journal
https://read.qxmd.com/read/38650667/potential-therapeutic-effects-and-nano-based-delivery-systems-of-mesenchymal-stem-cells-and-their-isolated-exosomes-to-alleviate-acute-respiratory-distress-syndrome-caused-by-covid-19
#1
REVIEW
Mohsen Ghiasi, Peyman Kheirandish Zarandi, Abdolreza Dayani, Ali Salimi, Ehsan Shokri
The severe respiratory effects of the coronavirus disease 2019 (COVID-19) pandemic have necessitated the immediate development of novel treatments. The majority of COVID-19-related fatalities are due to acute respiratory distress syndrome (ARDS). Consequently, this virus causes massive and aberrant inflammatory conditions, which must be promptly managed. Severe respiratory disorders, notably ARDS and acute lung injury (ALI), may be treated safely and effectively using cell-based treatments, mostly employing mesenchymal stem cells (MSCs)...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38645281/recombinant-human-annexin-a5-accelerates-diabetic-wounds-healing-by-regulating-skin-inflammation
#2
JOURNAL ARTICLE
Bijun Kang, Zhuoxuan Jia, Yushan Dong, Wei Li, Wenjie Zhang
BACKGROUND: One of the key obstacles to the healing of diabetic wound is the persistence of active inflammation. We previously demonstrated the potential of cell-free fat extract (CEFFE) to promote the healing of diabetic wounds, and annexin A5 (A5) is a crucial anti-inflammatory protein within CEFFE. This study aimed to evaluate the therapeutic potential of A5 in diabetic wounds. METHODS: A5 was loaded into GelMA hydrogels and applied to skin wounds of diabetic mice in vivo ...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38645280/mesenchymal-stem-cell-derived-extracellular-vesicles-relieve-endothelial-cell-senescence-via-recovering-ctrp9-upon-repressing-mir-674-5p-in-atherosclerosis
#3
JOURNAL ARTICLE
Min Zeng, Yangli He, Yali Yang, Mengdi Wang, Yue Chen, Xin Wei
BACKGROUND: The senescence of endothelial cells is of great importance involving in atherosclerosis (AS) development. Recent studies have proved the protective role of mesenchymal stem cell-derived extracellular vesicles in AS, herein, we further desired to unvei their potential regulatory mechanisms in endothelial cell senescence. METHODS: Senescence induced by H2 O2 in primary mouse aortic endothelial cells (MAECs) was evaluated by SA-β-gal staining. Targeted molecule expression was detected by qRT-PCR and Western blotting...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38638558/systemic-investigation-of-di-isobutyl-phthalate-dibp-exposure-in-the-risk-of-cardiovascular-via-influencing-the-gut-microbiota-arachidonic-acid-metabolism-in-obese-mice-model
#4
JOURNAL ARTICLE
Min Liu, Xifeng Du, Huifang Chen, Chenkai Bai, Lizhen Lan
Phthalate esters (PE), a significant class of organic compounds used in industry, can contaminate humans and animals by entering water and food chains. Recent studies demonstrate the influence of PE on the development and progression of heart diseases, particularly in obese people. Di-isobutyl phthalate (DIBP) was administered orally to normal and diet-induced obese mice in this research to assess cardiovascular risk. The modifications in the microbial composition and metabolites were examined using RNA sequencing and mass spectrometry analysis...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38633416/promotion-of-hmdsc-differentiation-by-combined-action-of-scaffold-material-and-tgf-%C3%AE-superfamily-growth-factors
#5
JOURNAL ARTICLE
Airina Mazetyte-Godiene, Agne Vailionyte, Tadas Jelinskas, Jaroslav Denkovskij, Arvydas Usas
OBJECTIVE: Herein we propose a combined action of collagen type I (CA) or synthetic collagen-like-peptide functionalized with the cell adhesive RGD motif (PEG-CLP-RGD) hydrogels and selected growth factors to promote chondrogenic differentiation of human muscle-derived stem cells (hMDSCs) under normal and reduced oxygen conditions. METHODS: hMDSCs were set for differentiation towards chondrogenic lineage using BMP-7 and TGF-β3. Cells were seeded onto hydrogels loaded with growth factors (75ng/scaffold) and cultured for 28 days under normal (21%) and severe hypoxic (1%) conditions...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38633415/mesenchymal-stem-cell-therapy-in-ischemic-stroke-trials-a-systematic-review
#6
REVIEW
Ester Moñivas Gallego, Mercedes Zurita Castillo
Cerebrovascular accidents, also known as strokes, are the leading cause of permanent disability in society, presenting significant socioeconomic and healthcare costs. They can be caused by ischemic factors or hemorrhages, with ischemic strokes being the most common among the population. Therapies for patients suffering from this condition are limited and primarily focus on acute-phase treatment. In recent years, there has been an increase in cellular therapies, employing Stem Cells to mitigate or eliminate the consequences arising from this disease...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38617444/transplantation-of-human-umbilical-cord-blood-mononuclear-cells-promotes-functional-endometrium-reconstruction-via-downregulating-emt-in-damaged-endometrium
#7
JOURNAL ARTICLE
Ruomeng Hu, Ying Wang, Wenwen Li, Hongjiang Liu, Rong Wu, Xuan Xu, Xiaohua Jiang, Qiong Xing, Jianye Wang, Zhaolian Wei
INTRODUCTION: Cell transplantation is an emerging and effective therapeutic approach for enhancing uterine adhesions caused by endometrial damage. Currently, human umbilical cord blood mononuclear cells (HUCBMCs) have been extensively for tissue and organ regeneration. However, their application in endometrial repair remains unexplored. Our investigation focuses on the utilization of HUCBMCs for treating endometrial injury. METHODS: The HUCBMCs were isolated from health umbilical cord blood, and co-cultured with the injured endometrial stromal cells and injured endometrial organoids...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38617443/dopamine-promotes-osteogenic-differentiation-of-pdlscs-by-activating-drd1-and-drd2-during-orthodontic-tooth-movement-via-erk1-2-signaling-pathway
#8
JOURNAL ARTICLE
Hanfei Sun, Yi Feng, Shaoqin Tu, Jianwu Zhou, Yuxuan Wang, Jiaming Wei, Sai Zhang, Yuluan Hou, Yiting Shao, Hong Ai, Zheng Chen
INTRODUCTION: Orthodontic tooth movement (OTM) involves complex interactions between mechanical forces and periodontal tissue adaptation, mainly mediated by periodontal ligament cells, including periodontal ligament stem cells (PDLSCs), osteoblasts, and osteoclasts. Dopamine (DA), a neurotransmitter known for its critical role in bone metabolism, is investigated in this study for its potential to enhance osteogenic differentiation in PDLSCs, which are pivotal in OTM. This study examined the potential of DA to facilitate OTM by binding to DA receptors (D1R and D2R) and activating the ERK1/2 signaling pathway...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38601885/temperature-modulated-separation-of-vascular-cells-using-thermoresponsive-anionic-block-copolymer-modified-glass
#9
JOURNAL ARTICLE
Tadashi Hirotani, Kenichi Nagase
INTRODUCTION: Vascular tissue engineering is a key technology in the field of regenerative medicine. In tissue engineering, the separation of vascular cells without cell modification is required, as cell modifications affect the intrinsic properties of the cells. In this study, we have developed an effective method for separating vascular cells without cell modification, using a thermoresponsive anionic block copolymer. METHODS: A thermoresponsive anionic block copolymer, poly(acrylic acid)- b -poly( N -isopropylacryl-amide) (PAAc- b -PNIPAAm), with various PNIPAAm segment lengths, was prepared in two steps: atom transfer radical polymerization and subsequent deprotection...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38596824/lessons-learned-from-contamination-with-endotoxin-originated-from-the-supplement-in-the-cell-culture-medium
#10
JOURNAL ARTICLE
Koaki Uehara, Eriko Oshiro, Atsushi Ochiai, Ryo Takagi, Masayuki Yamato, Atsunaga Kato
INTRODUCTION: Endotoxin is a typical pyrogen derived from the outer membrane of Gram-negative bacteria. In fabricating cell-based medicinal products, it is necessary to control endotoxin in the process and the products. In the quality control tests of our clinical study, endotoxin concentration in the culture supernatant of autologous oral mucosal epithelial cell sheets exceeded the criterion value. Therefore, endotoxin measurements were conducted to clarify the cause of the endotoxin contamination...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38596823/applications-of-blood-plasma-derivatives-for-cutaneous-wound-healing-a-mini-review-of-clinical-studies
#11
REVIEW
Kayvan Mehdipour Chari, Seyed Ehsan Enderami, Reyhaneh Nassiri Mansour, Elham Hasanzadeh, Javad Amini Mahabadi, Mohamadfoad Abazari, Peyman Asadi, Atefeh Hojjat
Skin injuries are a global healthcare problem. Chronic ulcers do not heal in a timely fashion, so it is essential to help the body with skin repair. There are some treatments that have been applied to chronic ulcers. One of these treatments is growth factor (GF) therapy. Platelet-rich plasma (PRP) and Platelet-poor plasma (PPP) are two types of plasma derivatives containing many GFs important for wound healing. Several works have reported their application in wound healing and tissue regeneration. The use of autologous PRP is now an adequate alternative in regenerative medicine...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38596822/unraveling-the-hidden-complexity-exploring-dental-tissues-through-single-cell-transcriptional-profiling
#12
REVIEW
Dahlia Eldeeb, Yuki Ikeda, Hironori Hojo, Shinsuke Ohba
Understanding the composition and function of cells constituting tissues and organs is vital for unraveling biological processes. Single-cell analysis has allowed us to move beyond traditional methods of categorizing cell types. This innovative technology allows the transcriptional and epigenetic profiling of numerous individual cells, leading to significant insights into the development, homeostasis, and pathology of various organs and tissues in both animal models and human samples. In this review, we delve into the outcomes of major investigations using single-cell transcriptomics to decipher the cellular composition of mammalian teeth and periodontal tissues...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38586873/platelet-rich-plasma-prp-in-nerve-repair
#13
REVIEW
Siyu Wang, Zhengping Liu, Jianing Wang, Lulu Cheng, Jinfeng Hu, Jin Tang
Platelet-rich plasma (PRP) has the capability of assisting in the recovery of damaged tissues by releasing a variety of biologically active factors to initiate a hemostatic cascade reaction and promote the synthesis of new connective tissue and revascularization. It is now widely used for tissue engineering repair. In addition, PRP has demonstrated nerve repair and pain relief, and has been studied and applied to the facial nerve, median nerve, sciatic nerve, and central nerve. These suggest that PRP injection therapy has a positive effect on nerve repair...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38586872/microbes-identified-from-monitoring-cell-manipulations-in-5-year-life-of-the-cell-factory-g-gaslini
#14
JOURNAL ARTICLE
Fabio Morandi, Martina Della Lastra, Roberto Bandettini, Gino Tripodi, Federico Zara, Irma Airoldi
INTRODUCTION: Quality and safety of a cell product, essential to guarantee the health of patients, depends on many factors including an appropriate environmental monitoring of the manufacturing rooms. Nonetheless, the maintenance of a controlled environment is requested to minimize the risk of contamination. Thus, a timely detection of changes in microbiological trends is important to adopt promptly effective measures against resistant strains that, in turn, may invalidate not only the sanitization procedures but also the safety of the cell product...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38576851/multipotent-adult-progenitor-cells-prevent-functional-impairment-and-improve-development-in-inflammation-driven-detriment-of-preterm-ovine-lungs
#15
JOURNAL ARTICLE
Sophie M L Neuen, Daan R M G Ophelders, Helene Widowski, Matthias C Hütten, Tim Brokken, Charlotte van Gorp, Peter G J Nikkels, Carmen A H Severens-Rijvers, Mireille M J P E Sthijns, Clemens A van Blitterswijk, Freddy J Troost, Vanessa L S LaPointe, Shahab Jolani, Christof Seiler, J Jane Pillow, Tammo Delhaas, Niki L Reynaert, Tim G A M Wolfs
BACKGROUND: Perinatal inflammation increases the risk for bronchopulmonary dysplasia in preterm neonates, but the underlying pathophysiological mechanisms remain largely unknown. Given their anti-inflammatory and regenerative capacity, multipotent adult progenitor cells (MAPC) are a promising cell-based therapy to prevent and/or treat the negative pulmonary consequences of perinatal inflammation in the preterm neonate. Therefore, the pathophysiology underlying adverse preterm lung outcomes following perinatal inflammation and pulmonary benefits of MAPC treatment at the interface of prenatal inflammatory and postnatal ventilation exposures were elucidated...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38571893/comparison-of-bioactive-substances-in-novel-developed-freeze-dried-platelet-rich-plasma-prp-and-activated-normal-prp-and-investigation-of-bioactive-substance-levels-after-long-term-storage
#16
JOURNAL ARTICLE
Ryosuke Nakajima, Yoshitomo Saita, Yohei Kobayashi, Takanori Wakayama, Sayuri Uchino, Yasumasa Momoi, Nanako Yamamoto, Muneaki Ishijima
INTRODUCTION: In recent years, biotherapy in orthopedics has become widespread, and platelet-rich plasma (PRP) has been readily used to treat sports injuries and osteoarthritis. Production of freeze-dried PRP (PRP-FD) results in PRP that is in powder form, allowing it to be stored for long periods at room temperature. Using this technology, we have developed Valuable Platelet-Derived Factor Concentrate Freeze Dry (VFD). However, whether VFD contains sufficient levels of bioactive substances (BS) remains unknown and retains the same levels of BS during long-term storage...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38571892/mesenchymal-stem-cells-reverse-thymus-aging-by-reprogramming-the-dna-methylation-of-thymic-epithelial-cells
#17
JOURNAL ARTICLE
Zailing Yang, Chuan Tian, Zhixu He, Xiangqing Zhu, Jie He, Hang Pan, Ye Li, Guangping Ruan, XiJun Wu, Xinghua Pan
BACKGROUND: A decrease in the number and activity of thymic epithelial cells (TECs) is an important factor in thymic degeneration. Mesenchymal stem cells (MSCs) treating thymic ageing is a promising strategy, but the DNA methylation modification mechanism in TECs remains unclear. METHODS: Aged rhesus monkeys were treated with MSCs to establish a thymic senescence model, and hematoxylin-eosin (HE) staining, immunofluorescence staining, and ELISA were performed to observe the structure and function of the thymus...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38571891/advanced-methods-to-mechanically-isolate-stromal-vascular-fraction-a-concise-review
#18
REVIEW
Xin You, JianHua Gao, Yao Yao
Adipose tissue is a highly attractive reservoir of stem cells due to its accessibility and abundance, and the SVF within it holds great promise for stem cell-based therapies. The use of mechanical methods for SVF isolation from adipose tissue is preferred over enzymatic methods, as it can be readily applied in clinical settings without additional processing steps. However, there is a lack of consensus on the optimal approach for mechanically isolating SVF. This comprehensive review aims to present and compare the latest mechanical isolation methods for SVF from adipose tissue, including centrifugation, filtration/washing, emulsification, vibration, and mincing/adiponizing...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38571890/transplanted-artificial-amnion-membrane-enhanced-wound-healing-in-third-degree-burn-injury-diabetic-mouse-model
#19
JOURNAL ARTICLE
Kenichi Arai, Satoshi Yoshida, Etsuko Furuichi, Shintaroh Iwanaga, Tanveer Ahmad Mir, Toshiko Yoshida
INTRODUCTION: Wound healing is severely compromised in patients with diabetes owing to factors such poor blood circulation, delayed immune response, elevated blood sugar levels, and neuropathy. Although the development of new wound healing products and prevention of serious complications such as infections in wounds have received substantial interest, wound healing remains a challenge in regenerative medicine. Burn wounds, especially third-degree burns, are difficult to treat because they are associated with immune and inflammatory reactions and distributive shock...
December 2024: Regenerative Therapy
https://read.qxmd.com/read/38550913/enhancement-of-therapeutic-potential-of-mesenchymal-stem-cell-by-igf-1-delivery-in-plga-microspheres-for-tissue-regeneration
#20
JOURNAL ARTICLE
Min Ge, Li Sun, Defeng Wang, Chunchao Hei, Tingjuan Huang, Zhongxin Xu, Qizhi Shuai
The use of stem cell-based treatment systems is prevalent in regenerative medicine. To enhance the regenerative capabilities of stem cells, growth factors are typically incorporated into the treatment system. Nonetheless, traditional hydrogel-encapsulated or heparinized scaffolds that bind factors have limitations. In this study, we prepared a biomaterial strategy using uniform poly(lactic-co-glycolic) acid (PLGA) microspheres (uPLGA-Ms) fabricated by microfluidic to sustain delivery of insulin-like growth factor 1 (IGF-1), a critical protein for hMSCs biological functions...
December 2024: Regenerative Therapy
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