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Raju, T. R.

Publications and source records attributed to Raju, T. R..

2 recordsLinked to original sources

Ageing and MPTP- sensitivity depend on molecular and ultrastructural signatures of astroglia and microglia in mice nigra

Both astroglia and microglia show region-specific distribution in CNS and often maladapt to age-associated alterations within their niche. Studies on autopsied substantia nigra (SN) of Parkinsons disease (PD) patients and experimental models propose gliosis as a trigger for neuronal loss. Epidemiological studies propose an ethnic bias in PD prevalence, since Caucasians are more susceptible than non-whites. Similarly, different mice strains are variably sensitive to MPTP. We had earlier likened divergent MPTP-sensitivity of C57BL/6J and CD-1 mice with differential susceptibility to PD, based on the numbers of SN neurons. Here, we examined whether the variability was incumbent to inter-strain differences in glial features of male C57BL/6J and CD-1 mice. Stereological counts showed relatively more microglia and fewer astrocytes in the SN of normal C57BL/6J mice, suggesting persistence of an immune-vigilant state. MPTP-induced microgliosis and astrogliosis in both strains, suggests their involvement in pathogenesis. ELISA of pro-inflammatory cytokines in the ventral-midbrain revealed augmentation of TNF- and IL-6 at middle-age in both strains that reduced at old-age, suggesting middle-age as a critical, inflamm-aging associated time-point. TNF- levels were high in C57BL/6J, through aging and post-MPTP; while IL-6 and IL-1{beta} were upregulated at old-age. CD-1 had higher levels of anti-inflammatory cytokine TGF-{beta}. MPTP-challenge caused upregulation of enzymes MAO-A, MAO-B and iNOS in both strains. Post-MPTP enhancement in fractalkine and hemeoxygenase-1; may be neuron-associated compensatory signals. Ultrastructural observations of elongated astroglial/microglial mitochondria vis-a-vis the shrunken ones in neurons, suggest a scale-up of their functions with neurotoxic consequences. Thus, astroglia and microglia modulate aging and PD-susceptibility. HighlightsO_LISubstantia nigra of C57BL/6J and CD-1 show no baseline differences in glial numbers C_LIO_LIBoth mice show age and MPTP-induced gliosis in the substantia nigra pars compacta C_LIO_LICD-1 nigra has lower levels of pro- and higher levels of anti-inflammatory cytokines C_LIO_LITilt of balance between pro- and anti-inflammatory cytokines begins at middle age C_LIO_LIAstrocytes and microglia show elongated mitochondria and intact ER upon MPTP-injection C_LI

neuroscience

Differences in neuronal numbers, morphology and developmental apoptosis in mice nigra provide experimental evidence of ontogenic origin of vulnerability to Parkinson's disease

Parkinson disease (PD) prevalence varies by ethnicity. In an earlier study we replicated the reduced vulnerability to PD in an admixed population, using 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-susceptible C57BL/6J, MPTP-resistant CD-1 and their F1 crossbreds. In the present study we investigated if the differences have a developmental origin. Substantia nigra was evaluated at postnatal days 2 (P2), P6, P10, P14, P18, and P22. C57BL/6J mice had smaller nigra and fewer dopaminergic neurons than the CD-1 and crossbreds at P2, which persisted through development. A significant increase in numbers and nigral volume was observed across strains till P14. A drastic decline thereafter was specific to C57BL/6J. CD-1 and crossbreds retained their numbers from P14 to stabilize with supernumerary neurons at adulthood. The neuronal size increased gradually to attain adult morphology at P10 in the resistant strains, vis-a-vis at P22 in C57BL/6J. Accordingly, in comparison to C57BL/6J, the nigra of CD-1 and reciprocal crossbreds possessed cyto-morphological features of resilience, since birth. The considerably lesser dopaminergic neuronal loss in the CD-1 and crossbreds seen at P2, P14 and thereafter was complemented by attenuated developmental cell death. The differences in programmed cell death were confirmed by reduced TUNEL labelling, AIF and caspase-3 expression. GDNF expression aligned with the cell death pattern at P2 and P14 in both nigra and striatum. Earlier maturity of nigra and its neurons appear to be better features that reflect as MPTP-resistance at adulthood. Thus variable MPTP-vulnerability in mice and also differential susceptibility to PD in humans may arise early during nigral development.

neuroscience