$$\rightleftharpoonup{xx}$$
$$\longleftharp{xx}$$,
$$\longrightharp{xx}$$,
Local B. jararaca venom administration causes changes in hind paw tactile sensitivity and tissue edema in ND4 Swiss male mice.
1.5 hr after the administration of 45 µg/kg B. jararaca venom, ND4 Swiss male mice withdrew their hind paws at a pressure 3.0 g lower than baseline (Figure 1A). Baseline withdrawal for all groups occurred at ~4.5 g of applied pressure; after venom-treatment, experimental mice withdrew their hind paws at 1-1.5 g of applied pressure (data not shown). Saline-treated control mice showed little to no reduction in response to pressure compared to baseline at all time points tested. Decreased response thresholds in treated mice were clearly maintained at 3 and 6 hr post-envenomation (Figure 1A) and were indistinguishable from controls by 24 hr (data not shown). The hind paws of envenomated mice showed tissue edema characteristic of inflammation. At 1.5 hr post venom administration, treated hind paws, measured as previously described10, were 1.5 mm thicker than at baseline; edema was sustained through 3 and 6 hr (Figure 1B). In contrast, saline treated paws showed no swelling or change in thickness through the experimental period. For the representative experiment shown here, a total of 21 mice were used for baseline measurements and 14 selected for inclusion in the experiment. These were assigned to treatment groups such that average withdrawal responses at baseline were around 4.5 g for each group as a whole.
B. jararaca venom-induced changes in tactile sensitivity are accompanied by mast cell degranulation and neutrophil influx into the hind paws of ND4 Swiss male mice.
In addition to increased tactile sensitivity and tissue edema, we also assessed neutrophil influx (Figures 2A-B) and mast cell degranulation (Figures 2C-D) in the hind paws of envenomated vs. saline-treated mice. Neutrophils are the first inflammatory cells to be recruited into a lesion from the circulation and are known to mediate inflammatory nociceptive responses10,16,17. Mast cells are tissue-resident sentinel cells18 and mast cell degranulation has been associated with nociceptive responses in the hind paw of mice10 and the dura mater of rats19.
Here, we found that neutrophil influx into the envenomated hind paws was increased almost 1,000-fold in comparison to saline-treated hind paws (Figure 3A) as evaluated by counting hematoxylin-eosin stained 4 µm paraffin embedded sagittal plantar tissue sections10 harvested at 1.5 hr post venom administration from euthanized mice.
In saline treated paws, plantar mast cells in the hind paw tissue were largely intact or showed mild degranulation (Figure 3B). In contrast, envenomated hind paws showed 15-20% moderate and extensive degranulation of mast cells (Figure 3B). Tissue sections described above were stained with toluidine blue and numbers of visible granules counted per mast cell observed to ascertain degranulation status as previously described10.

Figure 1. Local B. jararaca venom administration causes changes in hind paw mechanical sensitivity, and tissue edema in ND4 Swiss male mice. Baseline withdrawal thresholds and baseline paw width were assessed at 48 and 24 hr prior to intra-plantar B. jararaca venom (Bjv; 45 µg/kg) or vehicle (saline) treatment (10 µl). Withdrawal thresholds were assessed at 1.5, 3, and 6 hr following treatment (A). Average paw width (mean width of the left and the right paw of a mouse) at the mid-plantar region was assessed using digital calipers at baseline and then 1.5, 3, and 6 hr following treatment to determine tissue edema as previously described10 (B). Significances are compared to Sal-treated mice (* = p < 0.05, ** = p < 0.01, *** = p < 0.001 respectively). n = 10-11 mice per treatment group. Click here to view larger image.

Figure 2. B. jararaca venom-induced mechanical sensitivity is accompanied by mast cell degranulation and neutrophil influx into the hind paws of ND4 Swiss male mice. 3 mice/treatment were euthanized by CO2 at 1.5 hr post treatment and their hind paws were excised, stored in 10% formalin for 24 hr, and transferred to 70% ethanol, decalcified for 1-2 weeks in 15% EDTA, and embedded in paraffin. 4 µm sagittal sections were stained with hematoxylin-eosin (A-B) and toluidine blue (C-D) for visualizing neutrophils (A-B) and mast cells (C-D), respectively. Images were acquired at 400X and 1,000X as annotated. Click here to view larger image.

Figure 3. B. jararaca venom-induced mechanical sensitivity is accompanied by significant increases in mast cell degranulation levels and neutrophil influx into the hind paws of ND4 Swiss male mice. Neutrophils and mast cells on stained tissue sections were counted using an Olympus CX21LED microscope. Neutrophils were counted in 3 hind paws per treatment from the heel to the toes in adjacent fields of view at 400X magnification (A). Mast cells were counted in 3 footpads/treatment and their degranulation status was scored based on the number of visible granules outside of the cell boundary: intact (0), mild (0-10), moderate (10-20), extensive (21+), as described previously10 (B). To avoid counting the same cells twice, the investigators assessing neutrophil numbers and mast cell degranulation levels in the hind paw sections used a grid inscribed in the eyepiece reticle. Investigators were blinded to treatments. Significances are compared to Sal-treated mice (* = p < 0.05, ** = p < 0.01, *** = p < 0.001 respectively). n =3 mice per treatment group. Click here to view larger image.