Skip to content
Research Article Open access CC BY 4.0

Advanced Treatment of Type 1 Diabetes with Teplizumab: Mechanism and Clinical Efficacy

Tejas Chavan, Suresh Waghamare, Shubham Kokare, Aniruddha Madake

Asian Journal of Medical Principles and Clinical Practice · pp. 1–11 · Published 4 Jan 2025

10.9734/ajmpcp/2025/v8i1262

Abstract

Teplizumab, a humanized anti-CD3 monoclonal antibody, has emerged as a significant advancement in the treatment of type 1 diabetes (T1D), an autoimmune disease characterized by the destruction of insulin-producing pancreatic beta cells. As the first FDA-approved disease-modifying drug for T1D, teplizumab has demonstrated efficacy in delaying the onset of stage 3 T1D in adults and pediatric patients 8 years and older with stage 2 T1D. Clinical trials have shown that teplizumab can preserve beta cell function, reduce insulin requirements, and improve glycemic control in newly diagnosed T1D patients. The drug's mechanism of action involves modulating the immune response responsible for beta cell destruction by altering the function of T-lymphocytes, inducing regulatory T cells, and promoting the accumulation of exhausted-like CD8 T cells. Teplizumab's efficacy appears to be influenced by factors such as the microbiome and the induction of partially exhausted CD8 T cells, which exhibit reduced secretion of inflammatory cytokines. While teplizumab has shown promise in preserving beta cell function and delaying T1D onset, challenges remain in optimizing treatment protocols and addressing potential side effects, including lymphopenia and skin disorders. Future research directions include exploring combination therapies, identifying predictive biomarkers, and refining patient selection to maximize treatment outcomes. Teplizumab's success in T1D has implications for the broader field of immunotherapy in autoimmune diseases, demonstrating the potential of targeted immunomodulation in altering disease.

Teplizumab type 1 diabetes autoimmune disease beta cells FDA-approved disease-modifying drug delayed onset preserved beta cell function modulating immune response immunotherapy

Cited by 1

1 citation reported by external sources — individual citing-article records aren't available to list yet.

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

1

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.