Advances in mesenchymal stem cell transplantation for the treatment of osteoporosis

Достижения в трансплантации мезенхимальных стволовых клеток для лечения остеопороза
Ping Zhang, Yongsheng Zhou, Longwei Lv, Yuhe Jiang, Xiao Zhang
2020-11-18

bone mineral densitygene-modified MSCsmesenchymal stem cell transplantationosteogenic differentiationosteoporosis
Osteoporosis is a systemic metabolic bone disease with characteristics of bone loss and microstructural degeneration. The personal and societal costs of osteoporosis are increasing year by year as the ageing of population, posing challenges to public health care. Homing disorders, impaired capability of osteogenic differentiation, senescence of mesenchymal stem cells (MSCs), an imbalanced microenvironment, and disordered immunoregulation play important roles during the pathogenesis of osteoporosis. The MSC transplantation promises to increase osteoblast differentiation and block osteoclast activation, and to rebalance bone formation and resorption. Preclinical investigations on MSC transplantation in the osteoporosis treatment provide evidences of enhancing osteogenic differentiation, increasing bone mineral density, and halting the deterioration of osteoporosis. Meanwhile, the latest techniques, such as gene modification, targeted modification and co-transplantation, are promising approaches to enhance the therapeutic effect and efficacy of MSCs. In addition, clinical trials of MSC therapy to treat osteoporosis are underway, which will fill the gap of clinical data. Although MSCs tend to be effective to treat osteoporosis, the urgent issues of safety, transplant efficiency and standardization of the manufacturing process have to be settled. Moreover, a comprehensive evaluation of clinical trials, including safety and efficacy, is still needed as an important basis for clinical translation.
1
Clinical translation remains limited by unresolved safety, transplantation efficiency, manufacturing standardization, and insufficient comprehensive clinical-trial evidence.
2
Gene modification, targeted modification, and co-transplantation are emerging strategies to improve MSC therapeutic efficacy.
3
MSC transplantation may restore bone remodeling by promoting osteoblast differentiation and inhibiting osteoclast activation.
4
Osteoporosis involves MSC homing defects, impaired osteogenic differentiation, cellular senescence, disrupted microenvironment, and abnormal immunoregulation.
5
Preclinical studies indicate that MSC transplantation enhances osteogenic differentiation, increases bone mineral density, and slows osteoporosis progression.

mesenchymal stem cell transplantation for osteoporosis

therapeutic effects and clinical translation of mesenchymal stem cell transplantation, including osteogenic differentiation, bone mineral density, osteoclast activation, safety, efficacy, transplant efficiency, and manufacturing standardization

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2020-11-18
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Ping Zhang
Yongsheng Zhou
Longwei Lv
Yuhe Jiang
Xiao Zhang
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