EphA4 Targeting Peptide-Conjugated Extracellular Vesicles Rejuvenates Adult Neural Stem Cells and Exerts Therapeutic Benefits in Aging Rats

IF 4.1 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Satyajit Ghosh, Rajsekhar Roy, Nabanita Mukherjee, Surojit Ghosh, Moumita Jash, Aniket Jana, Surajit Ghosh
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Abstract

Aging and various neurodegenerative diseases cause significant reduction in adult neurogenesis and simultaneous increase in quiescent neural stem cells (NSCs), which impact the brain’s regenerative capabilities. To deal with this challenging issue, current treatments involve stem cell transplants or prevention of neurodegeneration; however, the efficacy or success of this process remains limited. Therefore, extensive and focused investigation is highly demanding to overcome this challenging task. Here, we have designed an efficient peptide-based EphA4 receptor-targeted ligand through an in silico approach. Further, this strategy involves chemical conjugation of the peptide with adipose tissue stem cell-derived EV (Exo-pep-11). Interestingly, our newly designed engineered EV, Exo-pep-11, targets NSC through EphA4 receptors, which offers promising therapeutic advantages by stimulating NSC proliferation and subsequent differentiation. Our result demonstrates that NSC successfully internalized Exo-pep-11 in both in vitro culture conditions as well as in the in vivo aging rats. We found that the uptake of Exo-pep-11 decreased by ∼2.3-fold when NSC was treated with EphA4 antibody before Exo-pep-11 incubation, which confirms the receptor-specific uptake of Exo-pep-11. Exo-pep-11 treatment also increases NSC proliferation by ∼1.9-fold and also shows ∼1.6- and ∼2.4-fold increase in expressions of Nestin and ID1, respectively. Exo-pep-11 also has the potential to increase neurogenesis in aging rats, which is confirmed by ∼1.6- and ∼1.5-fold increases in expressions of TH and Tuj1, respectively, in rat olfactory bulb. Overall, our findings highlight the potential role of Exo-pep-11 for prospective applications in combating age-related declines in NSC activity and neurogenesis.

Abstract Image

EphA4 靶向肽共轭细胞外囊泡使成年神经干细胞恢复活力并对老龄大鼠产生治疗效果
衰老和各种神经退行性疾病会导致成人神经发生显著减少,同时静止神经干细胞(NSCs)增加,从而影响大脑的再生能力。为应对这一挑战性问题,目前的治疗方法包括干细胞移植或预防神经退行性变;然而,这一过程的有效性或成功率仍然有限。因此,要攻克这一难题,需要进行广泛而集中的研究。在这里,我们通过硅学方法设计出了一种基于多肽的高效 EphA4 受体靶向配体。此外,这一策略还包括将多肽与脂肪组织干细胞衍生的EV(Exo-pep-11)进行化学共轭。有趣的是,我们新设计的工程化EV(Exo-pep-11)可通过EphA4受体靶向NSC,通过刺激NSC增殖和随后的分化提供有前景的治疗优势。我们的研究结果表明,无论是在体外培养条件下,还是在体内衰老大鼠体内,NSC 都能成功内化 Exo-pep-11。我们发现,在孵育前用EphA4抗体处理NSC,其对Exo-pep-11的吸收减少了2.3倍,这证实了Exo-pep-11的受体特异性吸收。Exo-pep-11还能使NSC的增殖增加1.9倍,并使Nestin和ID1的表达量分别增加1.6倍和2.4倍。大鼠嗅球中TH和Tuj1的表达量分别增加了1.6倍和∼1.5倍,证实了Exo-pep-11还具有增加衰老大鼠神经发生的潜力。总之,我们的研究结果凸显了 Exo-pep-11 在应对与年龄相关的神经干细胞活性和神经发生下降方面的潜在作用。
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来源期刊
ACS Chemical Neuroscience
ACS Chemical Neuroscience BIOCHEMISTRY & MOLECULAR BIOLOGY-CHEMISTRY, MEDICINAL
CiteScore
9.20
自引率
4.00%
发文量
323
审稿时长
1 months
期刊介绍: ACS Chemical Neuroscience publishes high-quality research articles and reviews that showcase chemical, quantitative biological, biophysical and bioengineering approaches to the understanding of the nervous system and to the development of new treatments for neurological disorders. Research in the journal focuses on aspects of chemical neurobiology and bio-neurochemistry such as the following: Neurotransmitters and receptors Neuropharmaceuticals and therapeutics Neural development—Plasticity, and degeneration Chemical, physical, and computational methods in neuroscience Neuronal diseases—basis, detection, and treatment Mechanism of aging, learning, memory and behavior Pain and sensory processing Neurotoxins Neuroscience-inspired bioengineering Development of methods in chemical neurobiology Neuroimaging agents and technologies Animal models for central nervous system diseases Behavioral research
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