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Published on: August 11, 2015
Therapeutic Shifts and Scientific Influence in Treatment-Resistant Depression Research: A Data-Driven Perspective
Yunsheng Liu1,2, Zengwei Kou3
1Cancer Center, Shenzhen Hospital (Futian) of Guangzhou University of Chinese Medicine, Shenzhen, China.
Background:
Treatment-resistant depression (TRD) remains a major psychiatric challenge, with therapeutic paradigms evolving over the last 50 years. However, research on TRD is fragmented across molecular mechanisms, clinical interventions, and epidemiological trends, highlighting the need for a comprehensive synthesis to guide future studies and enhance clinical outcomes.
Methods:
We conducted a large-scale bibliometric analysis of 16,198 TRD-related publications from PubMed, Web of Science, and Scopus (1974-2025). Using CiteSpace, VOSviewer, and Bibliometrix, we quantified publication trends, collaborative networks, and thematic shifts. Special attention was paid to influential researchers and institutions, as well as examining the shifting research focus from traditional invasive therapies, including deep brain stimulation, to emerging pharmacological advancements such as ketamine-based treatments.
Results:
We identified leading countries, institutions, and key contributors on TRD research. Thematic clusters revealed sustained focus on neurobiological mechanisms (glutamate dysfunction, inflammation) and clinical efficacy. A pivotal shift from invasive techniques (dominant before 2000) to ketamine-based therapies was observed, with ketamine-related publications surging after 2010. High-impact journals such as Biological Psychiatry and American Journal of Psychiatry anchored 3 intellectual clusters: molecular neuropharmacology, pathophysiology, and clinical psychiatry. Despite progress, gaps persist in understanding ketamine's systemic effects and noncanonical NMDA receptor roles.
Conclusions:
This bibliometric study traces TRD research evolution from the 1970s onward, revealing key shifts from invasive interventions to novel pharmacotherapies such as ketamine, a transformative advance highlighting a mechanism-driven approach. By analyzing influential contributors, collaborations, and emerging trends, our work synthesizes decades of fragmented knowledge, providing clinicians and researchers with a cohesive road map for future TRD investigations.
Insights
Treatment-resistant depression (TRD) research has shifted from invasive methods to ketamine-based therapies. This bibliometric analysis maps TRD
Area of Science:
- Psychiatry and Neuroscience
- Bibliometrics and Scientometrics
Background:
- Treatment-resistant depression (TRD) presents a significant challenge in psychiatric care.
- Existing TRD research is fragmented, necessitating a comprehensive synthesis for improved clinical outcomes and future studies.
Purpose of the Study:
- To conduct a large-scale bibliometric analysis of Treatment-resistant depression (TRD) publications.
- To map the evolution of TRD research, identify key contributors, and analyze thematic shifts over time.
- To provide a cohesive roadmap for future TRD investigations.
Main Methods:
- A bibliometric analysis of 16,198 TRD publications from 1974-2025 was performed using PubMed, Web of Science, and Scopus.
- CiteSpace, VOSviewer, and Bibliometrix software were employed to analyze publication trends, collaborations, and research themes.
- Focus was placed on identifying influential researchers, institutions, and the shift from invasive therapies to pharmacological advancements.
Main Results:
- Leading countries, institutions, and researchers in TRD were identified.
- Key research clusters include neurobiological mechanisms (glutamate, inflammation) and clinical efficacy.
- A significant shift from invasive techniques (pre-2000) to ketamine-based therapies (post-2010) was observed, with high-impact journals anchoring intellectual clusters.
Conclusions:
- Bibliometric analysis reveals TRD research evolution from invasive interventions to mechanism-driven pharmacotherapies like ketamine.
- The study synthesizes fragmented knowledge, offering a roadmap for clinicians and researchers in TRD.
- Gaps remain in understanding ketamine's systemic effects and noncanonical NMDA receptor roles.
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