Biomimetic Model Systems for Investigating the Amorphous Precursor Pathway and Its Role in Biomineralization [PDF]
Laurie B. Gower
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Biomineralization of semiconductor quantum dots using DNA-functionalized protein nanoreactors. [PDF]
Han Z, Guo AX, Luo T, Cai T, Mirkin CA.
europepmc +1 more source
Thermotolerant class A acid phosphatase active across broad pH range and diverse substrates
Abstract M2‐32 is a non‐specific acid phosphatase with a rare ability to function across a broad pH range (3.5–8.5). Analysis using SWISS‐PROT Prf Profiles classifies it as a class A acid phosphatase (Z‐score: 78.97), sharing 50%–60% sequence similarity with enzymes such as PhoC and PhoN.
Maria‐Isabel Recio+7 more
wiley +1 more source
Confocal Laser Raman Microspectroscopy of Biomineralization Foci in UMR 106 Osteoblastic Cultures Reveals Temporally Synchronized Protein Changes Preceding and Accompanying Mineral Crystal Deposition [PDF]
Chuanyi Wang+7 more
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ABSTRACT The development of multifunctional injectable biomaterials that serve as frameworks for tissue neo‐deposition and promote dentin regeneration through resident dental pulp cells represents an innovative approach in regenerative dentistry. This study presents an injectable system based on a photocrosslinkable hydrogel, functionalized with a drug
Erika S. Bronze‐Uhle+10 more
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In-depth single-cell transcriptomic exploration of the regenerative dynamics in stony coral. [PDF]
Han T, Li Y, Zhao H, Chen J, He C, Lu Z.
europepmc +1 more source
“Writing” Crystal Phases in Amorphous Calcium Carbonate via Laser‐Induced Patterned Transformations
Laser‐induced crystallization enabling the patterning of amorphous calcium carbonate into various distinct phases is introduced. This approach provides spatial control over polymorph selection, both crystalline and amorphous, inspired by biomineralization pathways.
Hadar Shaked+6 more
wiley +1 more source
Population-level control of two manganese oxidases expands the niche for bacterial manganese biomineralization. [PDF]
Gehin G+3 more
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Topology in Biological Piezoelectric Materials
This review summarizes the topological structures in biological piezoelectric materials, covering morphology evolution, spatial arrangement, and biomimetic strategies. These topologies modulate structure‐property relationships across multiple scales, enabling performance enhancement and multifunctional integration.
Chen Chen+7 more
wiley +1 more source