Clinical applications of stem cell-derived exosomes
Although stem cell-based therapy has demonstrated considerable potential to manage certain diseases more successfully than conventional surgery, it nevertheless comes with inescapable drawbacks that might limit its clinical translation. Compared to stem cells, stem cell-derived exosomes possess nume...
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Published in | Signal transduction and targeted therapy Vol. 9; no. 1; p. 17 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
12.01.2024
Nature Publishing Group |
Subjects | |
Online Access | Get full text |
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Abstract | Although stem cell-based therapy has demonstrated considerable potential to manage certain diseases more successfully than conventional surgery, it nevertheless comes with inescapable drawbacks that might limit its clinical translation. Compared to stem cells, stem cell-derived exosomes possess numerous advantages, such as non-immunogenicity, non-infusion toxicity, easy access, effortless preservation, and freedom from tumorigenic potential and ethical issues. Exosomes can inherit similar therapeutic effects from their parental cells such as embryonic stem cells and adult stem cells through vertical delivery of their pluripotency or multipotency. After a thorough search and meticulous dissection of relevant literature from the last five years, we present this comprehensive, up-to-date, specialty-specific and disease-oriented review to highlight the surgical application and potential of stem cell-derived exosomes. Exosomes derived from stem cells (e.g., embryonic, induced pluripotent, hematopoietic, mesenchymal, neural, and endothelial stem cells) are capable of treating numerous diseases encountered in orthopedic surgery, neurosurgery, plastic surgery, general surgery, cardiothoracic surgery, urology, head and neck surgery, ophthalmology, and obstetrics and gynecology. The diverse therapeutic effects of stem cells-derived exosomes are a hierarchical translation through tissue-specific responses, and cell-specific molecular signaling pathways. In this review, we highlight stem cell-derived exosomes as a viable and potent alternative to stem cell-based therapy in managing various surgical conditions. We recommend that future research combines wisdoms from surgeons, nanomedicine practitioners, and stem cell researchers in this relevant and intriguing research area. |
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AbstractList | Abstract Although stem cell-based therapy has demonstrated considerable potential to manage certain diseases more successfully than conventional surgery, it nevertheless comes with inescapable drawbacks that might limit its clinical translation. Compared to stem cells, stem cell-derived exosomes possess numerous advantages, such as non-immunogenicity, non-infusion toxicity, easy access, effortless preservation, and freedom from tumorigenic potential and ethical issues. Exosomes can inherit similar therapeutic effects from their parental cells such as embryonic stem cells and adult stem cells through vertical delivery of their pluripotency or multipotency. After a thorough search and meticulous dissection of relevant literature from the last five years, we present this comprehensive, up-to-date, specialty-specific and disease-oriented review to highlight the surgical application and potential of stem cell-derived exosomes. Exosomes derived from stem cells (e.g., embryonic, induced pluripotent, hematopoietic, mesenchymal, neural, and endothelial stem cells) are capable of treating numerous diseases encountered in orthopedic surgery, neurosurgery, plastic surgery, general surgery, cardiothoracic surgery, urology, head and neck surgery, ophthalmology, and obstetrics and gynecology. The diverse therapeutic effects of stem cells-derived exosomes are a hierarchical translation through tissue-specific responses, and cell-specific molecular signaling pathways. In this review, we highlight stem cell-derived exosomes as a viable and potent alternative to stem cell-based therapy in managing various surgical conditions. We recommend that future research combines wisdoms from surgeons, nanomedicine practitioners, and stem cell researchers in this relevant and intriguing research area. Although stem cell-based therapy has demonstrated considerable potential to manage certain diseases more successfully than conventional surgery, it nevertheless comes with inescapable drawbacks that might limit its clinical translation. Compared to stem cells, stem cell-derived exosomes possess numerous advantages, such as non-immunogenicity, non-infusion toxicity, easy access, effortless preservation, and freedom from tumorigenic potential and ethical issues. Exosomes can inherit similar therapeutic effects from their parental cells such as embryonic stem cells and adult stem cells through vertical delivery of their pluripotency or multipotency. After a thorough search and meticulous dissection of relevant literature from the last five years, we present this comprehensive, up-to-date, specialty-specific and disease-oriented review to highlight the surgical application and potential of stem cell-derived exosomes. Exosomes derived from stem cells (e.g., embryonic, induced pluripotent, hematopoietic, mesenchymal, neural, and endothelial stem cells) are capable of treating numerous diseases encountered in orthopedic surgery, neurosurgery, plastic surgery, general surgery, cardiothoracic surgery, urology, head and neck surgery, ophthalmology, and obstetrics and gynecology. The diverse therapeutic effects of stem cells-derived exosomes are a hierarchical translation through tissue-specific responses, and cell-specific molecular signaling pathways. In this review, we highlight stem cell-derived exosomes as a viable and potent alternative to stem cell-based therapy in managing various surgical conditions. We recommend that future research combines wisdoms from surgeons, nanomedicine practitioners, and stem cell researchers in this relevant and intriguing research area. Abstract Although stem cell-based therapy has demonstrated considerable potential to manage certain diseases more successfully than conventional surgery, it nevertheless comes with inescapable drawbacks that might limit its clinical translation. Compared to stem cells, stem cell-derived exosomes possess numerous advantages, such as non-immunogenicity, non-infusion toxicity, easy access, effortless preservation, and freedom from tumorigenic potential and ethical issues. Exosomes can inherit similar therapeutic effects from their parental cells such as embryonic stem cells and adult stem cells through vertical delivery of their pluripotency or multipotency. After a thorough search and meticulous dissection of relevant literature from the last five years, we present this comprehensive, up-to-date, specialty-specific and disease-oriented review to highlight the surgical application and potential of stem cell-derived exosomes. Exosomes derived from stem cells (e.g., embryonic, induced pluripotent, hematopoietic, mesenchymal, neural, and endothelial stem cells) are capable of treating numerous diseases encountered in orthopedic surgery, neurosurgery, plastic surgery, general surgery, cardiothoracic surgery, urology, head and neck surgery, ophthalmology, and obstetrics and gynecology. The diverse therapeutic effects of stem cells-derived exosomes are a hierarchical translation through tissue-specific responses, and cell-specific molecular signaling pathways. In this review, we highlight stem cell-derived exosomes as a viable and potent alternative to stem cell-based therapy in managing various surgical conditions. We recommend that future research combines wisdoms from surgeons, nanomedicine practitioners, and stem cell researchers in this relevant and intriguing research area. |
ArticleNumber | 17 |
Author | Shahzad, Khawar Li, Xuran Tan, Fei Wang, Zhao Li, Jiaojiao Zheng, Jialin |
Author_xml | – sequence: 1 givenname: Fei orcidid: 0000-0003-1010-0163 surname: Tan fullname: Tan, Fei email: iatrologist@163.com organization: Department of ORL-HNS, Shanghai Fourth People’s Hospital, and School of Medicine, Tongji University, Plasma Medicine and Surgical Implants Center, Tongji University, The Royal College of Surgeons in Ireland, The Royal College of Surgeons of England – sequence: 2 givenname: Xuran surname: Li fullname: Li, Xuran organization: Department of ORL-HNS, Shanghai Fourth People’s Hospital, and School of Medicine, Tongji University, Plasma Medicine and Surgical Implants Center, Tongji University – sequence: 3 givenname: Zhao surname: Wang fullname: Wang, Zhao organization: Department of ORL-HNS, Shanghai Fourth People’s Hospital, and School of Medicine, Tongji University – sequence: 4 givenname: Jiaojiao surname: Li fullname: Li, Jiaojiao organization: Department of ORL-HNS, Shanghai Fourth People’s Hospital, and School of Medicine, Tongji University, Plasma Medicine and Surgical Implants Center, Tongji University – sequence: 5 givenname: Khawar surname: Shahzad fullname: Shahzad, Khawar organization: Department of ORL-HNS, Shanghai Fourth People’s Hospital, and School of Medicine, Tongji University, Plasma Medicine and Surgical Implants Center, Tongji University – sequence: 6 givenname: Jialin orcidid: 0000-0003-2286-0151 surname: Zheng fullname: Zheng, Jialin organization: Center for Translational Neurodegeneration and Regenerative Therapy, Tongji Hospital affiliated to Tongji University School of Medicine, Shanghai Frontiers Science Center of Nanocatalytic Medicine, Tongji University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/38212307$$D View this record in MEDLINE/PubMed |
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SubjectTerms | 631/532/489 692/308/2778 692/699 Bone surgery Cancer Research Cell Biology Embryo cells Embryonic Stem Cells Exosomes Exosomes - metabolism Gynecology Heart surgery Immunogenicity Induced Pluripotent Stem Cells Internal Medicine Medicine Medicine & Public Health Mesenchymal Stem Cells - metabolism Nanotechnology Neural plasticity Neural stem cells Neurosurgery Obstetrics Oncology Pathology Pluripotency Review Article Stem cells Toxicity Translation |
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Title | Clinical applications of stem cell-derived exosomes |
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