A Clinical Approach to Treatment With Pain Pharmacology
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Explore pain pharmacology in a clinical approach to understand effective pain management strategies for better patient outcomes.
Table of Contents
Abstract
I am Dr. Alex Jimenez, DC, APRN, FNP-BC, CFMP, IFMCP, ATN, CCST. In this comprehensive educational post, I present a modern, evidence-based approach to pain management that spans peripheral nociception to central modulation. I integrate chiropractic neuro-musculoskeletal care with internal medicine oversight, functional medicine, and rehabilitation to address acute and chronic pain conditions. Together with our Medical Director and Collaborative Physician, Dr. Maria Guadalupe Cardenas, MD (Board Certified in Internal Medicine) (NPI #1164426749, Texas MD License #J2933), at Injury Medical Clinic PA (also known as Mission Plaza Injury Medical Clinic) in El Paso, Texas, we deliver multidisciplinary care common to integrative and injury clinics where an MD provides medical direction alongside a chiropractor.
The physiology of pain transduction, transmission, modulation, and perception
Foundational analgesics: acetaminophen and NSAIDs, including GI and cardiovascular risks
Evidence-based topical therapies: diclofenac gel/patches, lidocaine patches, capsaicin and Qutenza, plus select compounded options
Neuropathic membrane stabilizers: gabapentin and pregabalin—dosing, safety, bioavailability, and cardiovascular observations
Antidepressants for pain (SNRIs and TCAs): mechanisms via descending norepinephrine pathways, safety, and clinical use
Benzodiazepines, muscle relaxants, and their limitations in pain care
Low-dose naltrexone and novel non-opioid approaches
Opioid therapy: cytochrome P450 differences, buprenorphine and methadone nuances, constipation management with PAMORAs, and naloxone education
Integrative chiropractic care in neuromusculoskeletal optimization, personal injury evaluation, and rehabilitation
Patient education, expectation-setting, functional outcomes tracking, and safety-first governance
Throughout, I share clinical observations from my practice and resources from the sciatica clinic and my professional network, weaving rigorous research with practical protocols to create a clear, actionable path to reduce pain and restore function.
Meet Our Multidisciplinary Team: Internal Medicine, Chiropractic, Functional Medicine, and Rehabilitation Working Together
I am honored to work shoulder-to-shoulder with Dr. Maria Guadalupe Cardenas, MD—Board Certified in Internal Medicine (NPI #1164426749, Texas MD License #J2933)—our Medical Director and Collaborative Physician at Injury Medical Clinic PA (Mission Plaza Injury Medical Clinic) in El Paso, Texas. Dr. Cardenas brings over 40 years of internal medicine expertise to our clinic, ensuring medical safety, diagnostic rigor, and appropriate pharmacologic oversight for complex multisystem cases. I provide chiropractic neuro-musculoskeletal care, functional medicine evaluation, and advanced practice nursing capabilities to unify and coordinate patient-centered plans.
This multidisciplinary setup is common in integrative and injury care clinics. The MD provides medical direction and diagnostic governance; the chiropractor addresses biomechanical and neuromusculoskeletal drivers; functional medicine identifies systemic contributors; and rehabilitation builds durable functional change. Together, we align interventions across the pain pathway to produce safer, more effective, and sustainable outcomes.
Internal medicine oversight with diagnostics, pharmacology, comorbidity risk management, and prescriptive safety
Functional medicine for immune, metabolic, endocrine, and gut-brain axis contributors to systemic sensitization
Rehabilitation and movement retraining for graded exposure, motor control, stability, mobility, and proprioceptive conditioning
Personal injury evaluation with mechanism-of-injury documentation, impairment guidance, and coordinated care
Setting Expectations: Pain Relief Is a Process, Not a Pill
Why Expectations Matter
In pain care, expectations define success. Many patients—understandably—hope for 100% relief. Research and clinical practice show meaningful improvement often looks like a 30–60% reduction in pain (clinically significant change). If a single intervention yields 30% relief, and two or three combined yield more, we can layer benefits through a multimodal strategy. Integrative care excels by compounding modest improvements across complementary domains.
Functional Outcomes Over 0–10 Scores
A 0–10 pain number is required administratively but often misses the lived context. A”10″ while immobilized on a couch is different from a “10” after walking the mall with a grandchild. We track function, not just intensity.
Tools and practices we use:
The Brief Pain Inventory (BPI): Assesses interference with general activity, mood, walking, work, relations, sleep, and enjoyment; averaged for a holistic picture (Kolasinski et al., 2020).
Patient-identified functional goals: Sleep through the night; walk the dog 15 minutes; sit through a family dinner; lift safely; return to work tasks. We document and track these goals as the narrative of progress.
Pain Physiology: A Clear Map From Periphery to Brain
Transmission: Signals travel from peripheral nerves through dorsal root ganglia into the dorsal horn and ascend to the brain.
Modulation: Spinal gating and descending inhibitory pathways adjust signal flow.
Perception: Brain networks integrate signals with attention, emotion, memory, and context to produce the experience of pain.
By understanding and targeting each stage, we can intervene locally with topical agents, segmentally with manual therapy and neurodynamics, centrally with membrane stabilizers and SNRIs/TCAs, and systemically through functional medicine and rehabilitation.
Foundational Pharmacology: Acetaminophen and NSAIDs
Acetaminophen: Simple and Powerful, With Clear Limits
Acetaminophen relieves pain and fever via central mechanisms that remain partially elucidated. The safety threshold is critical: doses beyond 4 g/day can cause serious hepatotoxicity. In the U.S., approximately 30,000 hospitalizations annually are attributed to acetaminophen-related liver toxicity, with ~50% unintentional due to hidden inclusion in many OTC products. Patient education on total daily intake—Know Your Dose—is essential.
Clinical pearls:
In low-risk patients, scheduled acetaminophen can be effective for musculoskeletal pain phenotypes, including some with severe imaging findings.
We balance risk awareness with efficacy: appropriate doses are safe; exceeding thresholds is not.
NSAIDs: Potent Relief, Significant GI and Cardiovascular Risks
Key insights:
No single NSAID is universally superior. A true therapeutic trial requires consistent dosing for at least four days; switching chemical classes can help.
Celecoxib is a selective COX-2 inhibitor; unlike traditional NSAIDs, it does not impair platelet aggregation—potentially safer with anticoagulants but still carries systemic risks.
GI damage is systemic, not just local. By reducing protective prostaglandins, NSAIDs strip the gastroprotective mucus layer throughout the GI tract. In healthy volunteers, high-dose ibuprofen produced GI bleeding in 3–5 days.
Low-dose aspirin plus traditional NSAID doubles major GI bleed risk. PPIs protect against stomach ulcer risk but do not protect the small intestine.
COX-2 selectivity spares COX-1 gut protection so that celecoxib can have lower GI risk than diclofenac or naproxen, even with PPI co-therapy.
Cardiovascular risk is a class effect: NSAIDs, including celecoxib, increase risk of MI and stroke; risks are heightened post-MI and can rise rapidly (within days). Acute respiratory infections plus NSAID use may transiently increase MI risk.
Clinical approach:
We individualize risk–benefit for each patient, favor topical NSAIDs for focal pain, and use internal medicine oversight for systemic NSAID decisions considering cardiac, renal, and GI comorbidities.
Why Topical Therapies Belong at the Front of Pain Management
Peripheral Modulation: Treat the Chemical Storm Where It Starts
Topical agents target the earliest steps in nociceptor sensitization:
Topical NSAIDs (diclofenac gel, patches): Inhibit COX enzymes to reduce prostaglandin-driven sensitization (Derry et al., 2016; Kolasinski et al., 2020).
Topical anesthetics (lidocaine patches): Block voltage-gated sodium channels to stabilize neuronal membranes and reduce peripheral excitability (Baron et al., 2009; Gammaitoni et al., 2002).
Capsaicin and high-concentration Qutenza: Strong TRPV1 activation leads to desensitization and substance P depletion, suppressing neuropeptide-driven amplification (Simpson et al., 2020).
Our mechanistic goal is simple: lower nociceptor sensitivity at the source, diminish ascending input, and reduce reliance on systemic medications.
Diclofenac: Evidence, Dosing, and Integration
Why we recommend topical diclofenac:
Comparable local efficacy to oral NSAIDs for localized musculoskeletal pain with markedly safer systemic profiles (Derry et al., 2016; Kolasinski et al., 2020).
Practical adherence tips: apply consistently for several days; absorption occurs within ~20 minutes; keep tubes where use is frequent (bathroom, sink); patches for focal acute strain.
Clinical pathways:
Acute low back strain:
Days 1–7: diclofenac patch at focal region; spine-safe mobility; gentle chiropractic adjustments; posture education.
Reassess and transition to gel as mobility improves.
Hand osteoarthritis:
Gel 2 g up to four times daily on symptomatic joints; thumb CMC splinting during flares; task modification; tendon glides; forearm soft tissue care.
Safety: older adults benefit most; limited systemic absorption reduces GI and CV risks, but vigilance persists with large surface applications or comorbidities.
Lidocaine Patches: Membrane Stabilization for Neuropathic and Focal Pain
Mechanism: sodium channel blockade stabilizes hyperexcitable peripheral nerves. Clinical studies show substantial relief in postherpetic neuralgia (PHN), often with 65% pain improvement and 77% quality-of-life improvement by week one (Baron et al., 2009; Gammaitoni et al., 2002). Typical use is 12 hours on, 12 hours off, with local skin reactions being the limiting factor rather than systemic toxicity.
Post-surgical focal neuropathy: patch alignment along tender scar bands with graded tactile exposure.
Capsaicin and Qutenza: TRPV1 Desensitization and Substance P Modulation
High-concentration capsaicin (8% patch) activates TRPV1 aggressively, causing short-term burning followed by meaningful desensitization; substance P depletion reduces presynaptic amplification. Effective in diabetic neuropathy and PHN with applications every ~3 months; patients often require 2–3 sessions for sustained benefit (Simpson et al., 2020).
Clinical integration:
Diabetic peripheral neuropathy:
Qutenza for focal allodynia; foot and ankle mobilization; intrinsic foot strengthening; gait retraining.
PHN:
Qutenza with thoracic and rib mechanics correction reduces ongoing nociceptive inputs; cooling measures during application support tolerability.
Select Compounded Options: Clonidine Gel and Specialty Topicals
For refractory sympathetically driven phenotypes such as CRPS, compounded topical clonidine (alpha-2 agonist) can modulate norepinephrine signaling. Access is variable; we reserve it for cases with prominent adrenergic features after conventional options are exhausted.
“Magic mouthwash” formulations offer mucosal anesthesia and protection for oral pain syndromes (mucositis; select burning mouth presentations) while functional medicine evaluates nutrient deficiencies, candidiasis, xerostomia, and glycemic dysregulation.
Neuropathic Membrane Stabilizers: Gabapentin and Pregabalin
Gabapentin: Alpha-2-Delta Binding, Dosing, and Bioavailability
I teach gabapentin as a membrane stabilizer: by binding the alpha-2-delta subunit of voltage-gated calcium channels, it reduces presynaptic excitatory neurotransmitter release, calming hyperexcitable nerves. Emerging data suggest potential glial modulation, contributing to decreased neuroinflammation (Taylor et al., 1998; Luo et al., 2012).
Indications and dosing:
FDA indication: PHN; common off-label use: neuropathic/radicular pain phenotypes, fibromyalgia (variable evidence).
Start low, go slow: 100–300 mg at night; titrate every 3–7 days; renal dosing required.
Bioavailability declines at higher doses; ~60% at ~900 mg/day, dropping as dosing escalates—more drug is not always better (Sommers et al., 2019).
Extended-release options (Gralise, Horizant) favor shingles-related pain but are limited off-label.
Safety:
Central sleep apnea has been associated with medication-induced cases; we coordinate with sleep medicine in at-risk patients (Mador et al., 2017).
Rare DRESS syndrome requires immediate discontinuation when systemic reactions appear (Mori et al., 2017).
Sedation, dizziness, ataxia necessitate careful titration to preserve adherence and function.
Pregabalin: Similar Mechanism, Faster Steady State, and Cardiovascular Observations
Pregabalin shares alpha-2-delta binding, stabilizing membranes with steady state in 48–72 hours. Typical dosing starts at 25–50 mg BID, titrated every 48–72 hours. Many patients obtain meaningful relief at ≤450 mg/day; beyond that, side effects often outpace benefits (Crofford et al., 2005).
Cardiovascular observations:
Emerging evidence indicates a potential increased risk of long-term adverse cardiovascular outcomes among patients with diabetic neuropathy and fibromyalgia treated with pregabalin, with short-term signals within ~3 months of initiation (Zentner et al., 2023). We assess CV risk and coordinate with primary care or cardiology when prescribing in metabolic syndrome or cardiac disease.
Integration:
Diabetic neuropathy: pregabalin titration; foot mechanics optimization; glycemic control via functional medicine; capsaicin/Qutenza where available.
Antidepressants for Pain: SNRIs and TCAs Modulate Descending Inhibition
The Descending Norepinephrine Pathway: Pain’s Volume Control
Pain signals ascend to the brain, but the brain sends descending modulatory signals back down to shape pain reception at the dorsal horn. Norepinephrine and serotonin drive much of this inhibition. In many chronic pain states, descending inhibitory function is depleted. SNRIs and TCAs increase NE and 5-HT levels by blocking reuptake, strengthening endogenous inhibition and reducing perceived pain, independently of mood effects.
Key points:
These are real pain medications with robust evidence; they are non-addictive and often once-daily, improving adherence.
Trials demonstrating duloxetine’s analgesia excluded depressed patients, proving a direct pain effect.
Black Box Warning: Contextualizing Risk
The FDA Black Box Warning (2004) on antidepressants centers on increased suicidality in children and adolescents treated for depression, likely due to motivation rising before mood improves. Adult data show no increased risk over age 24; in those 65+, a protective effect is observed. We explain the context clearly, calibrate risk by age and indication, and monitor appropriately.
Serotonin Syndrome: Recognize the Real Signals
True serotonin syndrome typically arises acutely after initiation or dose increase: about 30% occur within 1 hour, 60% within 6 hours. The diagnostic triad includes cognitive changes (agitation/confusion), autonomic hyperactivity (tachycardia, hypertension, hyperthermia, diaphoresis), and neuromuscular abnormalities (tremor, hyperreflexia, clonus). The Hunter Criteria emphasize clonus and hyperreflexia. Absence of these signs makes the syndrome unlikely.
Duloxetine: The SNRI Front-Runner for Chronic Musculoskeletal Pain
Duloxetine is FDA-approved for diabetic peripheral neuropathy, fibromyalgia, and chronic musculoskeletal pain. Evidence shows clinical benefits in knee osteoarthritis and chronic low back pain through central sensitization modulation.
Dosing:
Start at 30 mg daily for one week to reduce nausea; target 60 mg daily. Short courses of ondansetron can help patients through initial titration to preserve a valuable tool.
We set expectations around partial relief: approximately 50% of patients achieve ~50% reduction—an impactful change for many.
Broader use:
Central sensitization mechanisms allow reasonable use in chronic OA of hip or shoulder, even beyond initial trial populations. Duloxetine pairs naturally with chiropractic, rehabilitation, and functional medicine strategies for multimodal gains.
Other SNRIs: Milnacipran and Venlafaxine
Milnacipran is approved for fibromyalgia only and has high NE affinity, potentially more potent for pain but with increased NE side effects; access may be limited by cost. Positive fibromyalgia outcomes (≥30% reduction) reflect the condition’s severity.
Venlafaxine’s pain data is less robust; NE potency emerges at higher doses (~≥150 mg). Duloxetine’s broader indications and stronger evidence make it preferred.
TCAs: Low Dose, High Utility for Neuropathic Pain
TCAs—amitriptyline, nortriptyline—are older agents with broad receptor activity (NE, 5-HT reuptake; muscarinic, histamine, alpha-1 blockade). At low doses (10–75 mg nightly), analgesic effects are achieved with fewer side effects. We titrate slowly over 6–8 weeks and monitor anticholinergic burdens. QT prolongation becomes a concern at higher doses (>100 mg), rarely needed for pain.
BMS presents as severe oral burning without visible mucosal changes, often in perimenopausal/postmenopausal women. It is a true neuropathic pain condition; TCAs—especially nortriptyline—can be remarkably effective. We start 10 mg nightly and titrate by 10 mg weekly to ~50 mg. Functionally, we also evaluate nutrition, oral microbiota, xerostomia, and glycemic control in parallel.
Not Pain Medicines: Benzodiazepines and The Limits of Muscle Relaxants
Benzodiazepines Are Not Analgesics
Benzodiazepines produce anxiolysis and sedation but can antagonize opioid analgesia, leading patients to escalate opioid doses dangerously. Co-prescribing benzodiazepines and opioids increases overdose risk dramatically; our policy is extreme caution. Anxiety deserves treatment—preferably with non-benzodiazepine options and psychotherapy—but benzodiazepines are inappropriate for routine chronic pain management.
Muscle Relaxants: Understand Mechanisms and Use Strategically
Evidence shows no meaningful benefit in sciatica; modest relief may occur in acute non-radicular low back pain during the first week through general CNS depressant effects.
Common agents:
Diazepam: benzodiazepine risk profile; not superior to other relaxants; avoid outside narrow indications (e.g., MRI tolerance for severe claustrophobia).
Cyclobenzaprine: structurally similar to TCAs; beware mood disorder destabilization and rapid steady-state CNS depression in TID dosing.
Tizanidine: central alpha-2 agonist; primary indication is spasticity; short duration allows strategic nighttime use without daytime impairment.
Carisoprodol (Soma): Schedule IV due to abuse potential; rarely initiated.
Baclofen: GABA-B receptor action in spinal cord; indicated for spasticity. Abrupt discontinuation can cause severe withdrawal with seizures—must taper and manage pump malfunctions urgently. Watch for hyperglycemia, psychiatric exacerbations, lowered seizure threshold.
Topical NSAIDs and local rehabilitative strategies often outperform muscle relaxants for focal musculoskeletal pain while avoiding sedation.
Innovative and Emerging Approaches: Low-Dose Naltrexone and New Non-Opioid Pathways
Low-Dose Naltrexone (LDN): Glial Modulation and Endogenous Opioid Support
At 1.5–4.5 mg compounded doses, naltrexone exhibits paradoxical analgesia via:
Glial cell modulation: dampening neuroinflammation by calming activated microglia/astrocytes
Endorphin/enkephalin rebound: transient receptor blockade upregulates endogenous opioids after the drug clears
Applications:
Fibromyalgia: addresses central sensitization and neuroinflammatory drivers
Long COVID: emerging data suggests benefits for chronic pain and fatigue
Start 1.5 mg nightly; increase by 1.5 mg every 1–2 weeks to 4.5 mg; side effects are usually mild (vivid dreams/insomnia). Emergency opioids can override receptor blockade with adequate dosing.
Novel Non-Opioid Sodium Channel Targets
Precision analgesics that selectively block sodium channels such as Nav1.8—predominantly expressed in peripheral nociceptors—can reduce acute pain without opioid risks. When available, we integrate these medications under internal medicine oversight, counsel on drug interactions (including hormonal contraceptive efficacy), and navigate insurance coverage to expand access.
Opioid Therapy: Precision Prescribing Through Mechanism and Metabolism
Mechanisms: Ascending and Descending Modulation, GI Effects, and System Impacts
Opioids primarily act at mu receptors to reduce ascending pain transmission and enhance descending inhibition. Mu receptors are abundant in the GI system, which explains the inevitability of opioid-induced constipation. Partial mu agonists (e.g., buprenorphine) cap respiratory depression risk via ceiling effects and kappa antagonism. Clinically, opioids can increase antidiuretic hormone and water retention, potentially blunting diuretic efficacy in heart failure.
PPrescriber’sChecklist: Safety and Governance
We follow structured protocols:
Comprehensive physical exam and diagnosis confirmation
Validated risk assessments (SOAP-R, COMM)
Rule out correctable causes (e.g., surgical OA knee)
Medication agreement (pain contract) for education and accountability
PDMP check before every prescription
Meticulous documentation of trials, failures, and contraindications to alternatives
Cytochrome P450: Why Equianalgesic Charts Can Mislead
CYP450 enzymes (e.g., CYP3A4, CYP2D6) metabolize many opioids. Genetic and drug–drug differences mean some patients are slow metabolizers who experience prolonged effects at standard doses; others are fast metabolizers who obtain little benefit. Morphine and hydromorphone avoid CYP450 and undergo glucuronidation, explaining why some patients respond better to these than oxycodone. We tailor opioid choices to metabolic realities, not just equianalgesic tables (Gudin, 2020).
Buprenorphine: Safer Chronic Pain Option
Buprenorphine (Butrans patch, Belbuca buccal films) offers analgesia with a ceiling on respiratory depression. We start low (e.g., Butrans 5 mcg/hour weekly) for consistent relief in older adults or adherence-challenged patients. Current guidance allows continuation through surgery; anesthesiology can manage perioperative analgesia without discontinuation and withdrawal.
Methadone is potent and inexpensive, acting at mu receptors and as an NMDA antagonist. It has a long and variable half-life (8–59 hours) while analgesia lasts 4–8 hours, demanding extremely slow titration to avoid fatal accumulation. QT prolongation risk becomes significant at higher doses; we monitor EKGs where indicated. Equianalgesic conversion is non-linear: higher prior opioid doses convert to disproportionately low methadone doses. Methadone is appropriate for pain without OUD history, but only in experienced hands (Webster, 2017).
Opioid-Induced Constipation: PAMORAs Are the Targeted Solution
Constipation is inevitable with mu agonism in the GI tract; tolerance does not develop. Bulk-forming fibers can worsen obstruction. We ask direct questions and use KUB imaging if needed.
Peripherally Acting Mu-Opioid Receptor Antagonists (PAMORAs) reverse GI mu receptor blockade without crossing the blood–brain barrier, preserving central analgesia:
Methylnaltrexone (Relistor): subcutaneous option excellent for patients unable to swallow
Naloxegol (Movantik) and Naldemedine (Symproic): oral options
Patients may still need conventional laxatives for non-opioid contributors to constipation (Shaib & Hyman, 2019).
Naloxone Saves Lives: Education Is Prevention
My mantra: “Naloxone is for a risky drug, not a risky patient.” Any patient on long-term opioids should have naloxone available. A written prescription itself is associated with reduced overdose rates, likely due to improved awareness and safer behaviors. Naloxone is widely available without prescription; caregivers should know to administer it immediately, call 911, and anticipate that overdose may recur as naloxone’s half-life is shorter than many opioids. Store naloxone in an easily accessible place, not the medicine cabinet (Prescribe to Prevent, n.d.).
Integrative Chiropractic Care: Mechanical Solutions for Biologic Pain
How Adjustments and Manual Therapy Fit the Pain Pathway
Chiropractic care reduces nociception at multiple levels:
Spinal cord gating: A-beta mechanoreceptor input competes with nociceptive signals at the dorsal horn, lowering pain
Descending modulation: Movement and fear-avoidance reduction activate endogenous opioid, monoamine, and endocannabinoid systems
Neural glide and neurodynamics: Improved nerve mobility reduces ectopic firing and supports axoplasmic flow
In my clinical observations at sciatica. clinic, precise adjustments, nerve-glide protocols, trunk stabilization, and topical agents produce predictable improvements in lumbar radiculopathy, often decreasing reliance on systemic drugs.
Case Integration: Sciatica and Radiculopathy
Decompress and align lumbar segments and sacroiliac mechanics
Teach lateral glides and neural mobilization early, respecting irritability
Use topical diclofenac for paraspinal and gluteal pain points; lidocaine patches for trigger areas
Reserve membrane stabilizers for persistent neuropathic features; simultaneously optimize sleep, metabolic factors, and stress
Neck and Shoulder Pain
Scapular mechanics reduce cuff overload and neural tension
Topical NSAIDs for focal synovitis; lidocaine patches for suprascapular notch tenderness
Pregabalin reserved for refractory neuropathic features with cardiovascular risk evaluation before use
Functional Medicine: Reduce Systemic Sensitizers
Systemic factors modulate nociceptor sensitivity and central processing. We evaluate:
Gut–brain axis: dysbiosis, increased permeability, endotoxin burden prime glial activation
Sleep: poor sleep diminishes descending inhibition and increases pro-inflammatory cytokines
Stress/autonomic balance: chronic sympathetic activation worsens adrenergic pain phenotypes; breath training and HRV biofeedback help restore balance
We combine chiropractic adjustments, topical modulation, sleep hygiene, nutritional interventions, and graded loading to reduce recurrent nociception and build resilience.
Personal Injury Care: Mechanism, Documentation, and Rehabilitation
Facet capsule strain, dorsal root ganglion irritation, central sensitization
Early gentle mobilization, isometric cervical stabilization, diclofenac gel for paraspinal tenderness, lidocaine patches for trigger areas; avoid prolonged immobilization
Slip-and-fall lumbar strain:
Microtrauma to annulus and paraspinals via abrupt flexion/rotation
Diclofenac patches acutely; segmental adjustments; hip hinge training and core activation
Documentation aligns clinical findings with functional impairments, supports therapeutic timelines, and preserves continuity of care.
Stepwise Strategy Across the Pain Pathway: A Four-Level Framework
Peripheral modulation
Topical NSAIDs to reduce prostaglandins
Lidocaine patches to stabilize sodium channels
Capsaicin/Qutenza to desensitize TRPV1 and substance P
Chiropractic soft tissue and joint optimization to lower local nociceptive input
Spinal segmental gating
Chiropractic adjustments to boost non-nociceptive input and segmental inhibition
Neurodynamic techniques to improve nerve mobility
Central processing
Membrane stabilizers (gabapentin/pregabalin) in carefully selected cases
SNRIs/TCAs to strengthen descending NE/5-HT inhibition
Sleep optimization and stress modulation to enhance endogenous control
Systemic milieu
Functional medicine strategies to reduce inflammation, correct deficits, optimize mitochondrial function, and restore autonomic balance
Rehabilitation to remodel movement patterns, reduce recurrent nociception, and build durable capacity
Patient Education Scripts That Work
Diclofenac gel: “Your tissues release prostaglandins that make nerves more sensitive. This gel blocks that process right at the surface, which helps reduce the pain where it starts.”
Lidocaine patches: “These patches calm overactive pain nerves by blocking sodium channels, so the nerve can’t fire as easily.”
Capsaicin/Qutenza: “This turns on heat-sensitive channels strongly enough that they eventually calm down and stop sending as many pain signals.”
Gabapentin/pregabalin: “Your nerve is firing too easily. These medicines slow the handoff of signals between nerve cells so that the network can settle down.”
Duloxetine: “We’re boosting your body’s natural descending pain brakes, especially norepinephrine, to turn down pain signals centrally.”
Patients adhere better when they understand mechanisms and rationale.
Case Pathways and Decision Trees
Acute low back pain:
Days 1–3:
Diclofenac patch or gel; gentle chiropractic mobilization as tolerated; posture education
Days 4–10:
Progress adjustments; add neural mobilization for radicular features; consider lidocaine patch for focal trigger zones
Weeks 2–4:
Initiate graded strengthening; consider membrane stabilizers if persistent neuropathic signs
Outcome: 60–70% pain reduction in week one; improved sleep; later taper of gabapentin
Lumbar radiculopathy:
Professional driver with sitting intolerance and lateral leg pain
Plan: lateral glide mobilizations; lumbar adjustments; diclofenac gel for paraspinal tenderness; nerve glides; work modifications
Outcome: improved sitting tolerance within 10 days; avoided systemic analgesics
Practical Tips for Clinicians and Patients
Keep topical agents accessible at home and work
Map dermatomal pain bands for strategic patch placement
Titrate membrane stabilizers cautiously and preserve adherence
Pair mechanical care with topical modulation for synergy
Monitor sleep and stress diligently
Reassess and taper pharmacologic agents as function restores
How We Coordinate Care: Internal Medicine Governance and Integrative Delivery
With Dr. Cardenas’ medical direction, we:
Vet pharmacologic choices against comorbidities (cardiac, renal, metabolic)
Align topical regimens and membrane stabilizers with best-practice dosing and monitoring
Ensure labs and diagnostics are timely (A1C for diabetic neuropathy; B12/iron/folate for oral neuropathic pain; EKGs for high-risk TCAs/methadone)
Escalate to specialty referrals when red flags emerge (progressive neurologic deficit, systemic signs)
Our governance model ensures safety-first care that remains agile and patient-centered.
The Integrative Advantage: Why Layered Care Outperforms Single-Modal Approaches
From the first patient interaction, our strategy is to:
Quiet the periphery with targeted topicals (diclofenac, lidocaine patches, capsaicin/Qutenza)
Optimize mechanics with precise chiropractic adjustments, neurodynamics, and soft tissue care
Stabilize nervous system signaling with membrane-targeted agents and descending inhibition enhancers (SNRIs/TCAs) when appropriate
Remove systemic obstacles via functional medicine
Build durable change through rehabilitation and patient education
This layered approach reduces reliance on high-dose systemic drugs, enhances safety, and meaningfully improves function.
Extended Guidance: Revisiting Therapies, Optimizing Dosing, and Personalizing Care
Bodies and contexts change; retrying previously ineffective therapies at different doses or combinations can help
Optimize dosing times to match pain patterns (e.g., shifting midday dose to cover late-afternoon flare)
Use multimodal strategies rather than escalating single-agent doses
Emphasize that medications are one tool in a broader toolbox that includes chiropractic, rehab, nutrition, stress management, and psychological support.
Clinical Governance and Documentation: Protecting Patients and Providers
Document functional goals and objective progress
Record trials, failures, contraindications, and risk assessments
Use PDMP, pain agreements, and validated tools consistently
Align care plans with clear mechanisms and patient education to improve adherence and safety
Pain begins in the periphery, but relief arises when we address the entire pathway. By combining targeted topicals, precise chiropractic mechanics, carefully selected membrane stabilizers and SNRIs/TCAs, and systemic functional medicine, we produce safer, more effective, and durable outcomes. With Dr. Cardenas’s leadership, our multidisciplinary model ensures evidence-based, safety-first care for complex pain. With rehabilitation and patient education, we transform improvements into long-term function.
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Multi-state Compact APRN License by Endorsement (42 States)
Texas APRN License #: 1191402, Verified:1191402 *
Florida APRN License #: 11043890, Verified: APRN11043890 * Colorado License #: C-APN.0105610-C-NP, Verified: C-APN.0105610-C-NP New York License #: N25929, VerifiedN25929
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 Digital Business Card
Dr. Maria Cardenas, MD (Board Certified: Internal Medicine)
(Licensed Medical Doctor)
Medical Director, Clinical Director & Collaborative Physician NPI # 1164426749
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) 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
Memberships & Associations:
TCA: Texas Chiropractic Association: Member ID: 104311
AANP: American Association of Nurse Practitioners: Member ID: 2198960
ANA: American Nurse Association: Member ID: 06458222 (District TX01)
TNA: Texas Nurse Association: Member ID: 06458222
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 Digital Business Card
Dr. Maria Cardenas, MD (Board Certified: Internal Medicine)*
(Licensed Medical Doctor)*
Medical Director, Clinical Director & Collaborative Physician NPI # 1164426749
MD License #: J2933
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.