Combination bioactive silicate medicine carrier and shunt
A combination bioactive silicate (e.g., bioactive glass) medicine carrier and shunt of one embodiment includes a shunt which is a tubular member made of bioactive silicate or glass being adapted to be bioresorbable and water soluble, or fiber bundle, the shunt including an insertion end at a first end. Gaps in the bioactive silicate or gaps in the glass adapted to be bioresorbable and water soluble are served as at least one storage for storing medicines.
1. A combination bioactive silicate medicine carrier and shunt, comprising:
a shunt made of bioactive silicate or glass adapted to be bioresorbable and water soluble, the shunt including at least one indentation disposed on an outer surface of the shunt, an axial channel, and a tapered insertion end, wherein a plurality of tunnel shaped medicine storages are equally spaced around the channel,
wherein gaps in the bioactive silicate or gaps in the glass adapted to be bioresorbable and water soluble serve as a plurality of medicine storages for storing medicines,
wherein the tunnel shaped medicine storages have different thicknesses, and
wherein each of the tunnel shaped medicine storages equally spaced around the channel include at least one outer space and at least one inner space, and a plurality of dividing members each disposed between any two adjacent ones of the outer space and any two adjacent ones of the inner space, and wherein the dividing members have different thicknesses.
2. The combination bioactive silicate medicine carrier and shunt of claim 1 , wherein the indentation disposed on an outer surface of the shunt comprises a plurality of groove shaped direction check member on an intermediate portion of the outer surface of the shunt.
3. The combination bioactive silicate medicine carrier and shunt of claim 1 , wherein the shunt further comprises a plurality of parallel axial hollow fiber strands, wherein the fiber strands are configured so that high pressure fluid at a first end of the shunt flows to low pressure at an opposite second end of the shunt via a micro capillary effect.
4. The combination bioactive silicate medicine carrier and shunt of claim 1 , wherein the tunnel shaped medicine storages are arranged in a predetermined order.
5. The combination bioactive silicate medicine carrier and shunt of claim 1 , wherein the bioactive silicate is adapted to degrade, from inside to outside or outside to inside, in 24 hours, one month, six months or one to three years.
6. The combination bioactive silicate medicine carrier and shunt of claim 1 , wherein the shunt is shaped as a bullet, a capsule, or an olive.