Skrtic D, Eanes E D
National Institute of Dental Research's Research Associate Program, National Institute of Standards and Technology, Gaithersburg, MD 20899.
Bone Miner. 1994 Sep;26(3):219-29. doi: 10.1016/s0169-6009(08)80171-7.
The bisphosphonate, 1-hydroxyethylidene-1,1-bisphosphonate (HEBP), was examined for its effect on calcium phosphate precipitation in pH 7.4, 22 degrees C suspensions of 7:2:1 PC:phosphatidylcholine (PC):dicetylphosphate (DCP):cholesterol (Chol) and 7:1:1 PC:phosphatidylserine (PS):Chol liposomes. HEBP (0.5-50 mumol/l) in the suspending medium had little, if any, effect on precipitation that formed inside phosphate-rich (50 mmol/l) aqueous interiors of liposomes as a result of ionophore (X-537A) driven 2.25 mmol/l Ca2+ influxes from the medium. On the other hand, HEBP had a significant negative impact on the subsequent spread of the precipitate into the surrounding medium when the latter was made metastable with 1.5 mmol/l total inorganic phosphate (PO4). The inhibitory effect of HEBP was more strongly felt in the 7PC:1PS:1Chol liposomal suspensions, with only 1 mumol/l HEBP needed to effectively block extraliposomal precipitation compared to 7.5 mumol/l for 7PC:2DCP:1Chol suspensions. Direct encapsulation of HEBP (1-1000 mumol/l) together with PO4 in the aqueous cores of 7PC:2DCP:1Chol liposomes reduced somewhat (approximately 30%) intraliposomal yields and delayed but did not block extraliposomal precipitate development. These results provide a possible physicochemical explanation for the suppression of matrix vesicle initiated mineralization in ectopically-induced osteoid tissue of HEBP treated mice [1]. In particular, the liposome results suggest that membrane phosphatidylserine interactions with mineral may enhance HEBP's effectiveness in vivo.
研究了双膦酸盐1-羟基亚乙基-1,1-二膦酸盐(HEBP)对pH 7.4、22℃条件下7:2:1 PC:磷脂酰胆碱(PC):二鲸蜡基磷酸酯(DCP):胆固醇(Chol)以及7:1:1 PC:磷脂酰丝氨酸(PS):Chol脂质体悬浮液中磷酸钙沉淀的影响。悬浮介质中的HEBP(0.5 - 50 μmol/L)对因离子载体(X - 537A)驱动介质中2.25 mmol/L Ca²⁺流入富含磷酸盐(50 mmol/L)的脂质体水相内部而形成的沉淀几乎没有影响。另一方面,当用1.5 mmol/L总无机磷酸盐(PO₄)使周围介质处于亚稳态时,HEBP对沉淀随后向周围介质的扩散有显著的负面影响。在7PC:1PS:1Chol脂质体悬浮液中,HEBP的抑制作用更为明显,只需1 μmol/L的HEBP就能有效阻止脂质体外部沉淀,而7PC:2DCP:1Chol悬浮液则需要7.5 μmol/L。将HEBP(1 - 1000 μmol/L)与PO₄直接包封在7PC:2DCP:1Chol脂质体的水相中,脂质体内的产率略有降低(约30%),并延迟但未阻止脂质体外部沉淀的形成。这些结果为HEBP处理的小鼠异位诱导类骨质组织中基质小泡引发的矿化抑制提供了一种可能的物理化学解释[1]。特别是,脂质体实验结果表明膜磷脂酰丝氨酸与矿物质的相互作用可能会增强HEBP在体内的有效性。