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NCT Number: NCT07750392

THE ROLE OF DRY NEEDLING THERAPY AND LOW-LEVEL LASER MICROCURRENT ELECTRICAL STIMULATION ON SERUM LEVELS OF TNF-α AND MALONDIALDEHYDE IN MYOFACIAL PAIN SYNDROME

This study aims to evaluate the effectiveness of dry needling and Low-Level Laser Microcurrent Electrical Stimulation (LL MCES) in patients with acute upper trapezius myofascial pain syndrome (MPS) by assessing both biological and clinical outcomes. Specifically, it investigates whether these interventions reduce serum levels of the inflammatory biomarker tumor necrosis factor-alpha (TNF-α) and the oxidative stress biomarker malondialdehyde (MDA), while also improving pain intensity and neck-related disability. The study seeks to address the current knowledge gap regarding the relationship between changes in inflammatory and oxidative stress biomarkers and clinical improvement following these non-pharmacological treatments. The primary research question is: Do dry needling and LL MCES reduce serum TNF-α and MDA levels and improve clinical outcomes in patients with acute upper trapezius myofascial pain syndrome?

Participants will:

Be randomly assigned to receive dry needling, LL MCES, combined dry needling and LL MCES, or sham dry needling.

Receive treatment according to the assigned intervention protocol. Undergo blood sampling before and after the intervention to measure serum TNF-α and MDA levels.

Complete assessments of pain intensity using the Numerical Pain Rating Scale (NPRS) and neck-related disability using the Neck Disability Index (NDI) before and after treatment.

Attend scheduled follow-up visits for clinical evaluation and outcome assessment.

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Key information

Age range

20 year–45 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Udayana University

Denpasar, Bali, Indonesia

Location status: Recruiting

Location contact

I Putu Eka Widyadharma

CONTACT

[email protected]

+62 812-3787-2840

I Putu Eka Widyadharma, MD, PhD

PRINCIPAL_INVESTIGATOR

Ida Ayu Sri Wijayanti, MD, PhD

SUB_INVESTIGATOR

Vincent Wijaya, MD

SUB_INVESTIGATOR

About this study

Myofascial pain syndrome (MPS) is a common musculoskeletal pain disorder characterized by the presence of myofascial trigger points within skeletal muscle, resulting in localized and referred pain, reduced range of motion, and functional impairment. Acute upper trapezius MPS is associated with activation of inflammatory pathways and oxidative stress, including increased production of pro-inflammatory cytokines such as tumor necrosis factor-alpha (TNF-α) and lipid peroxidation products such as malondialdehyde (MDA). These biological processes contribute to peripheral sensitization and may play an important role in the development and persistence of pain.

Dry needling is a minimally invasive intervention that targets myofascial trigger points through insertion of a solid filiform needle to elicit mechanical and neurophysiological responses. Proposed mechanisms include normalization of dysfunctional motor end plates, improvement of local blood flow, reduction of inflammatory mediators, and modulation of peripheral nociceptive input. Low-Level Laser Microcurrent Electrical Stimulation (LL MCES) is a non-pharmacological modality that combines low-level laser therapy with microcurrent electrical stimulation to promote cellular repair, enhance adenosine triphosphate (ATP) production, improve tissue regeneration, and reduce inflammatory activity. Although both interventions have demonstrated clinical benefits in patients with MPS, evidence comparing their effects on systemic inflammatory and oxidative stress biomarkers remains limited.

This study is designed to investigate the biological mechanisms underlying the therapeutic effects of dry needling and LL MCES by evaluating changes in serum TNF-α and MDA concentrations following treatment. Clinical outcomes will be examined concurrently to explore whether biomarker modulation is associated with improvements in pain and functional disability. By integrating objective laboratory measures with patient-reported clinical outcomes, the study aims to provide insight into the pathophysiological mechanisms of treatment response in acute upper trapezius MPS.

The study will employ a prospective randomized controlled design involving adults with acute upper trapezius MPS. Participants will be allocated to one of four intervention groups: dry needling alone, LL MCES alone, combined dry needling and LL MCES, or sham dry needling. Serum TNF-α and MDA levels will be measured before and after the intervention, together with standardized assessments of pain intensity and neck-related disability. The findings are expected to clarify whether biomarker changes parallel clinical improvement and to provide evidence supporting mechanism-based, non-pharmacological management strategies for acute myofascial pain syndrome.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Participants must meet all of the following criteria:

Adults aged 18 to 45 years. Clinical diagnosis of acute upper trapezius myofascial pain syndrome (MPS) with symptom duration of less than 1 month.

Presence of at least one active myofascial trigger point in the upper trapezius muscle confirmed by physical examination according to accepted diagnostic criteria (palpable taut band, hypersensitive trigger point, reproduction of the patient's typical pain, and/or local twitch response).

Moderate or greater neck pain (Numerical Pain Rating Scale [NPRS] ≥4). Willing and able to provide written informed consent and comply with study procedures.

Exclusion criteria

  • Participants meeting any of the following criteria will be excluded:

Previous dry needling or LL MCES treatment for the current episode of myofascial pain.

Chronic myofascial pain syndrome (symptom duration ≥1 month). Current use of systemic corticosteroids, nonsteroidal anti-inflammatory drugs (NSAIDs), or other medications that may significantly influence inflammatory biomarkers within the washout period specified in the protocol.

Previous surgery, fracture, or significant trauma involving the neck or shoulder region.

Cervical radiculopathy, cervical myelopathy, fibromyalgia, inflammatory arthritis, or other neurological or musculoskeletal disorders that could explain the symptoms.

Local skin infection, open wound, or other contraindications to dry needling or LL MCES.

Bleeding disorders, anticoagulant therapy, or other contraindications to needling.

Pregnancy or breastfeeding. Active malignancy, autoimmune disease, uncontrolled diabetes mellitus, acute infection, or other systemic inflammatory conditions.

History of severe psychiatric illness or inability to complete study assessments.

Participation in another interventional clinical trial within the previous 30 days.

Treatment and study plan

dry needle

Device

Dry needling is performed using a sterile disposable filiform needle inserted into identified active trigger points of the upper trapezius muscle. The needle is manipulated to elicit a local twitch response when possible, and the procedure is conducted by a trained physician following a standardized treatment protocol.

Low-Level Laser Microcurrent Electrical Stimulation

Device

Low-Level Laser Microcurrent Electrical Stimulation (LL MCES) LL MCES is delivered using a therapeutic device that combines low-level laser irradiation and microcurrent electrical stimulation. Treatment parameters, application sites, and duration are standardized across participants.

Sham Dry Needle

Device

A validated sham needling technique is used in which the procedure simulates dry needling while avoiding therapeutic penetration of the myofascial trigger point. The duration and treatment setting are matched to the active dry needling intervention.

Primary outcomes

  1. Change in Serum Malondialdehyde (MDA) Concentration

    Time frame: Baseline and 3 days after completion of the intervention.

    Change in serum malondialdehyde (MDA) concentration from baseline to post-intervention measured using ELISA. Results will be expressed in nmol/mL. A greater reduction indicates improvement in oxidative stress.

  2. Change in Serum Tumor Necrosis Factor-Alpha (TNF-α) Concentration

    Time frame: Baseline and 3 days after completion of the intervention.

    Change in serum TNF-α concentration from baseline to post-intervention measured using enzyme-linked immunosorbent assay (ELISA). Results will be expressed in pg/mL. A greater reduction indicates improvement in systemic inflammatory activity.

Study contacts

Contact information is provided by the study sponsor or research team.

I Putu Eka Widyadharma, MD, PhD

CONTACT

[email protected]

+62 812-3787-2840

Sponsors and collaborators

Lead sponsor

Udayana University

Other

Registry information

Important dates

Study start
2026
Primary completion
2026
Study completion
2027
First posted
Aug 6, 2026
Registry last updated
Aug 6, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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