Hemodialysis

High Flux Hemodialysers

Core Specifications

  • HIghflux:HS14/HS16/HS18/HS20/HS22
  • Membrane: Polyethersulfone(PES)
  • Housing:Polycarbonate: (PC)
  • Potting material:Polyurethane (PU)
  • Wall thickness/Internal diameter:40μm/200μm
  • Max.TMP:500 mmHg
  • Sterilization:Radiation
CE Certified
ISO 13485
Medical Grade

Key Advantages

QUALITY SYNTHETIC POLYMER MEMBRANES

Provides excellent solute and fluid flux while maintaining good bio- and hemocompatibility.

EFFICIENT CLEARANCE:

Through optimized membrane surface area and clearance parameters, effectively removes waste substances from the bloodstream.

BIO- AND HEMOCOMPATIBLE DESIGN

Minimizes clotting and leukocyte activation during the dialysis process, enhancing patient comfort during dialysis.

INNOVATIVE TECHNOLOGIES

Employs new technologies such as membrane surface modifications to improve biocompatibility and reduce the risk of clotting.

ECO-FRIENDLY MATERIALS

Uses lightweight and environmentally friendly materials to reduce the impact on shipping and dispёosal.

Description

P.E.T® Performance Enhancing Technology

PET(Poly Ethylene Terephthalate) spacer yarns consist ofmuitifilament threads integrated into the fiber bundles.

  • Improves dialysate distribution throughout the dialyzer

  • lncreases clearance values.

  • Maintains consistent performance from dialyser to dialyserthroughout the entire treatment.

Polyethersulfone (PES) and Polysulfone (PS)

  • Membrane Material: Polyethersulfone (PES), Polysulfone (PS)

  • Surface Area: Options ranging from 1.0 m² to 2.4 m²

  • Ultrafiltration Coefficient (Kuf): 8 - 60 ml/mmHg/h

  • Sterilization: EO/GAMMA sterilized

  • Packaging: 24 units per box

Unique process technology influence separation profile of membrane formation

  • Thicker separation

  • Sharpened sieving profile (S.E.T)

  • Optimized dialysate side distribution

  • Higher mechanical strength resulting in

  • Low albumin loss

  • High middle molecule removal

  • Maximum low molecular clearance

S.E.T.- sieving Enhancing Technology

A patented production process creates active centers on the blood side of the membrane. These centers mediate electrostatic, polar, and hydrophobic interactions with proteins and middle-molecular toxins. This reduces protein adsorption and pore clogging, allowing toxins to pass through more easily for superior removal performance.


Pyrogen Retention of High-flux Dialysis Membranes 

An increase in membrane performance (βm-clearance) and selection of a dialyzer does not only have an impact on albumin loss but also on retention of pyrogens.
Only SureClean™ HS seiers with high βm-clearance,high pyrogen retention and low albumin loss is the option of choice to combine high βm-clearance with safe pyrogen retention.



High flux: Stable Middle Molecular Clearance

High-flux dialysis utilizes membranes with large pores to enhance the removal of small and middle molecules (such as $\beta$2-microglobulin) compared to low-flux, while maintaining stable performance.


Consistently high βm-clearance Over Time



Myoglobin βm-clearance



Specifications

Model

Effective

Surface

Area (m²)

Priming

Volume

(mL)

UFR (mL/

hr/mmHg)

QB(mL/

min)

Clearance (mL/min)

Urea

Creatinine

Phosphate

Vitamin.

B12

HS10

1.0

70

52

200

175

158

154

131

300

241

200

194

148

400

300

262

235

149

HS12

1.2

74

57

200

189

181

172

144

300

254

230

213

162

400

312

275

254

173

HS13

1.3

76

62

200

193

182

175

153

300

260

237

203

172

400

310

283

263

183

HS14

1.4

87

48

200

187

182

179

127

300

256

219

227

154

400

302

257

285

175

HS16

1.6

100

55

200

191

188

181

132

300

260

232

238

158

400

310

268

292

183

HS18

1.8

109

60

200

193

192

185

139

300

266

244

250

175

400

318

260

269

189

HS20

2

120

66

200

195

194

190

146

300

275

258

265

191

400

327

292

380

197

HS22

2.2

138

72

200

196

195

194

157

300

281

271

274

206

400

337

304

320

205

HS24

2.4

156

77

200

198

196

196

158

300

285

282

286

211

400

344

312

330

214

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