Clinical trials

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Search and review clinical trials. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

A Single-Center Clinical Study to Evaluate the Efficacy and Safety of Autologous Urine-Derived Epithelial Cells in the Treatment of Corneal Endothelial Cell Dysfunction

Corneal endothelial cell dysfunction is usually a corneal disease caused by damage or loss of corneal endothelial cells. It is characterized by corneal edema, opacity, and subepithelial bullae, leading to pain, blurred vision, or even blindness. Conventional treatments usually involve allogeneic corneal transplantation or corneal endothelial transplantation. Anterior chamber cell transplantation is a breakthrough treatment for corneal endothelial diseases developed in recent years. Autologous urine-derived epithelial cells greatly reduce the risk of immune rejection and the use of anti-rejection drugs, avoiding reliance on and waiting for corneal donors.

Participants needed: 3
Trial details
Age: 18-85Biological sex: AllType: InterventionalSponsor: Suxia LiUpdated: Jun 26, 2026Locations: 1
Eligibility criteria

Patients diagnosed with corneal endothelial cell dysfunction, including those wi... [+3]

Patients with unexplained keratoconjunctival diseases. [+14]

Status: Not yet recruiting

A Single-Center Clinical Study to Evaluate the Efficacy and Safety of Sutureless Ophthalmic Hydrogel for Corneal Wound Repair

Corneal blindness is one of the leading causes of blindness worldwide. For various infectious and non-infectious corneal diseases, current clinical repair strategies include corneal lesion debridement, conjunctival flap coverage, amniotic membrane transplantation, corneal transplantation, contact lens application, and injectable sealants. Injectable hydrogels, as smart materials that transition from a liquid precursor to a solid gel in response to external stimuli (e.g., light, temperature, or chemical cross-linking), enable precise filling of corneal defects via minimally invasive injection. They offer superior morphological adaptability, conforming tightly to irregular wound surfaces and achieving sutureless closure. Moreover, they promote regenerative repair of the epithelium, stroma, and nerves, significantly reducing patient discomfort, infection risk, recovery time, and healthcare costs, thereby advancing the paradigm of corneal repair from "transplant substitution" to "in situ regeneration."

Participants needed: 30
Trial details
Age: 18-85Biological sex: AllType: InterventionalSponsor: Suxia LiUpdated: Jun 10, 2026
Eligibility criteria

Patients with corneal stromal defects, including those caused by trauma or follo... [+2]

Patients with unexplained keratoconjunctival diseases. [+9]

Status: Not yet recruiting

A Single-Center Clinical Study to Evaluate the Efficacy and Safety of a Suture-Free Ophthalmic Hydrogel for Ocular Surface Tissue Adhesion

When severe ocular surface lesions occur (e.g., pterygium, corneal ulcer, ocular surface burn, etc.), the currently clinically common surgical procedures such as conjunctival flap coverage, amniotic membrane transplantation, and keratoplasty are primarily fixed by suturing. However, suturing has numerous drawbacks. On the one hand, the suturing process causes additional mechanical damage to ocular surface tissues, triggers local inflammatory responses, and increases postoperative discomfort such as pain and foreign body sensation. Moreover, uneven suture tension is prone to cause conjunctival flap shrinkage or displacement, impairing the repair effect. On the other hand, postoperative suture irritation continuously activates fibroblast proliferation, leading to excessive deposition of subconjunctival collagen and the formation of dense scar tissue, which in turn compromises the stability of the ocular surface tear film and visual quality. This study intends to develop a suture-free ophthalmic hydrogel for conjunctival flap adhesion. By combining the natural biological activity of decellularized porcine corneal matrix with the photocrosslinking properties of GelMA, and integrating low-energy visible light (465nm) curing technology, the hydrogel enables rapid, firm, and suture-free adhesion of conjunctival flaps.

Participants needed: 20
Trial details
Age: 18-85Biological sex: AllType: InterventionalSponsor: Suxia LiUpdated: May 27, 2026Locations: 1
Eligibility criteria

Patients with ocular surface diseases (e.g., pterygium, corneal ulcer, ocular su... [+3]

A history of allergy to the components of the suture-free ophthalmic hydrogel (e... [+5]