Publications by authors named "Pengbin Yin"

Article Synopsis
  • A novel exopolysaccharide (EPS) produced by Bifidobacterium pseudocatenulatum Bi-OTA128 was found to have high antioxidant capacity, outperforming nine other bacterial strains in DPPH and ABTS scavenging activities.
  • The genomic analysis revealed an eps gene cluster responsible for EPS synthesis, and the EPS was successfully isolated and characterized, showing a unique structure comprised mainly of glucose, galactose, and rhamnose.
  • In vitro assays demonstrated its antioxidant potential, with protection against oxidative stress in liver cells, suggesting its application as a natural antioxidant in food and clinical industries.
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Regular physical activity is widely recognized for reducing the risk of various disorders, with skeletal muscles playing a key role by releasing biomolecules that benefit multiple organs and tissues. However, many individuals, particularly the elderly and those with clinical conditions, are unable to engage in physical exercise, necessitating alternative strategies to stimulate muscle cells to secrete beneficial biomolecules. Histone acetylation and deacetylation significantly influence exercise-induced gene expression, suggesting that targeting histone deacetylases (HDACs) could mimic some exercise responses.

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Article Synopsis
  • Adult skeletal muscle stem cells, or satellite cells (SCs), are usually inactive but can be activated when there is muscle injury, and the mechanisms behind this activation are not well understood.
  • Researchers discovered that spermidine, a regulatory metabolite, promotes the activation of quiescent SCs and aids in muscle regeneration in mice.
  • The study also found that the activation process requires hypusinated eIF5A, which is crucial for translating MyoD, and that a lack of eIF5A hampers muscle regeneration, indicating the spermidine-eIF5A pathway could be a potential target for treating muscle diseases.
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Background: To enhance the precision of measuring, analyzing, and forecasting care needs for older adults with physical and/or mental disabilities, we developed the Physical Disability Index (PDI) and Mental Disability Index (MDI). Furthermore, we evaluated the reliability and validity of the PDI and MDI. Additionally, we investigate their associations with falls to further indicate the predictive validity.

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Background: In-hospital mortality following hip fractures is a significant concern, and accurate prediction of this outcome is crucial for appropriate clinical management. Nonetheless, there is a lack of effective prediction tools in clinical practice. By utilizing artificial intelligence (AI) and machine learning techniques, this study aims to develop a predictive model that can assist clinicians in identifying geriatric hip fracture patients at a higher risk of in-hospital mortality.

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Article Synopsis
  • The musculoskeletal system is the largest physiological system in humans, crucial for support, movement, and protection of organs.
  • The emerging field of "musculoskeletal electronics" focuses on advanced materials and technologies for motion capture, health monitoring, and rehabilitation.
  • The review highlights key advancements, strategies for developing materials and devices, and outlines future directions for research in this innovative area.
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Background: Chronic critical illness (CCI), which was characterized by persistent inflammation, immunosuppression, and catabolism syndrome (PICS), often leads to muscle atrophy. Serum amyloid A (SAA), a protein upregulated in critical illness myopathy, may play a crucial role in these processes. However, the effects of SAA on muscle atrophy in PICS require further investigation.

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  • Wound healing is a big medical problem that scientists are trying to solve.
  • They found out that tiny bubbles called extracellular vesicles (EVs) from 3D cell cultures can help heal wounds better.
  • In their study, they discovered that these EVs boost a protein called ANXA1, which helps certain immune cells change and promotes faster wound healing in animals.
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Background: Participants with prediabetes are at a high risk of developing type 2 diabetes (T2D). Recent studies have suggested that blocking the receptor activator of nuclear factor-κB ligand (RANKL) may improve glucose metabolism and delay the development of T2D. However, the effect of denosumab, a fully human monoclonal antibody that inhibits RANKL, on glycemic parameters in the prediabetes population is uncertain.

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Evidence from numerous studies has revealed the synchronous progression of aging in bone and muscle; however, little is known about the underlying mechanisms. To this end, human muscles and bones are harvested and the aging-associated transcriptional dynamics of two tissues in parallel using single-cell RNA sequencing are surveyed. A subset of lipid-associated macrophages (triggering receptor expressed on myeloid cells 2, TREM2 Macs) is identified in both aged muscle and bone.

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MyoD is a skeletal muscle-specifically expressed transcription factor and plays a critical role in regulating myogenesis during muscle development and regeneration. However, whether myofibers-expressed MyoD exerts its metabolic function in regulating whole body energy homeostasis in vivo remains largely unknown. Here, we report that genetic deletion of Myod in male mice enhances the oxidative metabolism of muscle and, intriguingly, renders the male mice resistant to high fat diet-induced obesity.

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Spinal cord injury (SCI) is a debilitating condition that is frequently accompanied by neuropathic pain, resulting in significant physical and psychological harm to a vast number of individuals globally. Despite the high prevalence of neuropathic pain following SCI, the precise underlying mechanism remains incompletely understood. Microglia are a type of innate immune cell that are present in the central nervous system (CNS).

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The interleukin 6 (IL6) signaling pathway plays pleiotropic roles in regulating the inflammatory milieu that contributes to arthritis development. Here, we show that activation of IL6 trans-signaling induces phenotypic transitions in tissue-resident cells toward an inflammatory state. The establishment of arthritis increases the serum number of extracellular vesicles (EVs), while these EVs express more IL6 signal transducer (IL6ST, also known as gp130) on their surface.

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Different experiments require different sample storage methods. The commonly used preservation methods in biobank practice cannot fully meet the multifarious requirements of experimental techniques. Programmable controlled slow freezing (PCSF) can maintain the viability of tissue.

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Background: The prognostic nutritional index (PNI) has been proposed as a useful prognostic tool in multiple populations. However, its prognostic value has not been fully evaluated in the hip fracture population. We aimed to assess the relationship between PNI and postoperative complications as well as 2-year all-cause mortality in the hip fracture population.

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Degenerative musculoskeletal diseases (DMDs), including osteoporosis, osteoarthritis, degenerative disc disease, and sarcopenia, present major challenges in the aging population. Patients with DMDs present with pain, functional decline, and reduced exercise tolerance, which result in long-term or permanent deficits in their ability to perform daily activities. Current strategies for dealing with this cluster of diseases focus on relieving pain, but they have a limited capacity to repair function or regenerate tissue.

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Osteoporosis is associated with excessive activity of osteoclasts. In bone turn over, most osteoclasts undergo apoptosis after bone resorption and produce a large number of apoptotic bodies (ABs). However, the biological function of osteoclast-derived apoptotic bodies (OC-ABs) in the progression of osteoporosis is still unknow.

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Tendinopathy is a disease with surging prevalence. Lacking understanding of molecular mechanisms impedes the development of therapeutic approaches and agents. Lysine lactylation (Kla) is a newly discovered post-translational modification related to glycolysis.

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Purpose: To evaluate the impact of preoperative anemia on postoperative complications after hip fracture surgery.

Patients And Methods: We conducted a retrospective study including hip fracture patients at a teaching hospital between 2005 and 2022. We defined preoperative anemia as the last hemoglobin measurement level before surgery < 130 g/L for men and < 120 g/L for women.

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Objective: To estimate the effect of denosumab compared with oral bisphosphonates on reducing the risk of type 2 diabetes in adults with osteoporosis.

Design: Population based study involving emulation of a randomized target trial using electronic health records.

Setting: IQVIA Medical Research Data primary care database in the United Kingdom, 1995-2021.

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Article Synopsis
  • Acupuncture may be effective in treating knee osteoarthritis (KOA), with weak recommendations suggesting it over no treatment and recommending it alongside NSAIDs for severe symptoms.
  • Current clinical guidelines do not strongly endorse acupuncture, despite its growing use in practice, and treatments should last between 4 to 8 weeks based on KOA severity.
  • The recommendations were developed using a systematic review of evidence from 9,422 KOA patients, which indicated that acupuncture improves various KOA-related scores, although the certainty of these findings varies.
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Recent evidence has shown a crucial role for the osteoprotegerin/receptor activator of nuclear factor κ-B ligand/RANK (OPG/RANKL/RANK) signaling axis not only in bone but also in muscle tissue; however, there is still a lack of understanding of its effects on muscle atrophy. Here, we found that denervated knockout mice displayed better functional recovery and delayed muscle atrophy, especially in a specific type IIB fiber. Moreover, OPG deficiency promoted milder activation of the ubiquitin-proteasome pathway, which further verified the protective role of knockout in denervated muscle damage.

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Titanium is widely used as surgical bone implants due to its excellent mechanical properties, corrosion resistance, and good biocompatibility. However, due to chronic inflammation and bacterial infections caused by titanium implants, they are still at risk of failure in interfacial integration of bone implants, severely limiting their broad clinical application. In this work, chitosan gels crosslinked with glutaraldehyde were prepared and successfully loaded with silver nanoparticles (nAg) and catalase nanocapsules (n (CAT)) to achieve functionalized coating on the surface of titanium alloy steel plates.

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