Painting memory engram by biologically active messengers –The molecular time travel for the search of memory

K. Ganguly
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Abstract

Using MRI and PET methods, neuroscience has made significant progress in understanding the episodic events of the human brain under varied cognitive situations throughout the last century. However, the higher resolutions of the memory locus, which consists of a neuro-glial ensemble for episodic memory, are unclear and must be clarified. Additionally, attempts have been made to create new nano technologies for mapping complete brains and related engrams with single neuro-glial accuracy and resolution in the hopes of unlocking the secrets of the brain by delving into Brain Activity Map (BAM). This hypothetical research is the first of its kind to suggest a novel method for understanding episodic memory in mouse brains by mapping brain activity at the functional connectome (engram) level and focused on neuro-glia-ECM (Extracellular Matrix). I propose to paint the memory engram at the neuro glia-ECM canvas of the mouse brain by engineering and inserting novel "Biologically Active Messengers: Bidirectional Messengers (BM)s/ Alternative Clones (AC)s and Transcriptional/ Translational Messenger (TM)s" coupled with different colour tags into transgenic mice via Transposon and Recombination, followed by behavioural analysis and Clarity. The BMs will be produced in all neuro-glial cells via a bicistronic promoter (Neuro-glia specific promoter + Tetracycline Responsive Element) led by a tetracycline transactivator gene driven by an immediate early gene (c-Fos/ Arc), whereas the TMs will be expressed via an endogenous promoter. The viability of all constructions (BMs, ACs, and TMs) as well as the process of painting will be tested in cortical/ hippocampal culture by chemically generating long term potentiation (cLTP). Fear consolidation (Fear context and Recall by contextual cue) tests will be administered to adult transgenic mice, followed by Clarity coupled Immunostaining to investigate the neuro-glia-ECM ensemble after whole brain imaging using a Light Sheet Microscope. Finally, the steady state behaviour of normal mice will be compared to the episodic picture of a colourful painted engram. At both the functional connectome and activity levels, this holistic painting method will highlight cognition over multiple timelines of a working memory region. Bidirectional Messenger (Biological Boomerang) has huge implications in neuropsychiatric illness, generation of artificial blood, cancer treatment, and regenerative medicine in the near future, according to my intuition.
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通过生物活性信使绘制记忆印记-寻找记忆的分子时间旅行
利用MRI和PET方法,神经科学在理解人类大脑在不同认知情况下的情景事件方面取得了重大进展。然而,记忆位点(由情景记忆的神经胶质集合组成)的更高分辨率尚不清楚,必须加以澄清。此外,人们还尝试创造新的纳米技术,以精确和分辨率绘制完整的大脑和单个神经胶质的相关印痕,希望通过深入研究大脑活动图(BAM)来解开大脑的秘密。这项假设的研究首次提出了一种新的方法,通过在功能连接组(印痕)水平上绘制大脑活动,并专注于神经胶质- ecm(细胞外基质),来理解小鼠大脑中的情景记忆。我建议在小鼠大脑的神经胶质- ecm画布上绘制记忆印迹,并通过转座子和重组将新的“生物活性信使:双向信使(BM)s/替代克隆(AC)s和转录/翻译信使(TM)s”与不同的颜色标签结合到转基因小鼠中,然后进行行为分析和清晰度。脑转移瘤将在所有神经胶质细胞中通过一个双电子启动子(神经胶质特异性启动子+四环素反应元件)产生,该启动子由一个直接早期基因(c-Fos/ Arc)驱动的四环素反激活子基因引导,而脑转移瘤将通过一个内源性启动子表达。通过化学生成长时程增强(cLTP),将在皮质/海马培养中测试所有结构(脑转移、脑转移和脑转移)以及绘制过程的可行性。对成年转基因小鼠进行恐惧巩固(恐惧情境和情境提示的回忆)测试,然后使用薄层显微镜对全脑成像进行透明耦合免疫染色以研究神经胶质- ecm集合。最后,将正常小鼠的稳定状态行为与彩色印痕的情景相比较。在功能连接体和活动水平上,这种整体绘画方法将突出工作记忆区域在多个时间线上的认知。根据我的直觉,在不久的将来,双向信使(生物回旋镖)在神经精神疾病、人造血液的产生、癌症治疗和再生医学方面有着巨大的影响。
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