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October 12, 2025International Journal of Molecular Sciences2 citationsOpen Access

The Etiological Role of Impaired Neurogenesis in Schizophrenia: Interactions with Inflammatory, Microbiome and Hormonal Signaling

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MSMT-BC Hyejin SoAUAta UllahAWAbdul Waris

Key Points

  • Impaired neurogenesis contributes significantly to the progression of schizophrenia, indicating a potential root cause.
  • Recent research highlights the roles of neuroinflammation and hormonal signaling in the disease's pathogenesis.
  • This study organizes various mechanistic models to enhance understanding of schizophrenia’s complex etiology.
  • These insights could guide the development of targeted therapeutic strategies addressing the underlying pathological pathways.

Abstract

Schizophrenia is a prevailing yet severely debilitating psychiatric disorder characterized by a convoluted etiology. Although antipsychotics have been available for over half a century, they primarily mitigate symptoms rather than providing definitive care. This limitation suggests that the neurotransmitter systems targeted by these medications are not the root cause of the disorder. Ongoing research seeks to elucidate the cellular, molecular, and circuitry pathways that contribute to the development of schizophrenia. Unfortunately, its precise pathogenesis remains incompletely understood. Accumulating evidence implicates dysregulated neurogenesis and aberrant neurodevelopmental processes as key contributors to disease progression. Recent advances in proteomics and imaging technology have facilitated the emergence of novel models of schizophrenia, emphasizing the roles of neuroinflammation, sex steroids, and cortisol. This paper aims to organize and map the intercorrelations and potential causal effects between various mechanistic models to gain deeper insight on how these mechanisms contribute to the cause, risks, and symptoms of the disorder. Furthermore, we discuss the potential therapeutic strategies that target these pathological pathways. Elucidating these mechanisms may ultimately advance our understanding of schizophrenia’s etiological foundations and guide the development of curative interventions.

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Cite This Study

So et al. (2025) studied this question.

synapsesocial.com/papers/68ebc91af2c3e4d8d926e484https://doi.org/10.3390/ijms26199814
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1An Evolutionary and Neuroendocrine Hypothesis for the Reversal and Prevention of Schizophrenia: Integrating Oxytocinergic Modulation, Circadian Control, and Anti-Inflammatory Interventions2026
  2. 2Schizophrenia Pathophysiology: Neurotransmitter Dysfunctions and Biomarker Frontiers2025
  3. 3On the prefrontal cortex neurodevelopmental disruptions and excessive synaptic pruning in schizophrenia: recent developments and challenges2026
  4. 4Neuroinflammation in Schizophrenia: An Overview of Evidence and Implications for Pathophysiology2025 · 12 citations
  5. 5Interfacing Genetics and Oral Microbiota in Schizophrenia: A Mechanistic Review of Bidirectional Neuroimmune Pathways2026