Publications by authors named "R Wacke"

Background: Isavuconazole is a triazole antifungal agent for treatment of invasive aspergillosis and mucormycosis. At present, it is unclear whether a therapeutic drug monitoring (TDM) of isavuconazole would be necessary. The aim of the investigation was to validate a high-performance liquid chromatography (HPLC) assay for routine applications.

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Article Synopsis
  • Everolimus (RAD001) was studied as a calcineurin inhibitor-free immunosuppressant in dogs undergoing nonmyeloablative hematopoietic stem cell transplantation (HSCT), combining it with mycophenolate mofetil (MMF).
  • Despite successful engraftment in all dogs, 63% rejected their grafts, and two dogs died from infections within a month post-transplant.
  • The combination therapy showed increased toxicities, including longer platelet recovery and a higher incidence of infections compared to a traditional cyclosporin A/MMF regimen.
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Everolimus (RAD001) is an mTOR inhibitor that has been successfully used as an immunosuppressant in solid-organ transplantation. Data in allogeneic hematopoietic stem cell transplantation (HSCT) is limited. This study aimed to investigate pharmacokinetics, safety, and efficacy of RAD001 in a canine allogeneic HSCT model.

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Purpose: The suitability of a high-hydrophilic osmotic self-inflating hydrogel expander consisting of a co-polymer of N-vinylpyrolidone and methyl methacrylate as a drug delivery system for antibiotics to prevent a postoperative infection was investigated in a laboratory setting.

Methods: The dry expanders were incubated in a 0.3 % solution of Ofloxacin or Tobramycin for 24 hours.

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Objective: High-hydrophilic osmotic self-inflating hydro gel expanders are well-accepted for implantation to achieve tissue expansion in defined parts of the body like skin, breast and orbital soft tissue. To prevent post-implantation infections effective antibiotic prophylaxis might be helpful. The suitability of this hydro gel consisting of a co-polymer of N-vinyl-pyrolidone and methyl-methacrylate as a drug delivery system for antibiotics was investigated in a laboratory setting simulating the orbit in a newborn.

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