Orthobiologic Treatment of Ligament Injuries

Hauser R.A. Dolan E.E. Phillips H.J. et al.

Ligament injury and healing: a review of current clinical diagnostics and therapeutics.

Open Rehabil J. 6: 1-20Kunze K.N. Pakanati M.S. Vadhera B.S. et al.

The efficacy of platelet rich plasma for ligament injuries, A systematic review of basic science literature with protocol quality assessment.

Orthop J Sports Med. 10: 1-25Mautner K. Malanga G.A. Smith J. et al.

A call for a standard classification system for future biologic research: the rationale for new PRP nomenclature.

Pm r. 7: S53-S59Murray I.R. Geeslin A.G. Goudie E.B. et al.

Minimum information for studies evaluating biologics in orthopaedics (MIBO).

J Bone Joint Surg. 99: 809-819

Soft -tissue physiology and repair.

in: Vaccaro A.R. Orthopedic knowledge update 8. American Academy of Orthopedic Surgeons, Rosemont, IL: 15-27 ()Anitua E. Andia I. Ardanzanz B. et al.

Autologous platelets as a source of proteins for healing and tissue regeneration.

Thronb Heamost. 91: 4-15Monaco J.L. Lawrence W.T.

Acute wound healing an overview.

Clin Plast Surg. 30: 1-12Broughton 2nd, G. Janis J.E. Attinger C.E.

The basic science of wound healing.

Plast Reconstr Surg. 117: 12S-34S

Cutaneous wound healing.

N Engl J Med. 341: 738746

Parrish WR, Roides B. Physiology of blood components in wound healing: an appreciation of cellular co-operativity in platelet rich plasma action. J Exec Sports Orthop.4(2):1-14. DOI:10.15226/2374-6904/4/2/00156.

Basic science of wound healing.

Surgery (Oxford). 26: 31-37Santos M.T. Valles J. Aznar J. et al.

Role of red blood cells in the early stages of platelet activation by collagen.

Thromb Haemost. 56: 376381Whelihan M.F. Zachary V. Orfeo T. et al.

Prothrombin activation in blood coagulation: the erythrocyte contribution to thrombin generation.

Blood. 120: 3837-3845

Thrombin generation and fibrin clot structure.

Blood Rev. 21: 131-142Dohan Ehrenfest D.M. Bielecki T. Mishra A. et al.

In search of a consensus terminology in the field of platelet concentrates for surgical use: platelet-rich plasma (PRP), platelet-rich fibrin (PRF), fibrin gel polymerization and leukocytes.

Curr Pharm Biotechnol. 13: 1131-1137de Witt S.M. Verdoold R. Cosemans J.M. et al.

Insights into platelet-based control of coagulation.

Thromb Res. 133: S139-S148

Platelet alpha-granules: basic biology and clinical correlates.

Blood Rev. 23: 177-189

The platelet release reaction: granules' constituents, secretion, and functions.

Platelets. 12: 261-273Golebiewska E.M. Poole A.W.

Platelet secretion: From haemostasis to wound healing and beyond.

Blood Rev. 29: 153-162Italiano Jr., J.E. Battinelli E.M.

Selective sorting of alpha-granule proteins.

J Thromb Haemost. 7: 173-176Zarbock A. Polanowska-Grabowska R.K. Ley K.

Platelet-neutrophil-interactions: linking hemostasis and inflammation.

Blood Rev. 21: 99-111Cerletti C. de G.G. Lorenzet R.

Platelet - leukocyte interactions: multiple links between inflammation, blood coagulation and vascular risk.

Mediterr J Hematol Infect Dis. 2: e2010023Weyrich A.S. Zimmerman G.A.

Platelets: signaling cells in the immune continuum.

Trends Immunol. 25: 489-495

Platelets, inflammation, and tissue regeneration.

Thromb Haemost. 105: S13-S33

Platelet chemokines and chemokine receptors: linking hemostasis, inflammation, and host defense.

Microcirculation. 10: 335350Demidova-Rice T.N. Hamblin M.R. Herman I.M.

Acute and impaired wound healing: pathophysiology and current methods for drug delivery, part 1: normal and chronic wounds: biology, causes, and approaches to care.

Adv Skin Wound Care. 25: 304-314

Thrombin as a regulator of inflammation and reparative processes in tissues.

Biochemistry (Mosc). 66: 8-18Suo Z. Citron B.A. Festoff B.W.

Thrombin: a potential proinflammatory mediator in neurotrauma and neurodegenerative disorders.

Curr Drug Targets Inflamm Allergy. 3: 105-114Condliffe A.M. Kitchen E. Chilvers E.R.

Neutrophil priming: pathophysiological consequences and underlying mechanisms.

Clin Sci (Lond). 94: 461-471

Neutrophils inhibit platelet reactivity by multiple mechanisms: relevance to thromboregulation.

J Lab Clin Med. 116: 138-139

Diverse novel functions of neutrophils in immunity, inflammation, and beyond.

J Exp Med. 210: 1283-1299Bazzoni G. Dejana E. Del Maschio A.

Platelet-neutrophil interactions. Possible relevance in the pathogenesis of thrombosis and inflammation.

Haematologica. 76: 491-499

Neutrophil priming: the cellular signals that say 'amber' but not 'green.

Immunol Today. 16: 264-268Shen L. Smith J.M. Shen Z. et al.

Inhibition of human neutrophil degranulation by transforming growth factor-beta1.

Clin Exp Immunol. 149: 155-161Spisani S. Giuliani A.L. Cavalletti T. et al.

Modulation of neutrophil functions by activated platelet release factors.

Inflammation. 16: 147-158Del M.A. Dejana E. Bazzoni G.

Bidirectional modulation of platelet and polymorphonuclear leukocyte activities.

Ann Hematol. 67: 23-31Della Corte A. Maugeri N. Pampuch A. et al.

Application of 2-dimensional difference gel electrophoresis (2D-DIGE) to the study of thrombin-activated human platelet secretome.

Platelets. 19: 43-50Rex S. Beaulieu L.M. Perlman D.H. et al.

Immune versus thrombotic stimulation of platelets differentially regulates signaling pathways, intracellular protein-protein interactions, and alpha-granule release.

Thromb Haemost. 102: 97-110Halpern B.C. Chaudhury S. Rodeo S.A.

The role of platelet-rich plasma in inducing musculoskeletal tissue healing.

HSS J. 8: 137-145Schaffer C.J. Nanney L.B.

Cell biology of wound healing.

Int Rev Cytol. 169: 151-181Bielecki T. Dohan Ehrenfest D.M. Everts P.A. et al.

The role of leukocytes from L-PRP/L-PRF in wound healing and immune defense: new perspectives.

Curr Pharm Biotechnol. 13: 1153-1162Ekpenyong A.E. Toepfner N. Chilvers E.R. et al.

Mechanotransduction in neutrophil activation and deactivation.

Biochim Biophys Acta. 1853: 3105-3116Singh N.R. Johnson A. Peters A.M. et al.

Acute lung injury results from failure of neutrophil de-priming: a new hypothesis.

Eur J Clin Invest. 42: 1342-1349Aquino E.N. Neves A.C. Santos K.C. et al.

Proteomic Analysis of Neutrophil Priming by PAF.

Protein Pept Lett. 23: 142-151Mariani E. Canella V. Cattini L. et al.

Leukocyte-Rich Platelet-Rich Plasma Injections Do Not Up-Modulate Intra-Articular Pro-Inflammatory Cytokines in the Osteoarthritic Knee.

PLoS One. 11: e0156137

Resolution of inflammation: the beginning programs the end.

Nat Immunol. 6: 1191-1197

Novel omega -- 3-derived local mediators in anti-inflammation and resolution.

Pharmacol Ther. 105: 7-21

Neutrophils as firemen, production of anti-inflammatory mediators by neutrophils in a mixed cell environment.

Cell Immunol. 231: 126-132Sugimoto M.A. Sousa L.P. Pinho V. et al.

Resolution of Inflammation: What Controls Its Onset?.

Front Immunol. 7: 160

Phagocyte partnership during the onset and resolution of inflammation.

Nat Rev Immunol. 10: 427-439Ortega-Gomez A. Perretti M. Soehnlein O.

Resolution of inflammation: an integrated view.

EMBO Mol Med. 5: 661-674

New insights into the resolution of inflammation.

Semin Immunol. 27: 161-168Andia I. Sanchez M. Maffulli N.

Tendon healing and platelet-rich plasma therapies.

Expert Opin Biol Ther. 10: 1415-1426

Dean R, DePhillipo N, LaPrade R. Ligament Lesions: Cell Therapy. In G. Filardo et al. (eds.), Orthobiologics, Chap 20, 245-255, https://doi.org.org/10.1007/978-3-084744-9_20.

Nguyen D. Ramwadhdoebe T. et al.

Intrinsic healing response of the human anterior cruciate ligament: a historical study of reattached ACL remnants.

J Orthop Res. 132: 296-301

Pathophysiology of acute wound healing.

Clin Dermatol. 25: 9-18Thackham J.A. McElwain D.L. Long R.J.

The use of hyperbaric oxygen therapy to treat chronic wounds: a review.

Wound Repair Regen. 16: 321-330

Hanging in the balance: endogenous anti-inflammatory mechanisms in tissue repair and fibrosis.

J Pathol. 229: 250-263Darby I.A. Laverdet B. Bonte F. et al.

Fibroblasts and myofibroblasts in wound healing.

Clin Cosmet Investig Dermatol. 7: 301-311Desmouliere A. Chaponnier C. Gabbiani G.

Tissue repair, contraction, and the myofibroblast.

Wound Repair Regen. 13: 7-12

Formation and function of the myofibroblast during tissue repair.

J Invest Dermatol. 127: 526-537Xue M. Le N.T. Jackson C.J.

Targeting matrix metalloproteases to improve cutaneous wound healing.

Expert Opin Ther Targets. 10: 143-155McCawley L.J. Matrisian L.M.

Matrix metalloproteinases: they're not just for matrix anymore.

Curr Opin Cell Biol. 13: 534-540

The biology of scar formation.

Phys Ther. 69: 1014-1024Bray R.C. Leonard C.A. Salo P.T.

Vascular Physiology and long-term healing of partial ligament tears.

J Orthop Res. 20: 984-989

Biology of anterior cruciate ligament injury and repair: kappa delta anndoner vaughn award paper 2013.

J Orthop Res. 31: 1509 -6Murray M.M. Spindler K.P. Ballard P. et al.

Enhanced histologic repair in a central wound of the anterior cruciate ligament with a collagen-platelet-rich plasma scaffold.

J Orthop Res. 25: 1007-1017Murray M.M. Martin S.D. Martin T.L. et al.

Histological changes in the human anterior cruciate ligament after rupture.

J Bone Jt Surg Am. 82: 1387-1397Dines J. Williams P. ElAttrache N. et al.

Platelet-rich plasma can be used to successfully treat elbow ulnar collateral ligament insufficiency in high-level throwers.

Am J Orthop. 45: 296-300Keller R.A. Steffes M.J. Zhuo D. et al.

The effects of medial ulnar collateral ligament reconstruction on Major League pitching performance.

J Shoulder Elbow Surg. 23: 1591-1598Deal J. Smith E. Heard W. et al.

Platelet-rich plasma for primary treatment of partial ulnar collateral ligament tears: MRI correlation with results.

Orthop J Sports Med. 5 (): 1Azar F.M. Andrews J.R. Wilk K.E. et al.

Operative treatment of ulnar collateral ligament injuries of the elbow in athletes.

Am J Sports Med. 28: 16-23Cain Jr., E.L. Andrews J.R. Dugas J.R. et al.

Outcome of ulnar collateral ligament reconstruction of the elbow in 1281 athletes: results in 743 athletes with minimum 2-year follow-up.

Am J Sports Med. 38: 2426-2434

The outcome of elbow ulnar collateral ligament reconstruction in overhead athletes: a systematic review.

Am J Sports Med. 36: 1193-1205Jobe F.W. Stark H. Lombardo S.J.

Reconstruction of the ulnar collateral ligament in athletes.

J Bone Joint Surg Am. 68: 1158-1163Savoie III, F.H. Morgan C. Yaste J. et al.

Medial ulnar collateral ligament reconstruction using hamstring allograft in overhead throwing athletes.

J Bone Joint Surg Am. 95: 1062-1066Savoie III, F.H. Trenhaile S.W. Roberts J. et al.

Primary repair of ulnar collateral ligament injuries of the elbow in young athletes: a case series of injuries to the proximal and distal ends of the ligament.

Am J Sports Med. 36: 1066-1072Chahla J. Kennedy M. Aman Z.

the prod R. Orthobiologics for ligament repair and reconstruction.

Clin Sports Med. 38: 97-107Erickson B.J. Gupta A.K. Harris J.D. et al.

Rate of return to pitching and performance after Tommy John surgery in Major League Baseball pitchers.

Am J Sports Med. 42: 536-543Makhni E.C. Lee R.W. Morrow Z.S. et al.

Performance, return to competition, and reinjury after Tommy John surgery in major league baseball pitchers: a review of 147 cases.

Am J Sports Med. 42: 1323-1332Osbahr D.C. Cain Jr., E.L. Raines B.T. et al.

Long-term outcomes after ulnar collateral ligament reconstruction in competitive baseball players: minimum 10-year follow-up.

Am J Sports Med. 42: 1333-1342Park J.Y. Oh K.S. Bahng S.C. et al.

Does well-maintained graft provide consistent return to play after medial ulnar collateral ligament reconstruction of the elbow joint in elite baseball players?.

Clin Orthop Surg. 6: 190-195Rohrbough J.T. Altchek D.W. Hyman J. et al.

Medial collateral ligament reconstruction of the elbow using the docking technique.

Am J Sports Med. 30: 541-548Conway J.E. Jobe F.W. Glousman R.E. et al.

Medial instability of the elbow in throwing athletes. Treatment by repair or reconstruction of the ulnar collateral lig10(2), ament.

J Bone Joint Surg Am. 74: 67-83Dodson C.C. Thomas A. Dines J.S. et al.

Medial ulnar collateral ligament reconstruction of the elbow in throwing athletes.

Am J Sports Med. 34: 1926-1932Podesta L. Crow S.A. Volkmer D. et al.

Treatment of partial ulnar collateral ligament tears in the elbow with platelet-rich plasma.

Am J Sports Med. 41: 1689-1694Rettig A.C. Sherrill C. Snead D.S. et al.

Nonoperative treatment of ulnar collateral ligament injuries in throwing athletes.

Am J Sports Med. 29: 15-17Chen X. Jones I.A. Park C. et al.

The efficacy of platelet-rich plasma on tendon and ligament healing: a systematic review and meta- analysis with bias assessment.

Am J Sports Med. 46: 2020-2032Filardo G. Di Matteo B. Kon E. et al.

Platelet-rich plasma in tendon-related disorders: results and indications.

Knee Surg Sports Traumatol Arthrosc. 26: 1984-1999Del Torto M. Enea D. Panfoli N. et al.

Hamstrings anterior cruciate ligament reconstruction with and without platelet rich fibrin matrix.

Knee Surg Sports Traumatol Arthrosc. 23: 3614-3622Boswell S.G. Cole B.J. Sundman E.A. et al.

Platelet-rich plasma: a milieu of bioactive factors.

Arthroscopy. 28 (): 429-439Magnussen R.A. Flanigan D.C. Pedroza A.D. et al.

Platelet-rich plasma use in allograft ACL reconstructions: two-year clinical results of a MOON cohort study.

Knee. 20: 277-280Mirzatolooei F. Alamdari M.T. Khalkhali H.R.

The impact of platelet-rich plasma on the prevention of tunnel widening in anterior cruciate ligament reconstruction using quadrupled autologous hamstring tendon: a randomised clinical trial.

Bone Joint J. 95: 65-69Valenti Azcarate A. Lamo-Espinosa J. Aquerreta Beola J.D. et al.

Comparison between two different platelet-rich plasma preparations and control applied during anterior cruciate ligament reconstruction: is there any evidence to support their use?.

Injury. 45: S36-S41Buckely P. Morris E. Robbins C. et al.

Variations in blood supply from proximal to distal in the ulnar collateral ligament of the elbow: a qualitative descriptive cadaveric study.

Am J Sports Med. 47: 1117-1123Frangiamore S.J. Lynch T.S. Vaughn M.D. et al.

Magnetic resonance imaging predictors of failure in the nonoperative management of ulnar collateral ligament injuries in professional baseball pitchers.

Am J Sports Med. 45: 1783-1789

Podesta L. Orthobiologics and the UCL: Treatment or delaying surgical treatment: The Overhead Athlete, Annual Assembly of the American Academy of Physical Medicine and Rehabilitation 2019, San Antonio, TX, November 14, 2019.

Podesta L. Ulnar Collateral Ligament (UCL) Treatment with PRP & BMC in the Throwing Athlete, TOBI Virtual, 11th Annual Orthobiologics Symposium, June 13, 2020.

Podesta L. Orthobiologics and the UCL: Treatment or delaying surgical intervention? 34th Annual Kerlan-Jobe Alumni Research Conference, July 8, 2020.

Lopez-Vidriero E. Goulding K.A. Simon D.A. et al.

The use of platelet-rich plasma in arthroscopy and sports medicine: optimizing the healing environment.

Arthroscopy. 26: 269-278Gobbi A. Karnatzikos G. Sankineani S.R. et al.

Biological augmentation of ACL re-fixation in partial lesions in a group of athletes: results at the 5-year follow-up.

Tech Orthop. 28: 180-184Centeno C.J. Pitts J. Al-Sayegh H. et al.

Anterior cruciate ligament tears treated with percutaneous injection of autologous bone marrow nucleated cells: A case series.

J Pain Res. 8: 437-447Centeno C. Markle J. Dodson E. et al.

Symptomatic anterior cruciate ligament tears treated with percutaneous injection of autologous bone marrow concentrate and platelet products: a non-controlled registry study.

J Transl Med. 16: 246Figueroa D. Figueroa F. Calvo R. et al.

Platelet-rich plasma used in anterior cruciate ligament surgery: Systematic review of the literature.

Art Ther. 31: 981-988Vogrin M. Rupreht M. Crnjac A. et al.

The effect of platelet-derived growth factors on the stability after anterior cruciate ligament reconstruction: a prospective randomized clinical study.

Wien Klin Wochenschr. 122: 91-95Dallo I. Chahla J. Mithchel J. et al.

Biologic approaches for the treatment of partial tears of the anterior cruciate ligament: a current concepts review.

Orthop J Sports Med. 5: 1-9Seijas R. Ares O. Cusco X. et al.

Partial anterior cruciate ligament tears treated with intraligamentary plasma rich in growth factors.

World J Orthop. 5: 373-378

Figueroa D, Guiloff R, Figueroa F. Ligament lesions: biologics. In Filardo G. et al. (eds.), Orthobiologics, Chap 21, 257-263, doi.org.org/10.1007/978-3-030-84744-9_21

Centeno C. Matthew L. Stemper I. et al.

Image-guided injection of anterior cruciate ligament tears with autologous bone marrow concentrate and platelets: mid-term analysis from a randomized controlled trial.

Ortho J. 3 (): e7-e20da Costa E.L. Teixeira L.E.M. Padua B.J. et al.

Biomechanical study of the effect of platelet-rich plasma on the treatment of medial collateral ligament injuries in rabbits.

Acta Cir Bras. 32: 827-835Yoshioka T. Kanamori A. Washio T. et al.

The effects of plasma rich in growth factors (PRGF-Endoret) on healing of medial collateral ligament of the knee.

Knee Surg Sports Traumatol Arthrosc. 21: 1763-1769Zou G. Zheng M. Chen W. et al.

Autologous platelet-rich plasma therapy for refractory pain after low-grade medial collateral ligament injury.

J Int Med Res. 48: 1-7Eirale C. Mauri E. Hamilton B.

Use of platelet rich plasma in an isolated complete medial collateral ligament lesion in a professional football (soccer) player: a case report.

Asian J Sports Med 2013. 4: 158-162

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