Neurological Disorders

Step into a new era of healing at Infinity Stem Cells, where cutting-edge science meets the body’s innate potential. Our advanced cell regeneration therapies, centered on mesenchymal stem cells (MSCs), harness the transformative power of cellular renewal to address a wide range of conditions, restoring vitality and igniting wellness from within.

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Neurological Disorders

Biologic therapies for neurological disorders are designed to support nerve regeneration, reduce harmful inflammation in the nervous system, and enhance brain and spinal cord function. These regenerative approaches target both acute injuries and chronic neurodegenerative conditions, offering an emerging alternative to conventional therapies.

Common Conditions Treated

  • Stroke – Restoration support after reduced blood flow damages brain tissue

  • Traumatic Brain Injury (TBI) – Repair and recovery after head trauma

  • Spinal Cord Injury – Regeneration of damaged nerve pathways to improve function

  • Neurodegenerative Diseases – Supportive therapy for conditions such as Parkinson’s and Alzheimer’s

  • Multiple Sclerosis (MS) – Immune modulation to reduce attacks on the nervous system

Treatment Modalities

Mesenchymal Stem Cell (MSC) Therapy

  • Uses clinically sourced MSCs to encourage neurogenesis (new neuron formation) and replace damaged cells

  • Exosome Therapy

  • MSC-derived exosomes deliver neuroprotective factors and modulate immune activity, aiding in repair and

  • functional recovery

Candidate Selection

Inclusion Criteria

  • Patients with neurological impairments from injury or degenerative disease

  • Those with stable chronic deficits who are medically fit for regenerative therapy

Exclusion Criteria

  • Active central nervous system infections

  • Brain or spinal tumors/malignancies

  • Severe uncontrolled systemic illness

Procedure Overview

Preparation

  • Informed consent: Emphasize current evidence, experimental nature, benefits, and risks

  • Neuroimaging: MRI or CT to identify treatment targets

Administration

  • Intrathecal injection – Direct delivery into cerebrospinal fluid for targeted neuroregeneration

  • Intravenous infusion – Systemic approach for widespread neuroprotection

Post-Treatment Care

  • Close monitoring for neurological changes or unexpected reactions

  • Rehabilitation plan including physical therapy, occupational therapy, and cognitive exercises as appropriate

  • Gradual return to activity, guided by physician recommendations

Supporting Research

  • Neural Stem Cell-Derived Exosomes in Neuroregeneration – Evidence of exosome potential in nerve repair (Stem Cell Research)

  • MSC-Derived Exosomes in Neurological Disorders – Overview of applications in neurodegeneration and recovery (Biological Research)

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