queen cell specimen from the 19th century.
Protein Sci
August 2025
Health & Biosecurity Research Unit, CSIRO, Canberra, Australian Capital Territory, Australia.
Coiled coil structures, first proposed by Crick in the 1950s, are protein structural motifs found across diverse biological systems. Honeybee silk was among the earliest identified coiled coils, with X-ray diffraction studies in the 1960s revealing its characteristic helical packing. Decades of research have provided insights into silk composition and formation, yet the molecular details of its coiled coil assembly and final structure remained unresolved.
View Article and Find Full Text PDFVet Res Forum
January 2025
Department of Honeybee, Silk Worm and Wildlife Diseases, Razi Vaccine and Serum Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.
Cell-surface proteins of were purified using a simple method. Bacterial cultures were centrifuged and agitated vigorously in phosphate buffered saline with or without further glycine treatment and ammonium sulfate precipitation. Rabbits were immunized subcutaneously with a blackleg disease vaccine twice with a two-week interval.
View Article and Find Full Text PDFPLoS One
May 2025
Department of Biology, Utah State University, Logan, Utah, USA.
Silk, a remarkable protein-based fiber spun by various arthropod lineages, has been prized for millennia, with the cocoon silk of domesticated silkworms and spiders being the most utilized and extensively studied. There is limited information on how silk can be used to investigate biology, development, and health in other silk-producing species, particularly for solitary bees such as Osmia lignaria Say (Hymenoptera: Megachilidae). Osmia lignaria, an increasingly managed solitary pollinator, produces silk cocoons during the fifth instar larval stage.
View Article and Find Full Text PDFIntegr Environ Assess Manag
May 2025
Office of Pest Management Policy, United States Department of Agriculture, Washington, District of Columbia, United States.
Pesticides are widely used around the world and have demonstrated benefits to crop production. However, pesticides have also been associated with negative impacts to nontarget organisms, including pollinators. Here, we combined pesticide usage and toxicity data to create a toxicity index, which shows that pesticide hazard to honeybees (Apis mellifera) has changed substantially in U.
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