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Collagen Nanostructure

Type I Collagen Self-Assembly: The Roles of Substrate and Concentration

Type I Collagen Self-Assembly: The Roles of Substrate and Concentration

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M. Fang, E. Goldstein, E. K. Matich, B. G. Orr, M. M. Banaszak Holl.
Langmuir
2013,
29,
2330-2338.

Nanoscale Structure of type I collagen fibrils: Quantitative measurement of D-spacing

Nanoscale Structure of type I collagen fibrils:  Quantitative measurement of D-spacing

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B. Erickson, M. Fang, J. M. Wallace, B. G. Orr, C. M. Les, M. M. Banaszak Holl.
Biotechnology Journal
2013,
8,
117-126.

Type I Collagen D-spacing in Fibril Bundles of Dermis, Tendon, and Bone: Bridging Between Nano- and Micro-level Tissue Hierarch

Type I Collagen D-spacing in Fibril Bundles of Dermis, Tendon, and Bone: Bridging Between Nano- and Micro-level Tissue Hierarchy

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M. Fang, E. Goldstein, A. S. Turner, C. M. Les, B. G. Orr, G.J. Fisher, K. A. Welch, E. D. Rothman, M. M. Banaszak Holl.
ACS Nano
2012,
6,
9503-9514.

Estrogen Depletion Results in Nanoscale Morphology Changes in Dermal Collagen

Estrogen Depletion Results in Nanoscale Morphology Changes in Dermal Collagen

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M. Fang, K. G. Liroff, A. S. Turner, C. M. Les, B. G. Orr, M. M. Banaszak Holl.
Journal of Investigative Dermatology
2012,
132,
1791-1797.

The severity of osteogenesis imperfecta

The severity of osteogenesis imperfecta: A comparison to the relative free energy differences of collagen model peptides

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K.-H. Lee, K. Kuczera, M. M. Banaszak Holl.
Biopolymers
2011,
95,
182-193.

Nanoscale morphology of Type I collagen is altered in the Brtl mouse model of Osteogenesis Imperfecta

Nanoscale morphology of Type I collagen is altered in the Brtl mouse model of Osteogenesis Imperfecta

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J. M. Wallace, B. G. Orr, J. C. Marini, M. M. Banaszak Holl.
Journal of Structural Biology
2011,
173,
146-152.

Effect of osteogenesis imperfecta mutations on free energy of collagen model peptides: A molecular dynamics simulation

Effect of osteogenesis imperfecta mutations on free energy of collagen model peptides: A molecular dynamics simulation

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K.-H. Lee, K. Kuczera, M. M. Banaszak Holl.
Biophysical Chemistry
2011,
156,
146-152.

Free Energy Simulation to Investigate the Effect of Amino Acid Sequence Environment on the Severity of Osteogenesis Imperfecta b

Free Energy Simulation to Investigate the Effect of Amino Acid Sequence Environment on the Severity of Osteogenesis Imperfecta by Glycine Mutations in Collagen.
K.-H. Lee and M. M. Banaszak Holl.
Biopolymers
2011,
95,
401-409.

Type 1 Collagen Exists as a Distribution of Nanoscale Morphologies in Teeth, Bones, and Tendons

Type 1 Collagen Exists as a Distribution of Nanoscale Morphologies in Teeth, Bones, and Tendons

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J. M. Wallace, Q. Chen, M. Fang, B. Erickson, B. G. Orr, M. M. Banaszak Holl.
Langmuir
2010,
26,
7349-7354.

Distribution of type I collagen morphologies in bone: Relation to estrogen depletion

Distribution of type I collagen morphologies in bone: Relation to estrogen depletion

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J. M. Wallace, B. Erickson, C. M. Les, B. G. Orr, M. M. Banaszak Holl.
Bone
2010,
46,
1349-1354.