Ocular Delivery of Therapeutic Proteins: A Review
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MDPI
Abstract
Therapeutic proteins, including monoclonal antibodies, single chain variable fragment
(ScFv), crystallizable fragment (Fc), and fragment antigen binding (Fab), have accounted for one-third
of all drugs on the world market. In particular, these medicines have been widely used in ocular
therapies in the treatment of various diseases, such as age-related macular degeneration, corneal
neovascularization, diabetic retinopathy, and retinal vein occlusion. However, the formulation of
these biomacromolecules is challenging due to their high molecular weight, complex structure,
instability, short half-life, enzymatic degradation, and immunogenicity, which leads to the failure
of therapies. Various efforts have been made to overcome the ocular barriers, providing effective
delivery of therapeutic proteins, such as altering the protein structure or including it in new delivery
systems. These strategies are not only cost-effective and beneficial to patients but have also been
shown to allow for fewer drug side effects. In this review, we discuss several factors that affect
the design of formulations and the delivery of therapeutic proteins to ocular tissues, such as the
use of injectable micro/nanocarriers, hydrogels, implants, iontophoresis, cell-based therapy, and
combination techniques. In addition, other approaches are briefly discussed, related to the structural
modification of these proteins, improving their bioavailability in the posterior segments of the eye
without affecting their stability. Future research should be conducted toward the development
of more effective, stable, noninvasive, and cost-effective formulations for the ocular delivery of
therapeutic proteins. In addition, more insights into preclinical to clinical translation are needed.
