
Kaohsiung Medical University / Prof. Tian-Lu Cheng
Pain Points Solved
Technology Introduction
Methoxy polyethylene glycol (mPEG) nanomedicines (e.g., liposomes, micelles) are emerging as the third generation of innovative drugs. However, traditional chemical modifications for attaching antibodies to PEG-NPs often result in heterogeneity, limiting clinical applications. We developed dual-function antibodies (BsAbs) that simultaneously recognize polyethylene glycol (PEG) and tumor antigens. the anti-PEG domain can non-covalently bind to the methoxy end of various PEG-NPs. This method overcomes the heterogeneity of chemical conjugation while enhancing tumor-targeting specificity, effectively targeting tumors overexpressing HER2, EGFR, and CD20. We established a PEG×HER-expressing CHO-S cell line and demonstrated that PEG-NPs (e.g., Lipo-DOX) modified with dual-function antibodies using a one-step process maintained stability and tumor specificity. This approach significantly improved tumor drug accumulation and therapeutic efficacy, even against doxorubicin and Herceptin-resistant tumors, with no severe toxicity observed in animal models.
Key Advantages:
1. One-Step Modification: Streamlined process for antibody conjugation. 2. Tumor-Specific Targeting: Enhances targeting accuracy of PEG-NPs. 3. Low Immunogenicity: Minimizes immune response risks. 4. Antigen Versatility. It also supports targeting emerging tumor antigens, offering vast potential for future cancer treatments.

Figure 1. Humanized Bispecific Antibody (mPEG × Tumor Marker) Enhances Tumor Specificity and Improves Nanodrug Efficacy Against Drug-Resistant Breast Cancer
Application Examples
Related Links
None
Patent Name and Number
TW I560201、TW I653244、TW I677506、TW I742283
US 10,188,742、US 11,040,111、US 11,369,690、US 16/615,822
CN 3713675、CN 5525981
EP 3126398、EP 3725812
JP 6447887
KR 10-1971770
SG 11201606791Y
Industry-Academia / Tech Transfer Partner
None
Honors and Awards
None
Technical Contact
Mr. Hung, Assistant Manager
Kaohsiung Medical University
Tel: +886 7-3121101 ext. 2360
Email: R121084@kmu.edu.tw