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Palmitoylethanolamide Modulates Central Sensitisation and Neuroinflammation in Chronic Low Back Pain

17 de agosto de 2026 actualizado por: Hager Essam Nasrallah, Beni-Suef University

Palmitoylethanolamide Modulates Central Sensitisation and Neuroinflammation in Chronic Low Back Pain: A Randomized Controlled Trial With Neurophysiological and Biomarker Correlates

Low back pain (LBP) is a public and occupational health problem that is a major professional, economic and social burden. Up to 84% of the general population will experience an episode of LBP during its life time, and recurrence rates are high. Acute LBP is the second reason for consultations in general medicine, and chronic LBP is the eighth. One in five LBP episodes result in sick leave. LBP represents 30% of sick leaves that are longer than 6 months, and 20% of work accidents. LBP has become the leading cause of exclusion from work before the age of 45, and the third cause of work disabilities in France.

In 2020 globally, LBP affected approximately 619 million people, making it the leading cause of disability worldwide. This number is projected to rise to 843 million by 2050, driven by population growth and aging.

Descripción general del estudio

Estado

Reclutamiento

Condiciones

Intervención / Tratamiento

Descripción detallada

Chronic LBP is a heterogenous condition with mixed nociceptive and neuropathic components in many patients. Mechanisms that sustain chronicity include ongoing peripheral nociceptor sensitization, neuroimmune activation (mast cells, microglia), and maladaptive central nervous system plasticity (altered cortical excitability, changes in descending modulatory systems).

Pro-inflammatory cytokines such as TNF-α and IL-1β have been implicated in maintenance of peripheral and central sensitization and the transition from acute to chronic pain. Measuring an inflammatory biomarker (e.g., serum TNF-α) alongside clinical pain and neurophysiological markers can therefore help test an anti-neuroinflammatory treatment hypothesis.

Today's management of chronic LBP includes analgesics (paracetamol), non-steroidal anti-inflammatory drugs, antidepressants, anticonvulsants, opioids, and topical treatments , with oral agents recommended as first-line therapy. Analgesics and non-steroidal anti-inflammatory drugs target the nociceptive component of LBP without affecting neuropathic pain components, while opioids target both nociceptive and (to a lesser degree) neuropathic pain, and antidepressants target only the neuropathic component, although data concerning their efficacy is conflicting.

Analgesics and non-steroidal anti-inflammatory drugs target the nociceptive component of LBP without affecting neuropathic pain components, while opioids target both nociceptive and (to a lesser degree) neuropathic pain, and antidepressants target only the neuropathic component, although data concerning their efficacy is conflicting.

Although relieving neuropathic pain to some extent, classical opioid analgesics suffer from frequent side effects, particularly at the gastrointestinal level that limit their long-term use. An innovative approach in the management of chronic pain diseases is represented by palmitoylethanolamide (PEA), a member of the N-acylethanolamine family, produced by most mammalian cells and which is particularly abundant in brain tissues.

PEA is involved in endogenous protective mechanisms activated by stimulation of inflammatory responses. PEA exerts its effects on cellular targets involved in the generation and maintenance of pain by down-modulating mast cell activation and controlling microglial cell behaviors.

PEA acts through several complementary mechanisms that are relevant to chronic pain: PEA is a ligand of peroxisome proliferator-activated receptor alpha (PPAR-α); activation has anti-inflammatory and analgesic consequences., Mast cell stabilization / Autacoid Local Inflammation Antagonism (ALIA) mechanism: PEA reduces mast cell degranulation and local release of pro-nociceptive mediators, historically described as ALIA. Indirect endocannabinoid-modulating effects: PEA can indirectly modulate the endocannabinoid system, contributing to analgesia without psychotropic effects. Biomarkers can be used to aid diagnosis, clarify disease pathophysiology, classify the extent of a disease, indicate disease prognosis, and predict or monitor the disease over time and in response to interventions.

Central sensitization is defined by the International Association for the Study of Pain (IASP) as an increased responsiveness of nociceptive neurons in the central nervous system to their normal or subthreshold afferent input . Historically, the discovery that injury at peripheral tissues induces hyperexcitability of spinal cord nociceptive neurons has prompted a massive research effort that has consistently confirmed enhanced responsiveness of central nociceptive pathways with different animal models.

One proposed biomarker for assessing CNS pathophysiology in chronic pain is transcranial magnetic stimulation (TMS). TMS uses electromagnetic induction to noninvasively generate an electrical current in the brain.TMS involves a high-current pulse generator that discharges an electrical current of several thousand amperes through an insulated metal stimulating coil for a period of < 1ms, generating a brief and focal magnetic field of approximately 1 to 2 Tesla-].

When the coil is placed on an individual's scalp overlying the primary motor cortex (M1), the magnetic field can induce an intracortical electric current sufficient to depolarize superficial corticospinal neurons and activate a target muscle leading to a measurable electromyographic responseThe neurotransmitters involved in various TMS-evoked measurements have been well characterized thus making TMS a putative biomarker for the study of chronic pain.

Mechanistic link between TNF-α and TMS measures:Neuroinflammation, characterized by elevated levels of proinflammatory cytokines such as tumor necrosis factor-alpha (TNF-α), can profoundly influence cortical excitability. TNF-α modulates synaptic transmission by enhancing AMPA receptor trafficking to the postsynaptic membrane and reducing GABA_A receptor surface expression, leading to an imbalance between excitatory and inhibitory neurotransmission.

This cytokine-driven shift toward hyperexcitability alters the functional state of intracortical circuits. Transcranial magnetic stimulation (TMS) provides a noninvasive means to quantify these changes: short-interval intracortical inhibition (SICI) reflects GABA_A-mediated inhibitory tone, while intracortical facilitation (ICF) reflects glutamatergic excitatory activity.

Tipo de estudio

Intervencionista

Inscripción (Estimado)

106

Fase

  • No aplica

Contactos y Ubicaciones

Esta sección proporciona los datos de contacto de quienes realizan el estudio e información sobre dónde se lleva a cabo este estudio.

Estudio Contacto

Copia de seguridad de contactos de estudio

  • Nombre: Wael Fathy Hassan, M.D

Ubicaciones de estudio

      • Banī Suwayf, Egipto
        • Reclutamiento
        • Beni Suef University Hospital
        • Contacto:
          • Mohamed Abdelbadie Ali, Lecturer
        • Contacto:
          • Marwa Abd elsalam khames Elgaly, Lecturer

Criterios de participación

Los investigadores buscan personas que se ajusten a una determinada descripción, denominada criterio de elegibilidad. Algunos ejemplos de estos criterios son el estado de salud general de una persona o tratamientos previos.

Criterio de elegibilidad

Edades elegibles para estudiar

  • Adulto
  • Adulto Mayor

Acepta Voluntarios Saludables

No

Descripción

Inclusion Criteria:

  • With chronic pain (more than 3 months)
  • Patients with NRS (4 -7)
  • MRI evidence of disc protrusion or prolapse limited to one or two lumbar discs, without extensive multi-level pathology
  • Diagnosed clinically with low back pain due to disc disease.
  • ASA I and ASA II

Exclusion Criteria:

  • Neurological disorders
  • psychiatric illness
  • pregnancy
  • prior spinal surgery
  • concurrent use of immunomodulatory drugs
  • contraindications to TMS.
  • Allergy to the drug

Plan de estudios

Esta sección proporciona detalles del plan de estudio, incluido cómo está diseñado el estudio y qué mide el estudio.

¿Cómo está diseñado el estudio?

Detalles de diseño

  • Propósito principal: Tratamiento
  • Asignación: Aleatorizado
  • Modelo Intervencionista: Asignación paralela
  • Enmascaramiento: Ninguno (etiqueta abierta)

Armas e Intervenciones

Grupo de participantes/brazo
Intervención / Tratamiento
Comparador activo: Micronized Palmitoylethanolamide Group
About 53 patients suffering from low back pain will receive Micronized Palmitoylethanolamide 600 mg tablets orally twice daily with the traditional treatment (NSAIDs, muscle relaxant and gabapentin): and physiotherapy for 6 months.
to evaluate the effect of PEA and traditional treatment versus traditional treatment alone for the patiens with chronic low back pain on pain intensity, disability and patient satisfaction at baseline, 3 months, and 6 months.
Otros nombres:
  • traditional treatment
Comparador activo: Control group
About 53 patients suffering from low back pain will receive Traditional treatment (NSAIDs, Muscle relaxant, gabapentin) and physiotherapy.
to evaluate the effect of PEA and traditional treatment versus traditional treatment alone for the patiens with chronic low back pain on pain intensity, disability and patient satisfaction at baseline, 3 months, and 6 months.
Otros nombres:
  • traditional treatment

¿Qué mide el estudio?

Medidas de resultado primarias

Medida de resultado
Medida Descripción
Periodo de tiempo
Treatment of Chronic Low Back Pain
Periodo de tiempo: 6 Months
Number of Participants With Treatment by adjunctive Palmitoylethanolamide Assessed by reducing pain intensity from baseline to 3 months and 6 months following treatment initiation, as measured by the Numeric Rating Scale (NRS). NRS ranges from 0 = no pain to 10 = worst imaginable pain.
6 Months

Colaboradores e Investigadores

Aquí es donde encontrará personas y organizaciones involucradas en este estudio.

Patrocinador

Investigadores

  • Silla de estudio: Hatem Elmoutaz Mahmoud, M.D, Professor of Anaesthesiology,Surgical intensive care and pain management,Faculty of medicine

Fechas de registro del estudio

Estas fechas rastrean el progreso del registro del estudio y los envíos de resultados resumidos a ClinicalTrials.gov. Los registros del estudio y los resultados informados son revisados ​​por la Biblioteca Nacional de Medicina (NLM) para asegurarse de que cumplan con los estándares de control de calidad específicos antes de publicarlos en el sitio web público.

Fechas importantes del estudio

Inicio del estudio (Actual)

1 de enero de 2026

Finalización primaria (Estimado)

1 de junio de 2027

Finalización del estudio (Estimado)

10 de junio de 2027

Fechas de registro del estudio

Enviado por primera vez

12 de agosto de 2026

Primero enviado que cumplió con los criterios de control de calidad

17 de agosto de 2026

Publicado por primera vez (Actual)

19 de agosto de 2026

Actualizaciones de registros de estudio

Última actualización publicada (Actual)

19 de agosto de 2026

Última actualización enviada que cumplió con los criterios de control de calidad

17 de agosto de 2026

Última verificación

1 de enero de 2026

Más información

Términos relacionados con este estudio

Términos MeSH relevantes adicionales

Otros números de identificación del estudio

  • Chronic Low Back Pain

Información sobre medicamentos y dispositivos, documentos del estudio

Estudia un producto farmacéutico regulado por la FDA de EE. UU.

No

Estudia un producto de dispositivo regulado por la FDA de EE. UU.

No

Esta información se obtuvo directamente del sitio web clinicaltrials.gov sin cambios. Si tiene alguna solicitud para cambiar, eliminar o actualizar los detalles de su estudio, comuníquese con register@clinicaltrials.gov. Tan pronto como se implemente un cambio en clinicaltrials.gov, también se actualizará automáticamente en nuestro sitio web. .

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