Learn about insulin resistance and how integrative chiropractic methods can support your journey to better health.

Insulin Resistance, Musculoskeletal Pain, and Integrative Chiropractic Care

Lipomas should be medically evaluated rather than assumed to be a direct consequence of insulin resistance, impaired autophagy, inflammation, or body weight. While metabolic dysfunction can influence adipose-tissue biology and overall health, current evidence does not show that insulin resistance causes lipomas or that chiropractic care, fasting, supplements, or exercise will dissolve them.

The more clinically supportable and useful connection is this: insulin resistance can affect muscles, tendons, joints, peripheral nerves, circulation, healing capacity, and pain sensitivity. Chiropractic care can play a meaningful role within an integrated, nonsurgical plan by helping restore movement, reduce mechanical pain barriers, and support participation in medically appropriate exercise and lifestyle treatment. It is not a stand-alone cure for insulin resistance or diabetes.

Understanding Insulin Resistance

Insulin is a hormone that helps move glucose from the bloodstream into tissues, especially skeletal muscle, where it can be used for energy or stored as glycogen. Insulin resistance occurs when muscle, liver, and fat tissue respond less effectively to insulin. The pancreas initially compensates by releasing more insulin; over time, this can progress to prediabetes or type 2 diabetes in some people.

Importantly, insulin resistance is not defined by appearance. A person can have a normal body weight and still have impaired insulin signaling, elevated fasting insulin, increased triglycerides, hypertension, fatty liver disease, sleep disruption, or reduced physical capacity. Conversely, body size alone does not diagnose metabolic dysfunction.

From a clinical perspective, insulin resistance matters because skeletal muscle is one of the body’s largest glucose-disposal organs. When pain, injury, fear of movement, weakness, or poor mobility limit physical activity, muscle glucose uptake can decline. That creates a difficult cycle:

  1. Pain reduces movement and exercise tolerance.
  2. Reduced movement can lower muscle conditioning and insulin sensitivity.
  3. Insulin resistance is associated with low-grade inflammation, altered tissue metabolism, and impaired recovery.
  4. Those changes can contribute to more pain, weakness, stiffness, and reduced activity.

Breaking that cycle requires both metabolic care and musculoskeletal rehabilitation.

Why Insulin Resistance Affects The Musculoskeletal System

Insulin resistance and chronic dysglycemia can influence musculoskeletal tissues through overlapping mechanisms: systemic inflammation, oxidative stress, altered microcirculation, accumulation of advanced glycation end products, changes in collagen remodeling, altered muscle metabolism, and nerve injury. These processes are biologically plausible contributors to pain and tissue dysfunction, but they do not prove that insulin resistance causes every painful condition.

Muscle Function and Strength

Skeletal muscle is central to glucose regulation. Resistance exercise and regular movement improve insulin sensitivity because contracting muscle can increase glucose uptake through pathways that are partly independent of insulin.

When insulin resistance, diabetes, inactivity, or chronic pain coexist, patients may experience:

  • Reduced muscle strength and endurance
  • Increased fatigue with ordinary activity
  • Slower recovery after exertion or injury
  • Reduced confidence with lifting, walking, stairs, squatting, or recreational exercise
  • Greater risk of deconditioning

Research has reported associations between insulin resistance, lower muscle strength, and osteoarthritis-related symptoms, including in people with type 2 diabetes and in metabolically healthy comparison groups (Fry et al., 2021). This does not mean insulin resistance alone causes weakness; age, pain severity, sleep, nutrition, neuropathy, medications, injury history, and training status all matter.

Tendons, Fascia, and Connective Tissue

Tendons depend on organized collagen, controlled loading, vascular supply, and cellular repair. Prolonged hyperglycemia and insulin-resistant metabolic states may adversely affect tendon-cell function, collagen turnover, and tissue resilience. This helps explain why tendinopathy and connective-tissue disorders are frequently discussed in the context of diabetes and metabolic disease.

Clinical examples include:

  • Achilles tendinopathy
  • Plantar heel pain or plantar fasciopathy
  • Rotator-cuff tendinopathy
  • Lateral elbow tendinopathy
  • Trigger finger
  • Carpal tunnel syndrome
  • Dupuytren disease
  • Adhesive capsulitis, also called frozen shoulder

Diabetes-related musculoskeletal reviews describe inflammation, glycation, oxidative stress, and impaired tendon homeostasis as relevant pathways in these conditions (Exploring the Intersection of Diabetes and Musculoskeletal Health, 2025). These associations support a broader clinical assessment of metabolic health when a person presents with recurrent tendon pain, unusual stiffness, slow recovery, or multiple connective-tissue complaints.

Joints and Osteoarthritis

Osteoarthritis is not simply “wear and tear.” Mechanical loading, prior joint injury, muscle weakness, age, genetics, inflammatory signaling, body composition, and metabolic health can all contribute.

Insulin resistance and osteoarthritis share several associated features, including low-grade inflammation and altered cellular energy metabolism. Metabolic signaling molecules from adipose tissue, known as adipokines, may affect cartilage and synovial tissues. High glucose exposure is also linked to pathways that can increase cartilage-matrix breakdown and impair tendon-cell biology (Insulin Resistance in Osteoarthritis: Similar Mechanisms to Type 2 Diabetes and Obesity, 2020).

This does not mean a painful knee or hip is “caused by insulin.” It means that a patient with osteoarthritis may benefit when clinicians assess the whole picture: joint mechanics, muscle capacity, activity tolerance, cardiometabolic risk, sleep, nutrition, body composition, and inflammatory comorbidities.

Peripheral Nerves and Pain Sensitivity

Persistent hyperglycemia can injure peripheral nerves and small blood vessels, contributing to diabetic peripheral neuropathy. Symptoms may include burning, tingling, numbness, hypersensitivity, altered balance, weakness, or painful symptoms in a stocking-and-glove distribution. Neuropathy can also change gait mechanics and increase fall risk, which may secondarily stress the spine, hips, knees, and feet.

Not all leg pain, foot burning, or numbness is neuropathy. Lumbar radiculopathy, spinal stenosis, entrapment neuropathy, vascular disease, medication effects, vitamin deficiencies, and other diagnoses must be considered. A focused neurologic and musculoskeletal examination is essential, especially when symptoms are progressive, asymmetric, accompanied by weakness, or associated with bowel or bladder changes.

Common Comorbidities

Insulin resistance often travels with conditions that can amplify pain and impair rehabilitation:

Comorbidity Musculoskeletal relevance
Obesity or central adiposity Increases mechanical loading and may amplify inflammatory signaling
Dyslipidemia Often clusters with cardiometabolic risk and impaired vascular health
Hypertension and vascular dysfunction May reduce tissue perfusion and exercise tolerance
Obstructive sleep apnea Worsens fatigue, pain sensitivity, recovery, and metabolic regulation
Depression, anxiety, and chronic stress Can increase pain sensitivity, reduce activity, and complicate adherence
Osteoarthritis Associated with weakness, reduced mobility, and metabolic inflammatory factors
Peripheral neuropathy Can affect balance, gait, foot integrity, and exercise safety
Fatty liver disease Often signals broader insulin-resistant metabolic dysfunction

The clinical implication is straightforward: don’t treat recurrent pain only as a local tissue problem, and don’t treat insulin resistance only as a laboratory-value problem. Both require a patient-specific, whole-person plan.

Where Chiropractic Care Fits

Chiropractic care can help address mechanical pain, restricted movement, joint stiffness, altered movement patterns, and functional limitations that interfere with physical activity. However, it should be presented accurately: spinal manipulation does not directly reverse insulin resistance, normalize insulin levels, cure diabetes, or replace evidence-based medical management.

Its potential value is practical. When pain or mobility limitations prevent a person from walking, strength training, working, sleeping, or participating in rehabilitation, appropriate conservative care may reduce barriers to movement.

The American College of Physicians recommends nonpharmacologic options including spinal manipulation and massage for acute or subacute low back pain. For chronic low back pain, the guideline recommends exercise and multidisciplinary rehabilitation as first-line approaches; it also includes spinal manipulation as an option, although the certainty of evidence for some outcomes is low (Qaseem et al., 2017).

At Injury Medical Clinic PA and the Mission Spine Treatment Clinic in El Paso, Dr. Alexander Jimenez, DC, APRN, FNP-BC, describes a clinical model centered on mobility, flexibility, agility, functional rehabilitation, nutritional support, and patient-specific noninvasive care. His clinical observations emphasize that pain care should move beyond short-term symptom suppression toward restoring functional capacity: the ability to walk, bend, lift, work, exercise, and return to meaningful activities. The clinic reports an integrated team of chiropractors, nutritionists, physicians, nurse practitioners, and rehabilitation staff, with services focused on injury care, sports wellness, nutritional protocols, and functional recovery.

Dr. Jimenez’s professional profile similarly describes evaluating movement and performance limitations, then integrating chiropractic management with functional rehabilitation, targeted nutrition, lifestyle management, and individualized conditioning programs.

A Clinically Responsible Chiropractic Role

For a patient with insulin resistance and musculoskeletal pain, chiropractic management may include:

  • Screening for red flags, neurologic deficits, vascular concerns, fracture risk, infection, inflammatory disease, and other conditions needing medical referral.
  • Evaluating posture, gait, joint range of motion, movement tolerance, muscle imbalance, lifting mechanics, and regional interdependence.
  • Using manual therapy or spinal manipulation, when indicated and appropriate, to address mechanical pain and mobility restrictions.
  • Prescribing progressive mobility, stabilization, and strengthening exercises.
  • Coaching graded exposure to walking, resistance training, work tasks, or recreational activity.
  • Coordinating with primary care, endocrinology, podiatry, physical therapy, nutrition professionals, and other clinicians when metabolic disease, neuropathy, or complex comorbidities are present.

The desired outcome is not merely a temporary reduction in pain. It is greater physical capacity, safer movement, and a better ability to participate in the interventions with the strongest evidence for improving insulin sensitivity: sustained physical activity, resistance exercise, nutritional change, adequate sleep, weight management when appropriate, and medical treatment when indicated.

Discovering the Benefits of Chiropractic Care | El Paso, Tx (2023)

An Integrated Nonsurgical Plan

The most useful clinical model combines conservative pain care with medically supervised metabolic care. The specific mix should be individualized according to symptoms, laboratory findings, medical history, medications, exercise tolerance, and patient goals.

Chiropractic Care and Physical Therapy

Chiropractic care and physical therapy complement each other when roles are clear. Manual treatment may help reduce pain and improve short-term mobility for some patients. At the same time, physical therapy provides progressive loading, motor-control retraining, balance work, gait retraining, and a structured return-to-activity program.

For insulin resistance, strength training is especially valuable because muscle is a major site of glucose disposal. A well-designed rehabilitation plan can begin below the patient’s pain threshold and advance gradually. Examples include:

  • Sit-to-stand training
  • Supported squats
  • Hip-hinge and lifting retraining
  • Step-ups or low-impact stair work
  • Resistance bands or light weights
  • Core stabilization and trunk endurance training
  • Walking intervals
  • Balance training for people with neuropathy or fall risk

The goal is sustainable capacity, not punishing exercise. Severe pain flares, neuropathy, cardiopulmonary disease, uncontrolled hypertension, foot ulcers, or unstable glucose levels warrant additional screening and individualized medical guidance.

Massage Therapy and Soft-Tissue Care

Massage therapy may help with short-term pain relief, relaxation, perceived muscle tension, and treatment adherence, particularly when pain and stress have reduced a patient’s willingness to move. For acute and subacute low back pain, massage is one of the non-drug options recognized in the ACP guideline (Qaseem et al., 2017).

Massage should not be described as “detoxifying” insulin resistance or breaking up metabolic disease. Its appropriate role is supportive: improving comfort, helping patients tolerate movement, and complementing active rehabilitation. It is generally most valuable when paired with an exercise and self-management plan rather than used as the only treatment.

Functional Wellness and Nutrition

Functional wellness should be evidence-informed, individualized, and integrated with primary medical care. A practical metabolic assessment may include:

  • Blood pressure and waist circumference
  • Fasting glucose and hemoglobin A1c
  • Lipid profile
  • Consideration of fasting insulin and HOMA-IR when clinically appropriate, recognizing these are not universal diagnostic standards.
  • Liver enzymes and assessment for fatty liver risk
  • Sleep quality and screening for sleep apnea
  • Medication review
  • Dietary pattern, alcohol intake, stress, and activity history
  • Foot examination and neurologic screening when diabetes or neuropathy is suspected

Nutrition should focus on an eating pattern the patient can sustain, not on a single “perfect” diet. The American Diabetes Association identifies evidence for several dietary approaches, including Mediterranean-style and lower-carbohydrate eating patterns, and emphasizes physical activity as part of cardiometabolic care.

For many patients, useful first steps include:

  • Replacing sugary beverages with water or unsweetened alternatives
  • Increasing minimally processed foods and dietary fiber
  • Building meals around vegetables, protein, legumes, whole grains as tolerated, and unsaturated fats
  • Reducing refined carbohydrates and highly processed snacks
  • Ensuring sufficient protein and overall nutrient intake, particularly during weight-loss efforts
  • Coordinating with the prescribing clinician before using glucose-lowering supplements or beginning fasting, especially when taking insulin, sulfonylureas, or other diabetes medications

Supplements such as berberine, magnesium, alpha-lipoic acid, chromium, curcumin, and others should not be portrayed as universally effective or harmless. They can interact with medications, alter glucose levels, and are not substitutes for medical diagnosis or treatment.

Medical Co-Management

A collaborative clinician should evaluate whether prescription therapy is appropriate. Depending on the diagnosis and individual risk profile, medical treatment may include medications for diabetes, hypertension, dyslipidemia, obesity, neuropathic pain, or other comorbidities.

Nonsurgical care does not mean avoiding medical care. It means using a coordinated, conservative approach first when clinically appropriate while promptly escalating evaluation for concerning symptoms or conditions that require specialist treatment.

A Practical Care Pathway

A patient with chronic low back pain, knee pain, shoulder stiffness, recurrent tendinopathy, fatigue, or suspected insulin resistance could follow this sequence:

  1. Establish the diagnosis. Confirm whether insulin resistance, prediabetes, diabetes, neuropathy, osteoarthritis, radiculopathy, inflammatory disease, or another condition is present.
  2. Identify pain barriers. Determine what prevents activity: spinal pain, hip weakness, balance impairment, fear of movement, foot symptoms, sleep loss, work demands, or poor recovery.
  3. Restore tolerable movement. Use a combination of education, chiropractic or manual care when appropriate, mobility work, soft-tissue treatment, and symptom-guided activity modification.
  4. Build muscle capacity. Progress toward supervised resistance training and aerobic activity in a way that respects pain, neurologic status, cardiovascular risk, and glucose-management needs.
  5. Address metabolic drivers. Coordinate nutrition, sleep, stress management, smoking cessation if applicable, medication optimization, and monitoring with the medical team.
  6. Measure outcomes. Track pain, walking tolerance, strength, sleep, waist circumference, A1c or glucose markers, blood pressure, work function, and quality of life rather than relying on symptoms alone.

Safety and Realistic Expectations

Seek urgent medical assessment for new or worsening weakness, saddle numbness, bowel or bladder dysfunction, fever, unexplained weight loss, severe night pain, a hot swollen joint, foot wounds, sudden loss of circulation, chest pain, or symptoms of markedly high or low blood glucose.

For lipomas specifically, a growing, painful, firm, fixed, deep, recurrent, or diagnostically uncertain mass should be evaluated by a qualified medical clinician. Imaging, biopsy, or surgical referral may be necessary to exclude other soft-tissue tumors. Surgical excision remains the standard definitive treatment for a symptomatic or concerning lipoma; metabolic optimization supports overall health but should not be promised to eliminate an established lipoma.

The central message is not that insulin resistance explains every pain condition, nor that chiropractic care replaces medical treatment. Pain, mobility, muscle health, metabolic regulation, and long-term function are closely connected. A coordinated plan that combines evidence-informed chiropractic care, physical therapy, massage when appropriate, progressive exercise, nutritional and lifestyle care, and medical oversight can help patients move better, participate more fully in metabolic treatment, and improve their quality of life.

References

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General Disclaimer *

Professional Scope of Practice *

The information herein on "Integrative Chiropractic Solutions to Reduce Insulin Resistance" is not intended to replace a one-on-one relationship with a qualified health care professional or licensed physician and is not medical advice. We encourage you to make healthcare decisions based on your research and partnership with a qualified healthcare professional.

Blog Information & Scope Discussions

Welcome to El Paso's Premier Wellness and Injury Care Clinic & Wellness Blog, where Dr. Alex Jimenez, DC, FNP-C, a Multi-State board-certified Family Practice Nurse Practitioner (FNP-BC) and Chiropractor (DC), presents insights on how our multidisciplinary team is dedicated to holistic healing and personalized care. Our practice aligns with evidence-based treatment protocols inspired by integrative medicine principles, similar to those found on this site and our family practice-based chiromed.com site, focusing on restoring health naturally for patients of all ages.

Our areas of multidisciplinary practice include  Wellness & Nutrition, Chronic Pain, Personal Injury, Auto Accident Care, Work Injuries, Back Injury, Low Back Pain, Neck Pain, Migraine Headaches, Sports Injuries, Severe Sciatica, Scoliosis, Complex Herniated Discs, Fibromyalgia, Chronic Pain, Complex Injuries, Stress Management, Functional Medicine Treatments, and in-scope care protocols.

Our information scope is multidisciplinary, focusing on musculoskeletal and physical medicine, wellness, contributing etiological viscerosomatic disturbances within clinical presentations, associated somato-visceral reflex clinical dynamics, subluxation complexes, sensitive health issues, and functional medicine articles, topics, and discussions.

We provide and present clinical collaboration with specialists from various disciplines. Each specialist is governed by their professional scope of practice and their jurisdiction of licensure. We use functional health & wellness protocols to treat and support care for musculoskeletal injuries or disorders.

Our videos, posts, topics, and insights address clinical matters and issues that are directly or indirectly related to our clinical scope of practice.

Our office has made a reasonable effort to provide supportive citations and has identified relevant research studies that support our posts. We provide copies of supporting research studies upon request to regulatory boards and the public.

We understand that we cover matters that require an additional explanation of how they may assist in a particular care plan or treatment protocol; therefore, to discuss the subject matter above further, please feel free to ask Dr. Alex Jimenez, DC, APRN, FNP-BC, or contact us at 915-850-0900.

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Blessings

Dr. Alex Jimenez DC, MSACP, APRN, FNP-BC*, CCST, IFMCP, CFMP, ATN

Email: [email protected]

Multidisciplinary Licensing & Board Certifications:

Licensed as a Doctor of Chiropractic (DC) in
Texas & New Mexico*

Chiropractic Licenses:
Texas DC License #: TX5807, Verified: TX5807
New Mexico DC License #: NM-DC2182, Verified: NM-DC2182

Nurse Practitioner Licenses:
Texas APRN License #: 1191402, Verified: 1191402 *
New Mexico CNP License #: 90560, Verified 90560
Florida APRN License #: 11043890, Verified: APRN11043890 *
Colorado License #: C-APN.0105610-C-NP, Verified: C-APN.0105610-C-NP
New York License #: N25929, Verified N25929
Georgia APRN License #: GAA-NP005701

Multi-State Advanced Practice Registered Nurse (APRN*) Texas & Multi-States 
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Compact Status: Multi-State License: Authorized to Practice in 43 States*
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ANCC FNP-BC: Board Certified Nurse Practitioner*

Education:
Graduate with Honors: ICHS: MSN-FNP (Family Nurse Practitioner Program)
Degree Granted. Master's in Family Practice, MSN Diploma (Cum Laude)


Dr. Alex Jimenez, DC, APRN, FNP-BC*, CFMP, IFMCP, ATN, CCST
(Board Certified: Family Practice Nurse Practitioner—Multistate)*
(Licensed Nurse Practitioner & Chiropractor - Multistate)*
Clinical Director
DC & FNP License (Review Above)
Digital Business Card
NPI: 1205907805

Dr. Maria Cardenas, MD
(Board Certified: Internal Medicine)
(Licensed Medical Doctor)
Medical Director, Clinical Director & Collaborative Physician
NPI # 1164426748
MD License #: J2933

 

Licenses and Board Certifications:

MD: Medical Doctor
DC: Doctor of Chiropractic
APRNP: Advanced Practice Registered Nurse 
FNP-BC: Family Practice Specialization (Multi-State Board Certified)
FNP-BC: Family Practice Across Life Span (Neonatal to Geriatrics)
RN: Registered Nurse (Multi-State Compact License)
CFMP: Certified Functional Medicine Provider
MSN-FNP: Master of Science in Family Practice Medicine
MSACP: Master of Science in Advanced Clinical Practice
IFMCP: Institute of Functional Medicine
CCST: Certified Chiropractic Spinal Trauma
ATN: Advanced Translational Neutrogenomics

 

Family with Primary Care Focus (Family Nurse Practitioner or FNP)

  • The Family Nurse Practitioner (FNP) promotes, maintains, and restores health for individuals and families across the lifespan. FNPs also identify health risks, promote wellness, and diagnose and manage acute and chronic illness.
  • The FNP focuses on comprehensive primary care, promoting healthy lifestyles for patients across the lifespan in settings such as private practice, physician offices, and community health centers.

 

Memberships & Associations:

TCA: Texas Chiropractic Association: Member ID: 104311
TNA: Texas Nurse Association: Member ID: 06458222
TNP: Texas Nurse Practitioner Association ID: 2025091511
AANP: American Association of Nurse Practitioners: Member ID: 2198960
ANA: American Nurses Association: Member ID: 06458222 (District TX01)

 

Primary Taxonomy Selected Taxonomy State License Number
No 111N00000X - Chiropractor NM DC2182
Yes 111N00000X - Chiropractor TX DC5807
Yes 363LF0000X - Nurse Practitioner - Family TX 1191402
Yes 363LF0000X - Nurse Practitioner - Family FL 11043890
Yes 363LF0000X - Nurse Practitioner - Family CO C-APN.0105610-C-NP
Yes 363LF0000X - Nurse Practitioner - Family NY N25929
Yes 363LF0000X - Nurse Practitioner - Family NM

90560

Yes 363LF0000X - Nurse Practitioner - Family GA GAA-NP005701

 

Dr. Alex Jimenez, DC, APRN, FNP-BC*, CFMP, IFMCP, ATN, CCST
(Board Certified: Family Practice Nurse Practitioner—Multistate)*
(Primary Care Across Lifespan—Neonatal / Pediatric / Adult / Geriatrics)
(Licensed Nurse Practitioner & Chiropractor - Multistate)*
Clinical Director
Digital Business Card
NPI: 1205907805

 

Dr. Maria Cardenas, MD
(Board Certified: Internal Medicine)*
(Licensed Medical Doctor)*
Medical Director, Clinical Director & Collaborative Physician
NPI # 1164426748
MD License #: J2933

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Dr Alexander D Jimenez DC, APRN, FNP-BC, CFMP, IFMCP
Specialties: Stopping the PAIN! We Specialize in Treating Severe Sciatica, Neck-Back Pain, Whiplash, Headaches, Knee Injuries, Sports Injuries, Dizziness, Poor Sleep, Arthritis. We use advanced proven therapies focused on optimal Mobility, Posture Control, Deep Health Instruction, Integrative & Functional Medicine, Functional Fitness, Chronic Degenerative Disorder Treatment Protocols, and Structural Conditioning. We also integrate Wellness Nutrition, Wellness Detoxification Protocols and Functional Medicine for chronic musculoskeletal disorders. We use effective "Patient Focused Diet Plans", Specialized Chiropractic Techniques, Mobility-Agility Training, Cross-Fit Protocols, and the Premier "PUSH Functional Fitness System" to treat patients suffering from various injuries and health problems. Ultimately, I am here to serve my patients and community as a Chiropractor passionately restoring functional life and facilitating living through increased mobility. Purpose & Passions: I am a Doctor of Chiropractic specializing in progressive cutting-edge therapies and functional rehabilitation procedures focused on clinical physiology, total health, functional strength training, functional medicine, and complete conditioning. We focus on restoring normal body functions after neck, back, spinal and soft tissue injuries. We use Specialized Chiropractic Protocols, Wellness Programs, Functional & Integrative Nutrition, Agility & Mobility Fitness Training and Cross-Fit Rehabilitation Systems for all ages. As an extension to dynamic rehabilitation, we too offer our patients, disabled veterans, athletes, young and elder a diverse portfolio of strength equipment, high-performance exercises and advanced agility treatment options. We have teamed up with the cities' premier doctors, therapist and trainers in order to provide high-level competitive athletes the options to push themselves to their highest abilities within our facilities. We've been blessed to use our methods with thousands of El Pasoans over the last 3 decades allowing us to restore our patients' health and fitness while implementing researched non-surgical methods and functional wellness programs. Our programs are natural and use the body's ability to achieve specific measured goals, rather than introducing harmful chemicals, controversial hormone replacement, un-wanted surgeries, or addictive drugs. We want you to live a functional life that is fulfilled with more energy, a positive attitude, better sleep, and less pain. Our goal is to ultimately empower our patients to maintain the healthiest way of living. With a bit of work, we can achieve optimal health together, no matter the age, ability or disability.