Showing posts with label biologics. Show all posts
Showing posts with label biologics. Show all posts

Monday, February 9, 2026

Rethinking rotator cuff tear management - how do we want to spend the money?


The management of patients with rotator cuff tears presents a significant clinical and economic challenge. With annual costs of rotator cuff surgery exceeding $3 billion in the United States alone, and increasing evidence that structural repair does not always correlate with functional outcomes, a critical reassessment of the cost-effectiveness of different management options seems warranted. 

Let's start with a case example

A 70 year old active skier, cyclist, climber and practicing orthopaedic surgeon presented with the progressive onset of pain in the right shoulder. Physical examination revealed weakness of resisted elevation, but a good range of active motion. Plain radiographs showed no evidence of arthritis. The MRI findings are shown below.  


Surgical repair was offered but declined in favor of a home exercise program. A decade later the shoulder has a full painless range of range of motion and strength sufficient for sports and surgical practice. 

An Overview

Rotator cuff disease is extremely common, affecting up to 25% of the population over age 40. Tear prevalence, size, likelihood of progression, and retear rates after surgical repair are all related to increasing age. Fewer than 5% of people with rotator cuff tears come to surgery, the great majority of rotator cuff tears are either asymptomatic or mildly symptomatic. 

However, Over a half million cuff surgeries are performed each year and this number is increasing




Non-operative treatment represents the most cost-effective strategy for many patients with symptomatic rotator cuff tears.

Jed Kuhn and the MOON (Multicenter Orthopaedic Outcomes Network) Shoulder Group that he leads published Effectiveness of physical therapy in treating atraumatic full-thickness rotator cuff tears: a multicenter prospective cohort study, a multicenter prospective cohort study of 452 patients with atraumatic full-thickness rotator cuff tears treated with a standardized physical therapy protocol. The study found that 75% of patients achieved successful outcomes with physical therapy alone at 2-year follow-up, with "failure" defined as patients electing to undergo surgery. 

The Predictors of Surgery for Symptomatic, Atraumatic Full-Thickness Rotator Cuff Tears Change Over Time: Ten-Year Outcomes of the MOON Shoulder Prospective Cohort, a follow-up study tracked the original cohort for 10 years and found that physical therapy remained successful in over 70% of patients, with only 27% ultimately requiring surgery. Importantly, patient-reported outcomes improved with physical therapy and did not decline over the 10-year period. This study won the 2024 Kappa Delta Ann Doner Vaughan Award and demonstrated the long-term durability of non-operative treatment.

EXERCISE THERAPY IN THE NON-OPERATIVE TREATMENT OF FULL-THICKNESS ROTATOR CUFF TEARS: A SYSTEMATIC REVIEW Of the non-operatively treated cohorts 78% improved in pain, 81% improved in range of motion, 85% improved in strength, 84% improved in functional outcomes. Dissatisfied outcomes occurred in 15% of patients, who then transitioned to surgery.

The cost differential is substantial. Home exercises are inexpensive and often effective. While comprehensive physical therapy may cost $1,500-3,000 over several months, surgical repair typically ranges from $15,000-25,000, creating a 10-fold cost difference for initial treatment. Given that many patients achieve acceptable outcomes with therapy alone, this represents a significant opportunity for cost savings without compromising patient outcomes.

Patient selection for non-operative management should prioritize older individuals (typically >65 years), those with maintained active forward elevation without pseudoparalysis, reasonable functional demands, and chronic rather than acute tears. 


Symptoms of cuff tears do not correlate strongly with the magnitude of the defect.

Symptoms of pain do not correlate with rotator cuff tear severity: a cross-sectional study of 393 patients with a symptomatic atraumatic full-thickness rotator cuff tear, A cross-sectional study of 393 patients with symptomatic atraumatic full-thickness rotator cuff tears demonstrated that pain severity does not correlate with tear size or other anatomic features. This finding challenged the assumption that larger tears necessarily cause more symptoms and require more aggressive treatment.

Patient self-assessed shoulder comfort and function and active motion are not closely related to surgically documented rotator cuff tear integrity found that cuff integrity was not strongly associated with the shoulder's comfort or function. 


Repair attempts often lead to failure of anatomic healing of the tendon to bone; clinical outcomes are largely independent of repair integrity.

Arthroscopic repair of full-thickness tears of the supraspinatus: does the tendon really heal? Only 43% of patients over the age of sixty-five years had completely healed tendons.

Failure with continuity in rotator cuff repair "healing" found that all rotator cuff repairs retracted substantially away from their position of initial fixation during the first year after surgery (mean 16.1 ± 5.3 mm; range, 5.7-23.2 mm), yet only 30% of patients showed a defect on MRI. This study is important because it indicates that an "intact" tendon repair on MRI may not indicate healing of the tendon to the insertion site. This finding may be especially relevant to the assessment of repair integrity after the use of patches and grafts.

The outcome and repair integrity of completely arthroscopically repaired large and massive rotator cuff tears reported arthroscopic repair of large and massive rotator cuff tears led to a high percentage of recurrent defects. The minimum twelve-month evaluation showed excellent pain relief and improvement in the ability to perform activities of daily living despite the high rate of recurrent defects.

Rotator cuff repair: published evidence on factors associated with repair integrity and clinical outcome found that the mean re-tear rate was 26.6% at a mean of 23.7 months after surgery.  Patient-reported outcomes were generally improved whether or not the repair restored the integrity of the rotator cuff.  In spite of a dramatic increase in the number of publications per year and the advent of biologic augmentation there was little evidence that the clinical results of rotator cuff repair were improving with time. 

Structural Integrity After Rotator Cuff Repair Does Not Correlate with Patient Function and Pain The differences in validated functional outcome scores and pain were not clinically significant for intact and failed repairs.


Non-repair surgery - the underutilized "smooth and move" procedure / debridement (see this link)

Smoothing the humeroscapular motion interface without acromioplasty is a quick, safe procedure for painful cuff tears in shoulders with preserved active elevation. It allows the patient immediate return to use of the shoulder without postoperative "down time". It does not involve use of a more costly "subacromial balloon" or a "biological tuberoplasty". The cost-effectiveness advantages of debridement are substantial. Operative time is typically 30-45 minutes compared to 2-3 hours for complex repairs, resulting in lower facility and anesthesia costs. Recovery is faster, allowing quicker return to activities and reduced rehabilitation expenses. Complication rates are lower due to the less invasive nature of the procedure.

Treatment of irreparable cuff tears with smoothing of the humeroscapular motion interface without acromioplasty.  In 77 shoulders with previously unrepaired irreparable tears, simple shoulder test (SST) scores improved from an average of 4.6 to 8.5. Fifty-four patients (70%) improved by at least the minimally clinically important difference (MCID) of 2 SST points. For 74 shoulders with irreparable failed prior repairs, SST scores improved from 4.0 to 7.5. Fifty-four patients (73%) improved by the MCID. This conservative procedure offers an alternative to more complex procedures in the management of irreparable rotator cuff tears.

Significant improvement in patient self-assessed comfort and function at six weeks after the smooth and move procedure for shoulders with irreparable rotator cuff tears and retained active elevation In 40 patients with preoperative and 6-week postoperative measurements, the Simple Shoulder Test scores improved from an average of 3.4 ± 2.8 preoperatively to 5.7 ± 3.5 at 6 weeks (p < 0.001), an improvement that exceeded the published values for the minimal clinically important difference (MCID). The clinical outcomes were not worse for the 18 shoulders with irreparable tears of both the supraspinatus and infraspinatus. In addition to its previously documented long-term effectiveness for shoulders with irreparable rotator cuff tears and retained active elevation, this study demonstrates that the smooth and move procedure provides clinically significant improvement as early as 6 weeks after surgery.

Comparing outcomes between debridement and attempted repair of large/massive tears reveals only modest functional differences, yet the repair costs more and carries higher complication risks.

Massive rotator cuff tears: functional outcome after debridement or arthroscopic partial repair Both treatment groups had similar pain relief and satisfaction, reflected in equal values of disabilities of the arm, shoulder and hand (DASH) score. Ultrasonography revealed structural failure of the partial rotator cuff repair in 52% at final follow-up.

Partial rotator cuff repair versus debridement for irreparable rotator cuff tears: A systematic review 709 shoulders from 706 patients were reviewed, with 380 patients receiving a partial repair and 329 shoulders receiving debridement.  Pre- and post-operative mean VAS scores were the same for both treatments. Patient satisfaction with partial repair was reported as 75 %; for patients treated with debridement, post-operative satisfaction was 80.7 %.This systematic review study demonstrates that both partial repair and debridement alone can result in acceptable clinical outcomes with no significant differences noted for patients with irreparable rotator cuff tears in short to mid-term follow up.


Standard Rotator Cuff Repair

Standard surgical repair remains the gold standard of treatment for cuff tears when the quantity and quality of the tendon is adequate. The outcomes of cuff repair surgery are strongly influenced by the patient's nutrition. See: The "Secret Sauce" for Optimizing Rotator Cuff Outcomes: Biologics or nutrition?


Biologics, patches, PRP, and augmentation 

While these interventions are associated with reduced retear rates there is currently insufficient evidence that their significantly increased costs result in clinically meaningful improvement in clinical outcomes for patients. Structural healing on imaging does not reliably translate to better clinical outcomes for patients. This disconnect persists despite 25+ years of rotator cuff biological augmentation research.


Platelet-Rich Plasma (PRP)

Use of platelet-rich plasma for the improvement of pain and function in rotator cuff tears: a systematic review and meta-analysis with bias assessment Improvements in PRP-treated patients were noted for multiple functional outcomes, but none reached their respective minimal clinically important differences

Clinical and structural outcomes after arthroscopic repair of full-thickness rotator cuff tears with and without platelet-rich product supplementation: a meta-analysis and meta-regression. A meta-analysis of Level I and II studies found no statistically significant differences in overall outcome scores or retear rates between PRP-treated and control groups.

Evaluating the longitudinal efficacy of platelet-rich plasma in rotator cuff surgery: a systematic review and meta-analysis While PRP reduced pain (VAS) in the early postoperative period, the improvement was not clinically significant.

Platelet-rich plasma for arthroscopic repair of large to massive rotator cuff tears: a randomized, single-blind, parallel-group trial found that despite better structural healing in the PRP group, there was no clinically significant difference in outcomes between groups.

Cost: Approximate per-procedure expense of PRP:  preparation kits: $600 per case; 15 min additional OR time for preparation ($600), processing equipment ($3,000-15,000). The Cost-Effectiveness of Using Platelet-Rich Plasma During Rotator Cuff Repair: A Markov Model Analysis This cost-utility analysis shows that, currently, the use of PRP to augment rotator cuff repair is not cost-effective.


Scaffold and Patch Augmentation

The clinical adoption of these technologies raises questions about their actual effectiveness in improving patient outcomes, their cost-effectiveness in real-world practice, and their safety profile. 

A prospective, randomized evaluation of acellular human dermal matrix augmentation for arthroscopic rotator cuff repair found the change in ASES, Constant, and UCLA scores were not clinically signficantly better (did not exceed MCID) for the matrix augmentation group than for the controls.

A pilot randomised controlled trial assessing standard versus dermal patch-augmented rotator cuff repair found no adverse effects and suggest future trials need a minimum of 150 patient Among 40 patients randomized to augmented repair versus standard repair there was no difference between groups with respect to clinical outcomes.

Clinical and anatomical outcomes of arthroscopic repair of large rotator cuff tears with allograft patch augmentation: a prospective, single-blinded, randomized controlled trial with a long-term follow-up This prospective, single-blinded RCT compared arthroscopic repair of large rotator cuff tears with vs. without allograft dermal patch augmentation at mean 7.3-year follow-up. Clinical outcomes (Patch vs. Control at final follow-up): VAS pain: 1.3 vs. 1.5 (difference 0.2 - clinically insignificant) ASES: 87.9 vs. 86.1 (difference 1.8 points - well below MCID of 6.4Constant: 82.6 vs. 79.5 (difference 3.1 points - well below MCID of 10.4)UCLA: 32.0 vs. 31.0 (difference 1.0 point - below MCID) SST: 10.2 vs. 9.6 (difference 0.6 - below MCID of ~2 points). None of these differences were clinically significant.

Outcome of Large to Massive Rotator Cuff Tears Repaired With and Without Extracellular Matrix Augmentation: A Prospective Comparative Study Uniquely, this study showed a clinically significant difference in ASES score with matrix augmentation.

Cost: Resorbable Bioinductive Collagen Implant Is Cost Effective in the Treatment of Rotator Cuff Tears Average cost of treatment $32,213 without Regeneten, $54,459 with Regeneten (additional cost 69%). The authors did not assess patient reported outcomes or revision rates for patients without or with the patch. While using "healing" as the study endpoint, the authors point out that there is lack of agreement on what constitutes healing or re-tearing after a cuff repair based on magnetic resonance imaging, ultrasound, or arthrogram. Evidence was not presented that "healing" by imaging correlated with better clinical outcomes .

Economic Evaluation of a Bioinductive Implant for the Repair of Rotator Cuff Tears Compared with Standard Surgery in Italy. Average cost of treatment 4650 without Regeneten, 7828 with Regeneten (additional cost 68%). Study limitations the same as those for the report above.

Complications: 

Increased stiffness and reoperation rate in partial rotator cuff repairs treated with a bovine patch: a propensity-matched trial found that postoperative stiffness was observed in the first 12 weeks in 8 of 32 patients in the Regeneten patch group compared with 1 of 32 patients in the control group. Six patients in the patch group underwent reoperations compared with no patients in the control group. All 6 reoperations in the patch group were performed to address stiffness. The authors concluded that patients in the patch group had a significantly higher rate of postoperative stiffness. In the majority of patients in whom shoulder stiffness developed, reoperation was required. 


Subacromial-Subdeltoid Bursitis With Rice Bodies After Rotator Cuff Repair With a Collagen Scaffold Implant: A Case Reportreported a case of subacromial-subdeltoid bursitis with rice bodies after rotator cuff repair with a Smith + Nephew REGENETEN bovine-derived bioinductive collagen scaffold implant. After debridement, the patient recovered well and made a full return to work and recreational activities.

Revision arthroscopic surgery after rotator cuff repair with a collagen graft: histologic evaluation of biopsy specimens from two patientsPatients undergoing collagen scaffold augmentation should be warned of the possibility of reactive bursitis. Cases of reactive bursitis may need to be managed with surgical débridement to treat symptoms and structural failure and to rule out infection. 

Restore orthobiologic implant: not recommended for augmentation of rotator cuff repairs  Years after surgical repair of large rotator cuff defects supplemented with a xenograft, patients had persisting deficits and no recognizable benefit as compared with the results in a control group. In view of these findings, together with the unsatisfactorily high proportion of patients with a severe inflammatory reaction to the xenograft, the authors do not recommend use of the Restore Orthobiologic Implant.

Subacromial-Subdeltoid Bursitis With Rice Bodies After Rotator Cuff Repair With a Collagen Scaffold Implant: A Case Report This case demonstrates persistent pain, swelling and decreased range of motion for several months after rotator cuff repair with the use of a collagen implant

Severe subacromial-subdeltoid inflammation with rice bodies associated with implantation of a bio-inductive collagen scaffold afterrotator cuff repair  The potential for an acute, significant painful phase in a patient’s recovery should be part of the informed-consent process when using the Regeneten implant.

These findings suggest that reactive bursitis may be an under-recognized complication of biological patch augmentation, potentially contributing to the increased stiffness rates observed in larger series. What makes these complication rates concerning is their infrequency in control groups. In the propensity-matched study, zero patients in the standard repair group required reoperation, while 19% of patch-augmented patients did experience this novel category of complications associated with the augmentation material itself.


Conclusions:
(1) Age-relared rotator cuff failure is common and very often minimally symptomatic.
(2) Physical therapy can be cost-effective in improving comfort and function for the majority of patients with these tears.
(3) Non-repair surgery (smooth and move/debridement) can be cost-effective for patients with retained active elevation
(4) Surgical repair can be cost-effective when there is adequate quantity and quality of cuff tendon.
(5) PRP and "biologic" patches have not been shown to be cost-effective in improving patient reported outcomes. Sponsored 'cost-effectiveness' studies measuring surrogate endpoints (e.g. healing by imaging) rather than patient-centered outcomes may be misleading by not considering patient outcomes and complications.


Looking the problem in the eye.



Red-faced Warbler
Tucson
Spring 2020




Here are some videos that are of shoulder interest
Shoulder arthritis - what you need to know (see this link).
How to x-ray the shoulder (see this link).
The ream and run procedure (see this link)
The total shoulder arthroplasty (see this link)
The cuff tear arthropathy arthroplasty (see this link).
The reverse total shoulder arthroplasty (see this link).
The smooth and move procedure for irreparable rotator cuff tears (see this link)
Shoulder rehabilitation exercises (see this link). 

Thursday, October 30, 2025

Pigs, cows and rotator cuff repair - Revisiting AAOS' strong recommendation for bioinductive implants

Last month we took a critical look at "AAOS: Strong recommendation for "bioinductive tendon implants to augment rotator cuff repair". Please take a moment to review it.

Lets look at some new information, focusing on patient reported outcomes rather than MRI findings.

Recently, the authors of No Short-term Clinical Benefit to Bovine Collagen Implant Augmentation in Primary Rotator Cuff Repair: A Matched Retrospective Study used a single surgeon, minimum two year retrospective, matched, comparative study of patients who underwent primary arthroscopic repair of partial or full-thickness rotator cuff tears to determine (1) whether the proportion of patients undergoing re-operation for postoperative stiffness and inflammation differed between patients having cuff repair with a bovine collagen implant (Regeneten) and patients having cuff repair without the implant, (2) whether short-term patient-reported outcomes differed between the two groups, and (3) whether the proportion of patients receiving postoperative methylprednisolone prescriptions and corticosteroid injections differed between the two groups.

They found that a greater proportion of patients in the bovine collagen implant group (9% [4 of 47]) underwent reoperation for inflammation and stiffness than in the control group (0% [0 of 94]). At minimum 2-year follow-up, patients receiving the Regeneten implant did not have better reported outcomes:  American Shoulder and Elbow Surgeon score (81 ± 24 implant versus 85 ±19 control, SSV (79 ± 24 implant versus 85 ± 18 control), VAS score for pain (2.0 ± 2.9 implant versus 1.5 ± 2.3 control). The cohorts did not differ in the proportion who received postoperative corticosteroid injections or methylprednisolone prescriptions.

They concluded that "at minimum 2-year follow-up, patients undergoing primary arthroscopic rotator cuff repair with bovine collagen implant augmentation had a greater proportion of re-operation due to inflammation and stiffness compared with patients who did not receive the implant. Furthermore, the implant offered no benefit in patient-reported outcomes or need for postoperative corticosteroid injections or methylprednisolone prescriptions. Because of the lack of clinical benefit and potential increase in postoperative complications, we recommend against the use of these bovine collagen implants unless high-quality randomized controlled trials are able to demonstrate their clinical effectiveness, cost-effectiveness, and overall safety."

The authors of Bioinductive patch as an augmentation for rotator cuff repair, a systematic review and meta-analysis found that patient-reported outcome improvements with Regeneten (cow collagen) were not superior to improvements for standard rototor cuff repair; a similar proportion of patients achieved the minimal clinically important difference as for standard repair. The overall complication rate with the bioinductive patch was 16%, most commonly for stiffness and capsulitis.

The authors of Effect of Porcine-Derived Absorbable Patch-Type Atelocollagen for Arthroscopic Rotator Cuff Repair compared standard rotator cuff repair to repair with a type-I atelocollagen absorbable patch derived from pigs (RegenSeal) in patients having rotator cuff repair. For the atelocollagen group, before securing the lateral anchors,  porcine-derived absorbable patch-type atelocollagen was inserted between the footprint and the tendon. They found no significant differences in pre to postoperative improvement in Constant Score, pain, other functional scores, and range of motion between the groups at 1 year postoperatively.

The authors Acellular Collagen Matrix Patch Augmentation of Arthroscopic Rotator Cuff Repair Reduces Re-TearRates: A Meta-analysis of Randomized Control Trials  pooled outcomes of studies found that in 5 studies with 156 patients augmented with ACMP and 151 controls, the average final Constant score was 90 in the ACMP group and 87 in controls. This difference did not exceed the minimal clinically important difference for the Constant score (10 points).  In 3 studies with 64 patients augmented with ACMP and 61 controls, the average American Shoulder and Elbow Surgeons Score score was 87 in the ACMP group and 82 in controls.  This difference did not exceed the minimal clinically important difference for the ASES (20 points). 

See also:

AAOS: Strong recommendation for "bioinductive tendon implants to augment rotator cuff repair"

The value of the Regeneten bioinductive implant in managing rotator cuff disease: what does the literature say?


Comment: A strong recommendation from our Academy could conceivably put patients and surgeons at risk if this recommendation were not followed. In the case of rotator cuff repair, evidence that porcine or bovine patches are of clinically significant benefit in terms of patient-reported outcomes seems to be lacking. Until more convincing data become available, it may be appropriate to consider modifying the recommendation for the use of these implants in cuff repair.


Worthy of discussion


Ravens and Red Tailed Hawk

Union Bay Natural Area

2020



Follow on twitter/X: https://x.com/RickMatsen
Follow on facebook: https://www.facebook.com/shoulder.arthritis
Follow on LinkedIn: https://www.linkedin.com/in/rick-matsen-88b1a8133/

Here are some videos that are of shoulder interest
Shoulder arthritis - what you need to know (see this link).
How to x-ray the shoulder (see this link).
The ream and run procedure (see this link)
The total shoulder arthroplasty (see this link)
The cuff tear arthropathy arthroplasty (see this link).
The reverse total shoulder arthroplasty (see this link).
The smooth and move procedure for irreparable rotator cuff tears (see this link)
Shoulder rehabilitation exercises (see this link).


Sunday, September 28, 2025

The "Secret Sauce" for Optimizing Rotator Cuff Outcomes: Biologics or nutrition?

There is great current interest by industry and by some surgeons in the use of "biologics" to enhance outcomes of rotator cuff surgery.


At this point, however, the value of these interventions in terms of improvement in patient reported outcomes per unit cost is uncertain.

On the other hand a different type of biological intervention - nutrition - is of demonstrated value to the patient.



In our last post, Reza Jazayeri and Hafiz Kassam highlighted the growing recognition that perioperative nutritional optimization is a critical and modifiable factor in shoulder arthroplasty. Poorly nourished patients face double the risk of infection and revision, while even “healthy” patients often fail to meet the metabolic demands triggered by surgery. With elective arthroplasty, we have the opportunity to “prehabilitate” patients nutritionally, improving their resilience to the hypermetabolic-catabolic stress of surgery (Preoperative malnutrition is associated with increased risk of 90-day major medical complications and increased 2-year revision rates following total shoulder arthroplasty).


Reza and Hafiz prepared this post on the application of this approach to patients having cuff repair surgery.

Why rotator cuff repair is an even greater challenge

Unlike arthroplasty, rotator cuff repair (RCR) requires direct tendon-to-bone healing — a biologically demanding process with higher metabolic thresholds. Recent data underscore this reality.

  • Patients ≥65 undergoing RCR with a Geriatric Nutritional Risk Index <103 had a ~5.6× higher risk of retear compared to those ≥103, even after adjustment for confounders (Preoperative Nutrition Impacts Retear Rate After Arthroscopic Rotator Cuff Repair)

  • Notably, this >103 cutoff is higher than arthroplasty thresholds (>98), reflecting the greater biologic demand of tendon-to-bone healing.

  • Alarmingly, 66% of patients were not optimized, highlighting a major opportunity for intervention .


Nutrition education & dietary intervention

Meeting these elevated demands requires deliberate action. High-protein diets and patient education programs have been shown to be effective.


Targeted supplementation: beyond diet

Diet alone is often insufficient to meet perioperative anabolic demands. Evidence supports the use of targeted supplementation, particularly in the immediate perioperative window spanning 1 week pre-op (priming phase) to 2 weeks post-op (hypermetabolic phase).(Pre- and Post-Surgical Nutrition for Preservation of Muscle Mass, Strength, and Functionality Following Orthopedic Surgery)


  • Creatine & HMB (Hydroxymethylbutyrate-a leucine metabolite) — both have been well studied in both sarcopenia and sports performance, shown to reduce muscle loss (anti-catabolic), enhance muscle protein synthesis, and improve strength are now being implemented in surgical recovery.


  • Conditionally essential amino acids (arginine, glutamine) — key substrates for collagen and bone synthesis,  nitric oxide–mediated blood flow, and immune function. In a JBJS 2022 RCT of  trauma patients, 2 weeks of postop supplementation led to significant reduction in complications, preservation of muscle mass and improved fracture union rates. (Conditionally Essential Amino Acid Supplementation Reduces Postoperative Complications and Muscle Wasting )

Advances in nutritional science and basic research are increasingly translating into clinical practice. Emerging data now support targeted supplementation strategies that can be implemented in orthopedic surgery to improve outcomes by providing the key substrates needed to meet the hypermetabolic demands of the surgical stress response.

It is exciting that we now have clinically formulated supplementation protocolscombining these select nutrients supported by clinical studies that can be used to provide meaningful support for our patients. (Selected Nutrients to Oppose Muscle Disuse Following Arthroscopic Orthopedic Surgery)

Nutrition should no longer be neglected as a variable in surgical recovery. We now have the practical resources and evidence-based strategies to address this critical determinant of patient outcomes.

General guidelines for patients having rotator cuff surgery

1. Protein: Foundation for Healing

  • Target intake: ~1.6–2.0 g/kg/day (≈0.7–0.9 g/lb/day), spread across meals.
    For a 180 lb patient, that’s about 125–160 g/day.

  • Why: Adequate protein supplies amino acids for collagen synthesis and muscle preservation.

  • Sources: Lean poultry, fish, eggs, Greek yogurt, whey or collagen peptides, tofu, beans.


2. Collagen & Vitamin C

  • Collagen peptides (10–15 g/day) may support tendon healing when paired with vitamin C.

  • Vitamin C (at least 75–100 mg) helps activate collagen cross-linking.

  • Practical tip: Take collagen powder with a glass of orange juice about an hour before rehab exercises.


3. Anti-Inflammatory Support

  • Omega-3 fatty acids (EPA + DHA, 1–3 g/day): May reduce inflammation and pain. Found in fatty fish (salmon, sardines) or fish oil.

  • Fruits and vegetables: Rich in antioxidants and polyphenols (berries, leafy greens, peppers).

  • Spices: Turmeric and ginger have modest anti-inflammatory effects.


4. Micronutrients Critical for Recovery

  • Vitamin D: Supports bone, muscle, and immune health. Ensure serum levels are adequate; supplement if low (often 1000–2000 IU/day).

  • Calcium: 1000–1200 mg/day from diet (dairy, fortified alternatives, greens).

  • Zinc: Important for wound healing (found in meat, shellfish, nuts).

  • Magnesium: Aids in muscle and nerve function (nuts, seeds, whole grains).


5. Energy Balance

  • Adequate calories are essential.

    • Too few: impaired wound and tendon healing.

    • Too many: risk of fat gain during limited activity.

  • Emphasize nutrient-dense foods rather than empty calories.


6. Timing Around Surgery

  • Pre-op (2–4 weeks before): Focus on optimizing protein intake, correcting vitamin D deficiency, and ensuring good hydration and fiber for bowel health.

  • Immediate post-op: Small, protein-rich meals; hydration; avoid constipation from pain medications.

  • Rehab phase: Time protein (and collagen + vitamin C) before therapy sessions to support muscle protein synthesis and tendon adaptation.


Bottom line:
Patients undergoing rotator cuff repair can optimize nutrition by ensuring high-quality protein, collagen + vitamin C, omega-3s, vitamin D, and overall nutrient adequacy, while avoiding undernutrition. The goal is to fuel healing, preserve muscle, and support tendon/bone recovery.





What goes in your mouth has a lot to do with how you heal


Lewis' Woodpecker

Oak Creek Wildlife Feeding Center

2022

You can support cutting edge shoulder research that is leading to better care for patients with shoulder problems, click on this link

Follow on twitter/X: https://x.com/RickMatsen
Follow on facebook: https://www.facebook.com/shoulder.arthritis
Follow on LinkedIn: https://www.linkedin.com/in/rick-matsen-88b1a8133/

Here are some videos that are of shoulder interest
Shoulder arthritis - what you need to know (see this link).
How to x-ray the shoulder (see this link).
The ream and run procedure (see this link).
The total shoulder arthroplasty (see this link).
The cuff tear arthropathy arthroplasty (see this link).
The reverse total shoulder arthroplasty (see this link).
The smooth and move procedure for irreparable rotator cuff tears (see this link)
Shoulder rehabilitation exercises (see this link).