Neuroplasticity, the capacity of the nervous system to alter its structure, function and connectivity in response to intrinsic and extrinsic stimuli, has moved from a developmental curiosity to a central organising principle of contemporary neuroscience and a plausible therapeutic target across neurology, psychiatry, pharmacology and rehabilitation medicine. This condensed review synthesises current mechanistic and translational evidence within a single integrated framework. Four interdependent pillars of plasticity are delineated: synaptic modification, comprising long-term potentiation, long term depression, spike-timing dependence, metaplasticity and homeostatic scaling; structural remodelling, comprising spine turnover, dendritic and axonal growth, pruning and activity-dependent myelination; neurogenesis; and system-level functional reorganisation, comprising map plasticity, vicariation and diaschisis. These neuron-centred processes are permitted or constrained by a supporting tissue environment of astrocytes, microglia, oligodendrocytes, extracellular matrix and the neurovascular unit, and converge on a common molecular substrate dominated by calcium-dependent glutamatergic signalling, brain-derived neurotrophic factor-TrkB transduction, transcriptional and epigenetic control, and neurosteroid modulation. Plastic capacity follows a non-monotonic lifespan trajectory, being high and experience expectant during critical periods, progressively gated in adulthood, and attenuated but not abolished in senescence. Critically, plasticity is directionally neutral: identical mechanisms underwrite skill acquisition and recovery on the one hand, and central sensitisation, addiction, dystonia and epileptogenesis on the other. The current interventional armamentarium is appraised, spanning task-specific rehabilitation, aerobic exercise, cognitive and social enrichment, structured psychological techniques including clinical hypnosis, sleep and dietary optimisation, non-invasive and paired neuromodulation, plasticity-promoting pharmacology, brain-computer interfaces and artificial-intelligence-guided personalisation, with the maturity of supporting evidence graded for each. Persistent obstacles include biomarker non equivalence, heterogeneity of dose and timing, short follow-up, and unresolved ethical questions concerning equitable access, neural data privacy and the therapy-enhancement boundary. The decisive translational challenge is no longer whether plasticity can be induced, but whether it can be reliably steered.
Vivek Kumar Patel, Madhuri Dubey, Radhika Patel et al.· Genetics and Molecular Resea...· 0 citations
Callistemon citrinus (Myrtaceae), a traditional medicinal herb, has been
used to treat various disorders associated with metabolism, digestion, inflammation, and respiration.
Recent discoveries in pharmacology, together with the herb's diverse phytochemistry, have raised
the possibility of multiple targets for medicinal interventions. This review attempts to critically analyse
the phytochemical profile and pharmacology of C. citrinus.
PubMed, Scopus, Web of Science, and ScienceDirect databases were used to do a systematic
literature search until 2025. PRISMA-based guidelines were used to screen and analyze
peer-reviewed research, including in vitro, in vivo, and in silico studies. Information on biological
activity, mechanisms, safety profiles, and phytochemistry was retrieved.
Flavonoids, terpenoids, phenolic acids, tannins, and sterols are just a few of the many bioactive
components found in C. citrinus. Pharmacological research demonstrates the antioxidant, antibacterial,
anti-inflammatory, antidiabetic, gastroprotective, neuroprotective, and anticancer properties.
While other activities remain restricted to experimental models with inconsistent methodological
quality, antioxidant and antibacterial benefits are supported by rather consistent preclinical data.
Mechanistically, oxidative stress, inflammatory mediators, and metabolic pathways are all modulated.
However, there is little experimental confirmation; new in silico research points to multi-target
interactions. In acute and subacute models, toxicological research shows a favourable safety profile.
C. citrinus has various pharmacological properties due to its unique phytochemistry.
Although there is substantial research on its antioxidant and anti-microbial properties, all the information
is based on experimental data. There is a need for clinical trials to prove its potential therapeutic
benefits.
Although C. citrinus has remarkable therapeutic promise, the paucity of clinical studies
and pharmacokinetic data, and the lack of standardization hinder its clinical translation. Welldesigned
clinical trials, bioavailability improvement, and mechanistic validation should be the top
priorities for future research.
Shankul Kumar, Vedant Kumar Prajapati, A. Patel et al.· Current Chemical Biology· 0 citations
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