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Ashton C. Praska, PharmD (Twitter @ashpraka) describes tetracycline resistance mechanisms utilized by bacteria, identifies how Omadacycline/Eravacycline can overcome common tetracycline resistance mechanisms and identifies clinical scenarios where Omadacycline/Eravacycline could be considered for use.
For more pharmacy content, follow Mayo Clinic Pharmacy Residency Programs @MayoPharmRes or the host, Garrett E. Schramm, Pharm.D., @garrett_schramm on Twitter!
You can also connect with the Mayo Clinic’s School of Continuous Professional Development online at https://ce.mayo.edu/ or on Twitter @MayoMedEd.
By Mayo Clinic4.6
4545 ratings
Ashton C. Praska, PharmD (Twitter @ashpraka) describes tetracycline resistance mechanisms utilized by bacteria, identifies how Omadacycline/Eravacycline can overcome common tetracycline resistance mechanisms and identifies clinical scenarios where Omadacycline/Eravacycline could be considered for use.
For more pharmacy content, follow Mayo Clinic Pharmacy Residency Programs @MayoPharmRes or the host, Garrett E. Schramm, Pharm.D., @garrett_schramm on Twitter!
You can also connect with the Mayo Clinic’s School of Continuous Professional Development online at https://ce.mayo.edu/ or on Twitter @MayoMedEd.

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