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Updated: Jun 11, 2026

Identification and Characterization of Protein Glycosylation using Specific Endo- and Exoglycosidases
Published on: December 26, 2011
Hyperglycosylated hCG, a review
1USA hCG Reference Service, Department of Obstetrics and Gynecology, University of New Mexico, Health Sciences Center, MSC10-5580, 1 University of New Mexico, Albuquerque, NM 87131, USA. larry@hcglab.com
Insights
Hyperglycosylated hCG (hCG-H), a distinct molecule from hCG, plays crucial roles in pregnancy and trophoblast function. Monoclonal antibody B152 enables hCG-H detection for various clinical applications.
Area of Science:
- Reproductive biology
- Glycoprotein research
- Immunodiagnostics
Background:
- Human chorionic gonadotropin (hCG) and hyperglycosylated hCG (hCG-H) are distinct glycoproteins with differing structures and functions.
- hCG-H, produced by extravillous cytotrophoblast cells, differs significantly in its oligosaccharide structure and molecular weight compared to hCG.
- hCG-H plays vital roles in trophoblast invasion, placental implantation, and pregnancy maintenance, separate from hCG's functions.
Purpose of the Study:
- To highlight the unique biological functions of hCG-H.
- To introduce monoclonal antibody B152 as a specific binder for hCG-H.
- To explore the diagnostic and prognostic applications of hCG-H detection in various pregnancy-related conditions and diseases.
Main Methods:
- Characterization of hCG-H structure and molecular weight.
- Identification of monoclonal antibody B152's specific binding to hCG-H.
- Development and application of immunometric assays utilizing B152 for hCG-H detection.
Main Results:
- hCG-H has significantly larger and more complex oligosaccharide chains than hCG.
- Monoclonal antibody B152 uniquely binds to hCG-H, enabling its specific detection.
- hCG-H detection assays can be used for pregnancy detection, management of gestational trophoblastic diseases, Down syndrome screening, and prediction of pregnancy complications.
Conclusions:
- hCG-H is a critical molecule with distinct functions in reproduction and pregnancy.
- Monoclonal antibody B152-based assays offer a versatile tool for various obstetric and gynecologic diagnostics.
- hCG-H testing provides valuable insights for managing pregnancy complications and gynecologic conditions.
Abstract:
Hyperglycosylated hCG (hCG-H) is a glycoprotein with the same polypeptide structure as hCG, and much larger N- and O-linked oligosaccharides. The oligosaccharides increase the molecular weight of hCG from 36,000 - 37,000 u to 40,000 - 41,000 u, depending on the extent of hyperglycosylation. hCG-H has triantennary N-linked oligosaccharides and double molecular size O-linked oligosaccharides (hexasaccharide compared with predominantly trisaccharide structures). hCG is produced by syncytiotrophoblast cells while hCG-H is made by extravillous cytotrophoblast cells. hCG-H promotes trophoblast invasion during choriocarcinoma, growth of cytotrophoblast cells and placental implantation in pregnancy. hCG-H is an independent molecule to hCG with totally separate biological functions. hCG has numerous functions during pregnancy, it promotes progesterone production, promotes angiogenesis in uterine vasculature, immuno-suppresses the invading placental tissue, promotes the growth of the uterus in line with the growth of the fetus during pregnancy, promotes the differentiation of growing cytotrophoblast cells, promotes the quiescence of contractions in the uterine myometrium during the course of pregnancy, and also has function in growth and development of fetal organs. Monoclonal antibody B152 uniquely binds hCG-H. Using this monoclonal antibody in immunometric assays permits detection of pregnancy. It also permits management of gestational trophoblastic diseases and detection of quiescent gestational trophoblastic disease. This same test can be used to differentiate of aggressive and minimally-aggressive gestational trophoblastic disease, and discrimination of patients that respond to chemotherapy and who are chemorefractory. The hCG-H test can be used to screen for Down syndrome pregnancies and predict patients likely to generate hypertensive disorder in pregnancy. It also can be used to differentiate pregnancies that will miscarry and pregnancies that will go to term.
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