Mesoporous peptide frameworks engineered from crystallizable collagen-mimetic peptide amphiphiles

A Anthony R. Perez J Jianfang Liu S S M Mobin Sikder A Anjan Maity A Adekunle Adewole J Jacob Oakden G Gang Ren B Bercem Dutagaci A Andrea D. Merg

Abstract

Abstract The rational design of porous frameworks with tunable pore dimensions and chemical functionalities is a critical step toward their implementation in diverse applications. While traditional porous materials are typically constructed from abiotic components, there is increasing interest in employing biologically derived building blocks ( e.g ., peptides and proteins) that offer unmatched structural and functional diversity. Here, we report the construction of crystalline mesoporous frameworks that are self-assembled from amphiphilic collagen-mimetic peptides. Comprehensive structural characterization via microscopy, spectroscopy, and computational techniques provides insights into the assembly packing model, in which hexagonally packed channels are interconnected by antiparallel-aligned collagen triple helices via hydrophobic and electrostatic interactions. Lastly, we demonstrate the functional potential of aCMP frameworks through the encapsulation of various molecular guests, including doxorubicin, an anti-cancer drug. Overall, this work establishes a class of mesoporous frameworks, derived from synthetically engineerable peptide conjugates, marking a significant step forward in broadening the architectural scope and application potential of peptide-based materials.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 15, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

A

Anthony R. Perez

J

Jianfang Liu

S

S M Mobin Sikder

A

Anjan Maity

A

Adekunle Adewole

J

Jacob Oakden

G

Gang Ren

B

Bercem Dutagaci

A

Andrea D. Merg