scholarly journals A Systematic Approach to Evaluating Closed System Drug-Transfer Devices during Drug Product Development

Author(s):  
Sanket Patke ◽  
Erika Naumann Gaillat ◽  
Cesar Calero-Rubio ◽  
Tamera Gooding ◽  
Heloise Audat ◽  
...  
2021 ◽  
pp. 107815522110306
Author(s):  
Galit Levin ◽  
Paul JM Sessink

Purpose The purpose of this study was to test the efficacy of ChemfortTM, an air filtration closed-system drug transfer device to prevent release of chemotherapy drug vapors and aerosols under extreme conditions. The air cleaning system is based on the adsorption of drug vapors by an activated carbon filter in the Vial Adaptor before the air is released out of the drug vial. The functionality of the carbon filter was also tested at the end of device’s shelf life, and after a contact period with drug vapors for 7 days. Cyclophosphamide and 5-fluorouracil were the chemotherapy drugs tested. Methods The Vial Adaptor was attached to a drug vial and both were placed in a glass vessel. A needle was punctured through the vessel stopper and the Vial Adaptor septum to allow nitrogen gas to flow into the vial and to exit the vial via the air filter into the glass vessel which was connected to a cold trap. Potential contaminated surfaces in the trap system were wiped or rinsed to collect the escaped drug. Samples were analyzed using liquid chromatography tandem mass spectrometry. Results Cyclophosphamide and 5-fluorouracil were detected on most surfaces inside the trap system for all Vial Adaptors without an activated carbon filter. Contamination did not differ between the Vial Adaptors with and without membrane filter indicating no effect of the membrane filter. The results show no release of either drug for the Vial Adaptors with an activated carbon filter even after 3 years of simulated aging and 7 days of exposure to drug vapors. Conclusions Validation of air cleaning CSTDs is important to secure vapor and aerosol containment of chemotherapy and other hazardous drugs. The presented test method has proven to be appropriate for the validation of ChemfortTM Vial Adaptors. No release of cyclophosphamide and 5- fluorouracil was found even for Vial Adaptors after 3 years of simulated aging and 7 days of exposure to drug vapors.


Author(s):  
Yash Kapoor ◽  
Robert F. Meyer ◽  
Heidi M. Ferguson ◽  
Daniel Skomski ◽  
Pierre Daublain ◽  
...  

1997 ◽  
Vol 7 (1) ◽  
pp. 662-669 ◽  
Author(s):  
Stefan Wenzel ◽  
Thomas Bauch ◽  
Ernst Fricke ◽  
Herbert Negele

2021 ◽  
Vol 141 (1) ◽  
pp. 143-150
Author(s):  
Hiromasa Ishimaru ◽  
Yasumasa Tsuda ◽  
Hidenori Kage ◽  
Tomoaki Kawano ◽  
Shinji Takayama ◽  
...  

2021 ◽  
Vol 22 (3) ◽  
Author(s):  
Ashwin C. Parenky ◽  
Saurabh Wadhwa ◽  
Hunter H. Chen ◽  
Amardeep S. Bhalla ◽  
Kenneth S. Graham ◽  
...  

AbstractIntravitreal (IVT) administration of therapeutics is the standard of care for treatment of back-of-eye disorders. Although a common procedure performed by retinal specialists, IVT administration is associated with unique challenges related to drug product, device and the procedure, which may result in adverse events. Container closure configuration plays a crucial role in maintaining product stability, safety, and efficacy for the intended shelf-life. Careful design of primary container configuration is also important to accurately deliver small volumes (10-100 μL). Over- or under-dosing may lead to undesired adverse events or lack of efficacy resulting in unpredictable and variable clinical responses. IVT drug products have been traditionally presented in glass vials. However, pre-filled syringes offer a more convenient administration option by reducing the number of steps required for dose preparation there by potentially reducing the time demand on the healthcare providers. In addition to primary container selection, product development studies should focus on, among other things, primary container component characterization, material compatibility with the formulation, formulation stability, fill volume determination, extractables/leachables, and terminal sterilization. Ancillary components such as disposable syringes and needles must be carefully selected, and a detailed administration procedure that includes dosing instructions is required to ensure successful administration of the product. Despite significant efforts in improving the drug product and administration procedures, ocular safety concerns such as endophthalmitis, increased intraocular pressure, and presence of silicone floaters have been reported. A systematic review of available literature on container closure and devices for IVT administration can help guide successful product development.


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