Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers

Research output: Contribution to journalJournal articleResearchpeer-review

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Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers. / Afzelius, Pia; Alstrup, Aage Kristian Olsen; Nielsen, Ole Lerberg; Nielsen, Karin Michaelsen; Jensen, Svend Borup.

In: Molecules, Vol. 25, No. 18, 2020, p. 4329.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Afzelius, P, Alstrup, AKO, Nielsen, OL, Nielsen, KM & Jensen, SB 2020, 'Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers', Molecules, vol. 25, no. 18, pp. 4329. https://doi.org/10.3390/molecules25184329

APA

Afzelius, P., Alstrup, A. K. O., Nielsen, O. L., Nielsen, K. M., & Jensen, S. B. (2020). Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers. Molecules, 25(18), 4329. https://doi.org/10.3390/molecules25184329

Vancouver

Afzelius P, Alstrup AKO, Nielsen OL, Nielsen KM, Jensen SB. Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers. Molecules. 2020;25(18):4329. https://doi.org/10.3390/molecules25184329

Author

Afzelius, Pia ; Alstrup, Aage Kristian Olsen ; Nielsen, Ole Lerberg ; Nielsen, Karin Michaelsen ; Jensen, Svend Borup. / Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers. In: Molecules. 2020 ; Vol. 25, No. 18. pp. 4329.

Bibtex

@article{7fcd33f520554ed4824ae8d2dc805aef,
title = "Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers",
abstract = "Background [18F]FDG Positron Emission Tomography cannot differentiate between sterile inflammation and infection. Therefore, we, aimed to develop more specific radiotracers fitted for differentiation between sterile and septic infection to improve the diagnostic accuracy. Consequently, the clinicians can refine the treatment of, for example, prosthesis-related infection.METHODS: We examined different target points; Staphylococcus aureus biofilm (68Ga-labeled DOTA-K-A9 and DOTA-GSGK-A11), bone remodeling ([18F]NaF), bacterial cell membranes ([68Ga]Ga-Ubiquicidin), and leukocyte trafficking ([68Ga]Ga-DOTA-Siglec-9). We compared them to the well-known glucose metabolism marker [18F]FDG, in a well-established juvenile S. aureus induced osteomyelitis (OM) pig model.RESULTS: [18F]FDG accumulated in the OM lesions seven days after bacterial inoculation, but disappointingly we were not able to identify any tracer accumulation in OM with any of the supposedly more specific tracers.CONCLUSION: These negative results are, however, relevant to report as they may save other research groups from conducting the same animal experiments and provide a platform for developing and evaluating other new potential tracers or protocol instead.",
author = "Pia Afzelius and Alstrup, {Aage Kristian Olsen} and Nielsen, {Ole Lerberg} and Nielsen, {Karin Michaelsen} and Jensen, {Svend Borup}",
year = "2020",
doi = "10.3390/molecules25184329",
language = "English",
volume = "25",
pages = "4329",
journal = "Molecules",
issn = "1420-3049",
publisher = "M D P I AG",
number = "18",

}

RIS

TY - JOUR

T1 - Attempts to Target Staphylococcus aureus Induced Osteomyelitis Bone Lesions in a Juvenile Pig Model by Using Radiotracers

AU - Afzelius, Pia

AU - Alstrup, Aage Kristian Olsen

AU - Nielsen, Ole Lerberg

AU - Nielsen, Karin Michaelsen

AU - Jensen, Svend Borup

PY - 2020

Y1 - 2020

N2 - Background [18F]FDG Positron Emission Tomography cannot differentiate between sterile inflammation and infection. Therefore, we, aimed to develop more specific radiotracers fitted for differentiation between sterile and septic infection to improve the diagnostic accuracy. Consequently, the clinicians can refine the treatment of, for example, prosthesis-related infection.METHODS: We examined different target points; Staphylococcus aureus biofilm (68Ga-labeled DOTA-K-A9 and DOTA-GSGK-A11), bone remodeling ([18F]NaF), bacterial cell membranes ([68Ga]Ga-Ubiquicidin), and leukocyte trafficking ([68Ga]Ga-DOTA-Siglec-9). We compared them to the well-known glucose metabolism marker [18F]FDG, in a well-established juvenile S. aureus induced osteomyelitis (OM) pig model.RESULTS: [18F]FDG accumulated in the OM lesions seven days after bacterial inoculation, but disappointingly we were not able to identify any tracer accumulation in OM with any of the supposedly more specific tracers.CONCLUSION: These negative results are, however, relevant to report as they may save other research groups from conducting the same animal experiments and provide a platform for developing and evaluating other new potential tracers or protocol instead.

AB - Background [18F]FDG Positron Emission Tomography cannot differentiate between sterile inflammation and infection. Therefore, we, aimed to develop more specific radiotracers fitted for differentiation between sterile and septic infection to improve the diagnostic accuracy. Consequently, the clinicians can refine the treatment of, for example, prosthesis-related infection.METHODS: We examined different target points; Staphylococcus aureus biofilm (68Ga-labeled DOTA-K-A9 and DOTA-GSGK-A11), bone remodeling ([18F]NaF), bacterial cell membranes ([68Ga]Ga-Ubiquicidin), and leukocyte trafficking ([68Ga]Ga-DOTA-Siglec-9). We compared them to the well-known glucose metabolism marker [18F]FDG, in a well-established juvenile S. aureus induced osteomyelitis (OM) pig model.RESULTS: [18F]FDG accumulated in the OM lesions seven days after bacterial inoculation, but disappointingly we were not able to identify any tracer accumulation in OM with any of the supposedly more specific tracers.CONCLUSION: These negative results are, however, relevant to report as they may save other research groups from conducting the same animal experiments and provide a platform for developing and evaluating other new potential tracers or protocol instead.

U2 - 10.3390/molecules25184329

DO - 10.3390/molecules25184329

M3 - Journal article

C2 - 32967275

VL - 25

SP - 4329

JO - Molecules

JF - Molecules

SN - 1420-3049

IS - 18

ER -

ID: 249062986