Literature DB >> 22732227

Therapeutic potential of anterior cruciate ligament-derived stem cells for anterior cruciate ligament reconstruction.

Yutaka Mifune1, Tomoyuki Matsumoto, Shusuke Ota, Makoto Nishimori, Arvydas Usas, Sebastian Kopf, Ryosuke Kuroda, Masahiro Kurosaka, Freddie H Fu, Johnny Huard.   

Abstract

We recently reported that the ruptured regions of the human anterior cruciate ligament (ACL) contained vascular-derived stem cells, which showed the potential for high expansion and multilineage differentiation. In this study, we performed experiments to test the hypothesis that ACL-derived CD34(+) cells could contribute to tendon-bone healing. ACL-derived cells were isolated from the rupture site of human ACL by fluorescence-activated cell sorting. Following ACL reconstruction, immunodeficient rats received intracapsular administration of either ACL-derived CD34(+) cells, nonsorted (NS) cells, CD34(+) cells, or phosphate-buffered saline (PBS). We also performed in vitro cell proliferation assays and enzyme-linked immunosorbent assays for vascular endothelial growth factor (VEGF) secretion. We confirmed the recruitment of the transplanted cells into the perigraft site after intracapuslar injection by immunohistochemical staining at week 1. Histological evaluation showed a greater area of collagen fiber formation and more collagen type II expression in the CD34(+) group than the other groups at the week 2 time point. Immunostaining with isolectin B4 and rat osteocalcin demonstrated enhanced angiogenesis and osteogenesis in the CD34(+) group at week 2. Moreover, double immunohistochemical staining for human-specific endothelial cell (EC) and osteoblast (OB) markers at week 2 demonstrated a greater ability of differentiation into ECs and OBs in the CD34(+) group. Microcomputerized tomography showed the greatest healing of perigraft bone at week 4 in the CD34(+) cell group, and the failure load of tensile test at week 8 demonstrated the greatest biomechanical strength in the CD34(+) group. Furthermore, the in vitro studies indicated that the CD34(+) group was superior to the other groups in their cell proliferation and VEGF secretion capacities. We demonstrated that ACL-derived CD34(+) cells contributed to the tendon-bone healing after ACL reconstruction via the enhancement of angiogenesis and osteogenesis, which also contributed to an increase in biomechanical strength.

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Year:  2012        PMID: 22732227     DOI: 10.3727/096368912X647234

Source DB:  PubMed          Journal:  Cell Transplant        ISSN: 0963-6897            Impact factor:   4.064


  26 in total

1.  Human iPSC-derived neural crest stem cells promote tendon repair in a rat patellar tendon window defect model.

Authors:  Wei Xu; Yequan Wang; Erfu Liu; Yanjun Sun; Ziwei Luo; Zhiling Xu; Wanqian Liu; Li Zhong; Yonggang Lv; Aijun Wang; Zhenyu Tang; Song Li; Li Yang
Journal:  Tissue Eng Part A       Date:  2013-08-09       Impact factor: 3.845

2.  Peri-tunnel bone loss: does it affect early tendon graft to bone tunnel healing after ACL reconstruction?

Authors:  Pauline Po Yee Lui; Yuk Wa Lee; Tsui Yu Mok; Yau Chuk Cheuk
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2015-03       Impact factor: 4.342

3.  Bioethics in practice: a quarterly column about medical ethics: stem cell ethics.

Authors:  Deryk Jones
Journal:  Ochsner J       Date:  2013

4.  Updates in biological therapies for knee injuries: anterior cruciate ligament.

Authors:  Carlos Eduardo da Silveira Franciozi; Sheila Jean McNeill Ingham; Guilherme Conforto Gracitelli; Marcus Vinicius Malheiros Luzo; Freddie H Fu; Rene Jorge Abdalla
Journal:  Curr Rev Musculoskelet Med       Date:  2014-09

Review 5.  Stem cell therapy: a promising biological strategy for tendon-bone healing after anterior cruciate ligament reconstruction.

Authors:  Zi-Chen Hao; Shan-Zheng Wang; Xue-Jun Zhang; Jun Lu
Journal:  Cell Prolif       Date:  2016-03-01       Impact factor: 6.831

6.  Therapeutic potential of vascular stem cells for anterior cruciate ligament reconstruction.

Authors:  Tomoyuki Matsumoto; Koji Takayama; Shinya Hayashi; Takahiro Niikura; Takehiko Matsushita; Ryosuke Kuroda
Journal:  Ann Transl Med       Date:  2019-12

Review 7.  Cellular therapy in bone-tendon interface regeneration.

Authors:  Benjamin B Rothrauff; Rocky S Tuan
Journal:  Organogenesis       Date:  2013-12-09       Impact factor: 2.500

8.  Mesenchymal stem cells reside in anterior cruciate ligament remnants in situ.

Authors:  Weili Fu; Qi Li; Xin Tang; Gang Chen; Chenghao Zhang; Jian Li
Journal:  Int Orthop       Date:  2015-07-31       Impact factor: 3.075

Review 9.  Tendon and Ligament Healing and Current Approaches to Tendon and Ligament Regeneration.

Authors:  Natalie L Leong; Jamie L Kator; Thomas L Clemens; Aaron James; Motomi Enamoto-Iwamoto; Jie Jiang
Journal:  J Orthop Res       Date:  2019-09-30       Impact factor: 3.494

10.  Manual khalifa therapy improves functional and morphological outcome of patients with anterior cruciate ligament rupture in the knee: a randomized controlled trial.

Authors:  Michael Ofner; Andreas Kastner; Engelbert Wallenboeck; Robert Pehn; Frank Schneider; Reinhard Groell; Dieter Szolar; Harald Walach; Gerhard Litscher; Andreas Sandner-Kiesling
Journal:  Evid Based Complement Alternat Med       Date:  2014-01-30       Impact factor: 2.629

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