person

Thibaud M.

Country
France
Department
Ophthalmology Department

Research Overview

Data & Insights

medical_services
Primary Speciality
Main therapeutic area

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Return Partnerships
Recurring site collaborations
0
Sites with multiple studies

Has run more than one trial at 0 of 29 partner sites.

Specializations

Retinal Vascular Disorders

Investigator Thibaud Mathis focuses on therapeutic strategies for diseases that compromise retinal blood flow, such as diabetic macular edema and retinal vein occlusion.

  • Anti‑VEGF therapy optimization
  • Laser photocoagulation adjuncts
  • Intravitreal corticosteroid delivery

Clinical work emphasizes preserving visual acuity through targeted vascular modulation.

Degenerative Retinal Diseases

Research efforts address progressive loss of photoreceptors, notably in age‑related macular degeneration and inherited retinal dystrophies.

  • Complement pathway inhibition
  • Gene‑editing approaches
  • Neuroprotective agents

Therapeutic aim is to slow disease progression and maintain central vision.

Ocular Oncology

Within the ophthalmology unit, Mathis contributes to trials targeting malignancies of the eye, including uveal melanoma and intraocular lymphomas.

  • Targeted molecular inhibitors
  • Immunotherapy delivery
  • Localized radiotherapy protocols

Focus lies on improving tumor control while preserving ocular structures.

Inflammatory Ocular Conditions

Mathis investigates immune‑mediated eye diseases such as non‑infectious uveitis and ocular sarcoidosis.

  • Biologic cytokine blockade
  • Topical immunosuppressive formulations
  • Systemic steroid‑sparing regimens

Therapeutic goals include rapid inflammation control and prevention of sight‑threatening complications.

Vision Restoration Technologies

Advanced interventions explored by Mathis encompass retinal prostheses and gene‑therapy vectors for conditions like Leber congenital amaurosis.

  • Subretinal viral vector delivery
  • Electrophysiological stimulation devices
  • Optogenetic techniques

Efforts aim to re‑establish functional phototransduction in severely degenerated retinas.

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