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Updated: Jan 21, 2026

Generation of Monoclonal Antibodies Against Natural Products
Published on: April 6, 2019
Monoclonal Antibody Monitoring: Clinically Relevant Aspects, A Systematic Critical Review
Mario Regazzi1, Joseè Golay2,3, Mariadelfina Molinaro4
1S.I.F.E.B., Società Italiana di Farmacocinetica e Biofarmaceutica, Pavia.
Abstract:
Monoclonal antibody (mAb) therapy does not usually lead to a clinical response in all patients and resistance may increase over time after repeated mAb administration. This lack or loss of response to the treatment may originate from different and little-known epigenetic, biomolecular, or pathophysiological mechanisms, although an inadequate serum concentration is perhaps the most likely cause, even if not widely recognized and investigated yet. Patient factors that influence the pharmacokinetics (PK) of a mAb should be taken into account. Multiple analyses of patient-derived PK data have identified various factors influencing the clearance of mAbs. These factors include the presence of antidrug antibodies, low serum albumin, high serum levels of C-reactive protein, high body weight, and gender differences among others. The same clearance processes involved in systemic clearance after intravenous administration are also involved in local first-pass catabolism after subcutaneous administration of mAbs. Therapeutic drug monitoring has been proposed as a way to understand and respond to the variability in clinical response and remission. For both classes of mAbs with anti-inflammatory and antitumor effects, dose-guided optimization based on the measurement of serum concentrations in individual patients could be the next step for a personalized and targeted mAb therapy.
Insights
Monoclonal antibody (mAb) therapy response varies due to patient factors affecting drug levels. Optimizing mAb therapy through therapeutic drug monitoring can improve patient outcomes.
Area of Science:
- Pharmacology
- Immunology
- Clinical Medicine
Background:
- Monoclonal antibody (mAb) therapy exhibits variable clinical responses and resistance development.
- Mechanisms of non-response are diverse, including epigenetic, biomolecular, and pathophysiological factors.
- Inadequate serum drug concentration is a likely, yet understudied, cause of treatment failure.
Purpose of the Study:
- To investigate patient factors influencing monoclonal antibody pharmacokinetics.
- To highlight the significance of serum concentrations in mAb therapy efficacy.
- To propose therapeutic drug monitoring for personalized mAb treatment.
Main Methods:
- Analysis of patient-derived pharmacokinetic (PK) data.
- Identification of factors affecting mAb clearance.
- Review of systemic and local clearance processes.
Main Results:
- Patient factors like antidrug antibodies, low albumin, high C-reactive protein, body weight, and gender impact mAb clearance.
- Clearance mechanisms are consistent across intravenous and subcutaneous administration.
- Therapeutic drug monitoring (TDM) is proposed to manage response variability.
Conclusions:
- Individual patient factors significantly influence mAb pharmacokinetics and therapeutic efficacy.
- Measuring serum mAb concentrations can guide dose optimization for personalized therapy.
- Therapeutic drug monitoring represents a crucial step towards targeted and effective mAb treatments.
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