A Design-Conversed Strategy Establishes the Performance Safe Space for Doxorubicin Nanosimilars.

Nagpal, Shakti; Png Yi Jie, Jordan; Malinovskaya, Julia; Kovshova, Tatyana; Jain, Pankaj; Naik, Sachin; Khopade, Ajay; Bhowmick, Subhas et al. · ACS Nano · 2024

basic_science · Level V

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Abstract

Nanomedicines exhibit multifaceted performances, yet their biopharmaceutics remain poorly understood and present several challenges in the translation from preclinical to clinical research. To address this issue and promote the production of high-quality nanomedicines, a systematic screening of the design space and <i>in vivo</i> performance is necessary. Establishing formulation performance specifications early on enables an informed selection of candidates and promotes the development of nanosimilars. The deconvolution of the pharmacokinetics enables the identification of key characteristics that influence their performances and disposition. Using an <i>in vitro-in vivo</i> rank-order relationship for doxorubicin nanoformulations, we defined <i>in vitro</i> release specifications for Doxil/Caelyx-like follow-on products. Additionally, our model predictions were used to establish the bioequivalence of Lipodox, a nanosimilar of Doxil/Caelyx. Furthermore, a virtual safe space was established, providing crucial insights into expected disposition kinetics and informing formulation development. By addressing bottlenecks in biopharmaceutics and formulation screening, our research advances the translation of nanomedicine from bench to bedside.

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